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HomeMy WebLinkAboutDAQ-2025-0019551 DAQC-359-25 Site ID 10355 (B5) MEMORANDUM TO: CEM FILE – PACIFICORP GADSBY PLANT THROUGH: Harold Burge, Major Source Compliance Section Manager FROM: Rob Leishman, Environmental Scientist DATE: April 9, 2025 SUBJECT: Source: Gadsby Power Plant Units 1-6 Contact: Tom Wiscomb – 801-220-2373 Leah Tiberius – 801-220-7708 Location: Gadsby Power Plant, Salt Lake City, Salt Lake County, UT Test Contractor: Mostardi Platt FRS ID#: UT0000004903500068 Permit/AO#: Title V operating permit #3500068006 dated January 30, 2024 Subject: Review of RA/PST Report dated October 10, 2024 On October 15, 2024, Utah Division of Air Quality (DAQ) received a Relative Accuracy/Performance Specification Test (RA/PST) report for the Gadsby Power Plant Units 1-6 in Salt Lake City, Utah. Testing was performed on August 27-29, 2024, to determine the relative accuracy of the O2, NOX, CO2, and CO monitoring systems. The DAQ-calculated test results are: RA/PST EVALUATION: Unit 1 NSPS RATA - Test Date - 8/26/2024 Primary Channel Manufacturer Serial No. Units CEM Value RM Value Relative Accuracy Status CO2 Thermo 41iQHL-ABN 12305124129 % 6.800 6.640 2.9% Passed NOx Thermo 42iQLS-ACBNN 12309525996 ppm @ 3% O2 120.650 116.358 1.8% Passed lbs/MMBtu 0.146 0.140 5.0% Passed lbs/hr 69.500 66.524 2.0% Passed Stack Test Deviation Report There were no deviations observed during testing. Calibration gases were in date and met performance specifications. 1 8 2 2 Unit 1 Acid Rain Tests - Test Date - 8/26/2024 Primary Channel Manufacturer Serial No. Units CEM Value RM Value Relative Accuracy Status Testing Frequency NOx Thermo 41iQHL-ABN 12305124129 lbs/MMBtu 0.146 0.140 5.20% Passed Annual CO2 Thermo 42iQLS-ACBNN 12309525996 % 6.800 6.647 2.89% Passed Equation - Di (Rmi – CEMi) Rmi = 0.1402 CEMi = 0.1464 Di = 0.0062 Passed Unit 2 NSPS RATA - Test Date - 8/26/2024 Primary Channel Manufacturer Serial No. Units CEM Value RM Value Relative Accuracy Status CO2 Thermo 41iQHL-ABN 12305124128 % 6.130 6.020 3.0% Passed NOx Thermo 42iQLS-ACBNN 12309525997 ppm 70.622 71.664 0.7% Passed lbs/MMBtu 0.144 0.148 4.1% Passed lbs/hr 96.611 99.190 2.1% Passed Stack Test Deviation Report There were no deviations observed during testing. Calibration gases were in date and met performance specifications. Unit 2 Acid Rain Tests - Test Date - 8/26/2024 Primary Channel Manufacturer Serial No. Units CEM Value RM Value Relative Accuracy Status Testing Frequency NOx Thermo 41iQHL-ABN 12305124128 lbs/MMBtu 0.144 0.148 5.10% Passed Annual CO2 Thermo 42iQLS-ACBNN 12309525997 % 6.130 6.062 2.89% Passed Equation - Di (Rmi – CEMi) Rmi = 0.1483 CEMi = 0.1438 Di = 0.0045 Passed Unit 3 NSPS RATA - Test Date - 8/27/2024 Primary Channel Manufacturer Serial No. Units CEM Value RM Value Relative Accuracy Status CO2 Thermo 41iQHL-ABN 12305124127 % 6.450 6.290 2.9% Passed NOx Thermo 42iQLS-ACBNN 12309525998 ppm @ 3% O2 82.664 86.254 5.2% Passed lbs/MMBtu 0.099 0.105 6.7% Passed lbs/hr 75.889 80.692 6.5% Passed Stack Test Deviation Report There were no deviations observed during testing. Calibration gases were in date and met performance specifications. 3 Unit 3 Acid Rain Tests - Test Date - 8/27/2024 Primary Channel Manufacturer Serial No. Units CEM Value RM Value Relative Accuracy Status Testing Frequency NOx Thermo 41iQHL-ABN 12305124127 lbs/MMBtu 0.099 0.105 6.90% Passed Annual CO2 Thermo 42iQLS-ACBNN 12309525998 % 6.456 6.299 2.87% Passed Equation - Di (Rmi – CEMi) Rmi = 0.1052 CEMi = 0.0989 Di = 0.0063 Passed Unit 4 NSPS RATA - Test Date - 8/28/2025 Primary Channel Manufacturer Serial No. Units CEM Value RM Value Relative Accuracy Status NOx Thermo 42iQLS-ACBNN 12318428624 ppm @ 15% O2 2.736 2.480 7.2% Passed lbs/MMBtu 0.010 0.009 11.1% Passed lbs/hr 2.533 2.316 1.4% Passed O2 Thermo 48iQ-ABC 12305124124 % 16.070 16.200 1.2% Passed CO Thermo 48iQ-ABC 12305124124 ppm @ 15% O2 1.990 1.091 9.2% Passed lbs/hr 1.122 0.620 1.9% Passed Stack Test Deviation Report There were no deviations observed during testing. Calibration gases were in date and met performance specifications. Unit 4 Acid Rain Tests - Test Date - 8/28/2025 Primary Channel Manufacturer Serial No. Units CEM Value RM Value Relative Accuracy Status Testing Frequency NOx Thermo 42iQLS- ACBNN 12318428624 lbs/MMBtu 0.010 0.009 11.90% Passed Annual O2 Thermo 48iQ-ABC 12305124124 % 16.078 16.199 0.12% Passed * NOx Relative Accuracy Tests that exceed 7.5% and has a deviation that is ± 0.015 lb/MMBtu passes and qualifies for annual testing. Equation - Di (Rmi – CEMi) Rmi = 0.0089 CEMi = 0.0100 Di = 0.0011 Passed 4 Unit 5 NSPS RATA - Test Date - 8/28/2024 Primary Channel Manufacturer Serial No. Units CEM Value RM Value Relative Accuracy Status NOx Thermo 42iQLS-ACBNN 12305124117 ppm @ 15% O2 3.163 3.390 8.5% Passed lbs/MMBtu 0.012 0.012 8.3% Passed lbs/hr 3.056 3.309 1.4% Passed O2 Thermo 48iQ-ABC 12305124125 % 16.220 16.200 0.4% Passed CO Thermo 48iQ-ABC 12305124125 ppm @ 15% O2 2.038 1.709 3.5% Passed lbs/hr 1.200 1.015 0.8% Passed Stack Test Deviation Report There were no deviations observed during testing. Calibration gases were in date and met performance specifications. Unit 5 Acid Rain Tests - Test Date - 8/28/2024 Primary Channel Manufacturer Serial No. Units CEM Value RM Value Relative Accuracy Status Testing Frequency NOx Thermo 42iQLS-ACBNN 12305124117 lbs/MMBtu 0.012 0.012 6.60% Passed Annual O2 Thermo 48iQ-ABC 12305124125 % 16.222 16.205 0.02% Passed Equation - Di (Rmi – CEMi) Rmi = 0.0125 CEMi = 0.0117 Di = 0.0008 Passed Unit 6 NSPS RATA - Test Date - 8/29/2024 Primary Channel Manufacturer Serial No. Units CEM Value RM Value Relative Accuracy Status NOx Thermo 42iQLS-ACBNN 12309525999 ppm @ 15% O2 2.438 2.336 3.3% Passed lbs/MMBtu 0.009 0.009 0.0% Passed lbs/hr 2.289 2.207 0.6% Passed O2 Thermo 48iQ-ABC 12305124126 % 16.270 16.380 1.2% Passed CO Thermo 48iQ-ABC 12305124126 ppm @ 15% O2 1.509 1.331 2.8% Passed lbs/hr 0.867 0.767 0.6% Passed Stack Test Deviation Report There were no deviations observed during testing. Calibration gases were in date and met performance specifications. 5 Unit 6 Acid Rain Tests - Test Date - 8/29/2024 Primary Channel Manufacturer Serial No. Units CEM Value RM Value Relative Accuracy Status Testing Frequency NOx Thermo 42iQLS-ACBNN 12309525999 lbs/MMBtu 0.009 0.009 2.80% Passed Annual O2 Thermo 48iQ-ABC 12305124126 % 16.278 16.384 0.11% Passed Equation - Di (Rmi – CEMi) Rmi = 0.0086 CEMi = 0.0089 Di = 0.0002 Passed DEVIATIONS: No deviations were noted in this report. CONCLUSION: Pacificorp operates the continuous emissions monitor (CEM) on the Gadsby Power Plant Units 1-6 stacks to measure O2, NOX, CO2, and CO emissions. The CEMs were audited by the DAQ and found to meet quality assurance requirements found in 40 CFR Part 60, Appendix B, Performance Specification 1, and R307-170, Continuous Emission Monitoring System Program. Quarterly cylinder gas audits and an annual relative accuracy test audit were conducted in accordance with the procedures outlined in UAC R307-170. RECOMMENDATION: The Pacificorp Gadsby Plant Units 1-6 CEM systems were operating as required in R307-170 and 40 CFR 60.13 at the time of this evaluation. HPV: No ATTACHMENTS: RATA Review Spreadsheets. RATA Report Yr*sJftsgRP C,adsby Plant 1359 W€st tlorfi Temde (rear) Salt l-ake Clty, UT 84116 Re: Octobr07,2024 Mr. Bryce Bird, Director State of Utah Division of Air Quality Department of Environmental Quality P. O. Box 144820 Salt Lake City, Utah 841144820 Rob Leishman 2024 Gadsby Plant Units 1-6 RATA Report Dear Mr. Bird: The Relative Accuracy Test Audit (RATA) of the Gadsby Plant Units l-6 Gas Monitors has been completed per the specifications found in 40 CFR Part 60 and 75. The RATAs were conducted on August 26 - 29, 2024. Enclosed is the RATA report for Gadsby Plant Units I -6. I am authorizedto make this submission on behalf of the owners and operators for the affected source or affected nnits for which the submission is made. I certifu under penalty of the law that I have personally examined, and am familiar with, the statements and information submitted in this document and its attachments. Based on my inqurry of those individuals with primary responsibility for obtaining the information, I certifu that the statements and information are to the best of my knowledge and believe true, accurate, and complete. I am aware that there are significant penalties for submitting false statements and information or omitting required statements and infonnation, including the possibility of fine or imprisonment. Should you have any questions or concerns, please contact Leah Tiberius Dickson at (801) 220- 7708. Sincerely, 'SU()d,- il4 Plant Manager - Gadsby Plant Responsible Offrcial Enclosures ti '.\+J tlEpAHTt.tEN L OF AR Youn Joo Kim - EPA Region VIII w/enclosure Continuous Emissions Monitoring Relative Accuracy Test Audit Test Report UJ-(d frl9.$ o{U 1-{(d+,ao E PacifiCorp Gadsby Power Plant Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Salt Lake City, Utah Project No. M243506 August 26 through 29,2024 mostardii-platt Continuous Emissions Monitoring Relative Accuracy Test Audit Test Report PacifiCorp Gadsby Power Plant Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Salt Lake Gity, Utah August 26 through 29, 2024 Report Submittal Date October 2,2024 @ Copyright2024 All rights reserved in Mostardi Platt Project No. M243506 I T T T T T I I T T T I I T T T T I I TABLE OF CONTENTS 1.0 EXECUTTVE SUMMARY............... ............................1 2.0 TEST METHODOLOGY............ ...........5 Method 3A Orygen (Oz)/Carbon Dioxide (COz) Determination......... .............5 Method 7E Nitrogen Oxides (NOx) Determination .....................6 Method 10 Carbon Monoxide (CO) Determination......... ............7 3.0 TEST RESULT SUMMARIES ..............8 APPENDICES Appendix A - Company AETB Certification ..........40 Appendix B - Ql Certification(s) for Field Personnel.... .............43 Appendix C - Test Section Diagrams ...................45 Appendix D - Sample Train Dia9ram................. .......................52 Appendix E - Calculation Nomenclature and Formulas..... .......54 Appendix F - Reference Method Test Data (Computerized Sheets).. ..........61 Appendix G - Continuous Emissions Monitoring System Data and Plant Operating Data ..................80 Appendix H - Calibration and Response Time Data............ ....................... 143 Appendix I - Calibration Gas Cylinder Data........ .................... 180 Appendix J - NOz to NO Converter Efficiency Test ................192 Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 OMostardi Platt I T T I T T I T I T I I I T T I I I t 1.0 EXEGUTIVE SUMMARY Mostardi Platt conducted a Continuous Emissions Monitoring System (CEMS) Relative Accuracy Test Audit (RATA) test program for PacifiCorp at the Gadsby Power Plant in Salt Lake City, Utah, on the gas-fired boiler stacks, designated as Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6, on August 26 through 29, 2024. This report summarizes the results of the test program and test methods used in accordance with the Test Protocol dated June 26, 2024. Mostardi Platt is a self- certified air emissions testing body (AETB). A copy of Mostardi Platt's self-certification can be found in Appendix A. The test locations, test dates, and test parameters are summarized below. The purpose of the test program was to determine the relative accuracies of Unit 1, Unit 2 and Unit 3 COz and NO, analyzers; and Unit 4, Unit 5, and Unit 6 the Oz, CO, and NO* analyzers during the specified operating condition. The test results from this test program indicate that each CEMS component meets the United States Environmental Protection Agency (USEPA) annual performance specification for relative accuracy as published in 40 Code of Federal Regulations Part 75 (40CFR75) and Part 60 (40CFR60). P@ect No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 TEST INFORMATION Test Locations Test Dates Test Parameters Unit 1 August 26,2024 Nitrogen Oxides (NO,) and Carbon Dioxide (COz)Unit 2 August 26,2024 Unit 3 August 27,2024 Unit 4 August 28,2024 Nitrogen Oxides (NOx), Carbon Monoxide (CO)and Orygen (Oz)Unit 5 August 28,2024 Unit 6 August 29,2024 'I of 199 OMostardi Platt UNIT 1 RATA RESULTS Test Location Date Parameter Units Relative Accuracy Acceptance Criteria Relative Accuracy (RA) Bias Adjustment Factor (BAF) Unit 1 8t26t24 NO,lb/mmBtu s 7 5% of the mean reference value 5.19o/o 1.000 NO,ppmvd @ 3o/o Oz 3 20o/o of the mean reference value 5.11%N/A NO,lb/hr 320o/o of the mean reference value 5.32%N/A COz o/o dry 3 7 .5o/o of the mean reference value 2.95o/o N/A I t T I I I I T I T T I I I T I I T I UNIT 2 RATA RESULTS Test Location Date Parameter Units Relative Accuracy Acceptance Criteria Relative Accuracy (RA) Bias Adjustment Factor (BAF) Unit 2 8t26t24 NO,lb/mmBtu 37.5o/o of the mean reference value 4.24o/o 1.026 NO,ppmvd @ 3% Oz s 20% of the mean reference value 4.56%N/A NO,lb/hr s20% of the mean reference value 4.32o/o N/A COz %dry 3 7.5o/o of the mean reference value 2.93%N/A UNIT 3 RATA RESULTS Test Location Date Parameter Units Relative Accuracy Acceptance Criteria Relative Accuracy (RA) Bias Adjustment Factor (BAF) Unit 3 8t27t24 NO,lb/mmBtu < 7 .5% of the mean reference value 6.59%1.062 NO,ppmvd @ 3o/o Oz 3 20o/o of the mean reference value 5.17o/o N/A NO,lb/hr 3 20o/o of the mean reference value 6.41%N/A COz %dry 57.5o/o of the mean reference value 2.93o/o N/A Project No. M243506 Unit '1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 2 of 199 @Mostardi Platt I I T I I t I I I I T I T I T I I I T Project No. M243506 Unit 1. Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 UNIT 4 RATA RESULTS Test Location Date Parameter Units Relative Accuracy Acceptance Criteria Relative Accuracy (RA} Bias Adjustment Factor (BAF) Unit 4 8t28t24 NO,lb/mmBtu < 0.015 lb/mmBtu mean difference -0.001 lb/mmBtu mean difference 1.000 NO,ppmvd @ 15o/o Oz 3 20% of the mean reference value 13.33%N/A NO,lb/hr 320% of the mean reference value 14.49o/o N/A Oz o/o dry <7.5% of the mean reference value 1.49o/o N/A co lb/hr < 10% ofthe applicable standard of 9 lb/hr per Performance Specification 6 (PSO) 5.65%N/A co ppmvd @ 15% Oz S 5 ppm mean difference plus confidence coefficient 0.93 ppm mean difference + cc N/A UNIT 5 RATA RESULTS Test Location Date Parameter Units Relative Accuracy Acceptance Criteria Relative Accuracy (RA) Bias Adjustment Factor (BAF) Unit 5 8t28t24 NO,lb/mmBtu s 0.015 lb/mmBtu mean difference 0.001 lb/mmBtu mean difference 1.076 NO,ppmvd @ 15o/o Oz 3 20o/o of the mean reference value 9.42%N/A NO,lb/hr 3 20o/o of the mean reference value 9.79o/o N/A Oz o/o dry < 7 .5% of the mean reference value 0.35o/o N/A co lb/hr < 10% ofthe applicable standard of 9 lb/hr per PS6 2.2Oo/o N/A CO ppmvd @ 15o/o Oz s 5 ppm mean difference plus confidence coefficient 0.36 ppm mean difference + cc N/A 3 of 199 @Mostardi Plaft UNIT 6 RATA RESULTS Test Location Date Parameter Units Relative Accuracy Acceptance Criteria Relative Accuracy (RA) Bias Adjustment Factor (BAF) Unit 6 8t29t24 NO,lb/mmBtu 37.5o/o of the mean reference value 4.18%1.000 NO,ppmvd @ 15% Oz s 20% of the mean reference value 6.77%N/A NO,lb/hr S 20o/o of the mean reference value 6.08%N/A Oz %dry < 7 .5% of the mean reference value 1.39o/o N/A co lb/hr < 10% of the applicable standard of 9 lb/hr per PS6 1.66%N/A co ppmvd @ 15o/o Oz s 5 ppm mean difference plus confidence coefficient 0.29 ppm mean difference + cc N/A I T T I t T I t I I I I T I T T I I I The gas cylinders used to perform the RATA are summarized below. GAS CYLINDER INFORMATION Parameter Gas Vendor Cylinder Serial Number Cylinder Value Expiration Date NOx Airgas cc262396 5.004 Mar 03, 2026 NOx Airgas cc725287 9.017 May'15,2026 NOx Airgas EB0142043 90.32 Apr 23,2032 NOx Airgas cc257347 183.3 Aug 23, 2029 COz Airgas E80140992 8.904 Apr 09, 2032 COz Airgas 1159610 9.912 Jan 29,2032 COz Airgas E80088900 18.45 4pr22,2032 Oz Airgas 1159610 9.891 Jan 29.2032 Oz Airgas EB0140992 10.5'1 Apr 09, 2032 Oz Airgas EB0088900 22.57 Apr 22,2032 CO Airgas E80091 1 88 4.898 Feb 05, 2029 co Airgas cc116370 4.974 Aug 28, 2031 co Airgas E80007336 10.02 Oct 02, 2031 Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 4 of t99 OMostardi Platt I t I t I T T I I T T I t I T T I No deviations, additions, or exclusions from the test protocol, test methods, the Mostardi Platt Quality Manual, or the ASTM D7036-12 occurred. The specific test conditions encountered did not interfere with the collection of the data. The identification of individuals associated with the test program is summarized below. Copies of the Ql certifications for test personnel are included in Appendix B. 2.0 TEST METHODOLOGY Emission testing was conducted following the United States Environmental Protection Agency (USEPA) methods specified in Title 40 of the Code of Federal Regulations, Part 75 (40CFR75) and 40CFR60, Appendix A, in addition to the Mostardi Platt Quality Manual and the test protocol. Schematics of the test section diagram and sampling train used are included in Appendix C and D respectively. Calculation and nomenclature are included in Appendix E. Copies of analyzer print-outs for each test run are included in Appendix F. CEM data and process data, as provided by PacifiCorp - Gadsby Power Plant, a Berkshire Hathaway Energy company, are included in Appendix G. The following methodologies were used during the test program: Method 3A Oxygen (Oz)/Carbon Dioxide (COz) Determination Stack gas Oz and COz concentrations were determined in accordance with USEPA Method 3A, 40CFR60, Appendix A. A Servomex analyzer was used to determine the Oz and COz concentrations in the manner specified in the Method. The instrument has a paramagnetic detector and the 02 operates in the nominal range of 0%lo25o/o. The COz operates in the nominal range of 0% lo 20%. High-range calibrations were performed using USEPA Protocol gas. Zero nitrogen (a low ppm pollutant in balance nitrogen calibration gases) was introduced during other instrument calibrations to check instrument zero. High- and mid-range levels in balance nitrogen were also introduced. Zero and mid-range calibrations were performed using USEPA Protocol gas after each test run. Copies of the gas cylinder certifications are found in Appendix l. This testing met the performance specifications as outlined in the Method. I T Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 TEST PERSONNEL INFORMATION Location Address Contact Test Coordinators PacifiCorp Gadsby Power Plant 1359 West North Temple Street Salt Lake City, UT 84116 Tom Wiscomb Senior Environmental Analyst (801) 220-2373 (phone) Thomas. \Mscom b@ Pac ifiCoro. com Leah Tiberius Environmental Analyst (801) 220-7708 (phone) Leah.Tiberius@PacifiCoro.com Testing Company Supervisor Mostardi Platt 888 lndustrial Drive Elmhurst, lllinois 60126 Christopher S. Eldridge Field Operations & Training Lead 630-993-2100 (phone) celdridge@mp-mail.com Ql Group V (certified on211812021\ Testing Company Personnel Daniel Snader Test Enoineer Jacob Anderson Test Technician 5 of '199 @Mostardi Platt Method 7E Nitrogen Oxides (NOx) Determination Stack gas NO, concentrations and emission rates were determined in accordance with USEPA Method 78, 40CFR60, Appendix A. A Thermo Scientific Model 42i Chemiluminescence Nitrogen Oxides Analyzer was used to determine nitrogen oxides concentrations, in the manner specified in the Method. The instrument operated in the nominal range determined by the high-level span calibration gas. The Model 42i operates on the principle that nitric oxide (NO) and ozone (Oo) react to produce a characteristic luminescence with an intensity linearly proportional to the NO concentration. lnfrared light emission results when electronically excited NOz molecules decay to lower energy states. Specifically, [rlQ+Q3+NO2+@2+ fip Nitrogen dioxide (NOz) must first be transformed into NO before it can be measured using the chemiluminescent reaction. NOz is converted to NO by a molybdenum NOz-to-NO converter heated to a minimum of 320"C. The flue gas sample is drawn into the Model 42i through the sample bulkhead. The sample flows through a capillary, and then to the mode solenoid valve. The solenoid valve routes the sample either straight to the reaction chamber (NO mode) or through the NOzto-NO converter and then to the reaction chamber (NOx mode). A flow sensor prior to the reaction chamber measures the sample flow. Dry air enters the Model 42i through the dry air bulkhead, passes through a flow switch, and then through a silent discharge ozonator. The ozonator generates the ozone needed for the chemiluminescent reaction. At the reaction chamber, the ozone reacts with the NO in the sample to produce excited NOz molecules. A photomultiplier tube (PMT) housed in a thermoelectric cooler detects the luminescence generated during this reaction. From the reaction chamber, the exhaust travels through the ozone (Os) converter to the pump and is released through the vent. The NO and NOx concentrations calculated in the NO and NOx modes are stored in memory. The difference between the concentrations is used to calculate the NOz concentration. The Model42i outputs NO, NOz, and NO, concentrations to the front panel display, the analog outputs, and also makes the data available over the serial or ethernet connection. Stack gas was delivered to the analyzer via a Teflon@ sampling line, heated to a minimum temperature of 250"F. Excess moisture in the stack gas was removed using a refrigerated condenser. The entire system was calibrated in accordance with the Method, using USEPA Protocol gases introduced at the probe, before and after each test run. This testing met the performance specifications as outlined in the Method. A list of calibration gases used and the results of all calibration and other required quality assurance checks are found in Appendix H. Copies of the gas cylinder certifications are found in Appendix l. A direct inject NOz gas converter efficiency test was performed as described in Section 8.2.4.1 of Method 7E. The NOz to NO converter efficiency test can be found in Appendix J. This testing met the performance specifications as outlined in the Method. Project No. M243506 Unit 'l, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 I T T t I T I T I T I I I I T I I t T 6 of 199 @Mostardi Platt t T I I I I I t T T t I I I I I t I T Method 10 Carbon Monoxide (GO) Determination Stack gas CO concentrations and emission rates were determined in accordance with USEPA Method 10, 40CFR60, Appendix A. A Thermo Scientific Model4Si Gas Filter Correlation Analyzer, in the manner specified in the Method. The instrument operated in the nominal range of 0 ppm to 20 ppm with the specific range determined by the high-level span calibration gas of 10.02 ppm. The Model 48i operates on the principle that CO absorbs infrared radiation at a wavelength of 4.6 microns. Because infrared absorption is a non-linear measurement technique, it is necessary to transform the basic analyzer signal into a linear output. The Model 48i uses an internally stored calibration curve to accurately linearize the instrument output over any range up to a concentration of 10,000 ppm. The sample is drawn into the Model4Sithrough the sample bulkhead. The sample flows through the optical bench. Radiation from an infrared source is chopped and then passed through a gas filter alternating between CO and Nz. The radiation then passes through a narrow bandpass interference filter and enters the optical bench where absorption by the sample gas occurs. The infrared radiation then exits the optical bench and falls on an infrared detector. The CO gas filter acts to produce a reference beam which cannot be further attenuated by CO in the sample cell. The Nz side of the filter wheel is transparent to the infrared radiation and therefore produces a measurement beam which can be absorbed by CO in the cell. The chopped detector signal is modulated by the alternation between the two gas filters with an amplitude related to the concentration of CO in the sample cell. Other gases do not cause modulation of the detector signal since they absorb the reference and measure beams equally. Thus, the GFC system responds specifically to CO. The Model 48i outputs the CO concentration to the front panel display, the analog outputs, and also makes the data available over the serial or Ethernet connection. Stack gas was delivered to the analyzer via a Teflon@ sampling line, heated to a minimum temperature of 250'F. Excess moisture in the stack gas was removed using a refrigerated condenser. The entire system was calibrated in accordance with the Method, using certified calibration gases introduced at the probe, before and after each test run. A list of calibration gases used and the results of all calibration and other required quality assurance checks are found in Appendix H. Copies of the gas cylinder certifications are found in Appendix l. This testing met the performance specifications as outlined in the Method. Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 7 of 199 @Mostardi Platt I I T3.1 Unit 1 Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 3.0 TEST RESULT SUMMARIES I I I T t T T I I I I T I I T I Client PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Fuel Type: Natural Gas Location: Unit 1 Date:8126124 Test Method: 7E, 3A Fuel Factor: 1040 CO2 based NOx lb/mmBtu RATA CEM Analvzer lnformation NO, Monitor/Model:Thermo 42iQLS-ACBNN NO. Serial #:1 2309525996 CO2 Monitor/Mode!:Thermo 41OiQHL-ABN CO2 Serial #:12305124129 1 =acce pt 0=reject Test Run Iest Date Start Time End Time RM NOX lb/MMBtu GEM NOX lb/MMBtu (RMCEM) Difference (di) (RMCEM) Difference2 (di2) 1 08t26t24 08:09 08:29 0.1 36 0.141 -0.005 0.000025 2 08t26t24 08:39 08:59 o.1v 0.1 39 4.005 0.000025 3 o8t26124 09:07 09:27 0.1 36 o.142 -0.006 0.000036 4 o8,t26t24 09:36 09:56 0.1 39 0.146 -0.007 0.000049 5 08t26t24 10:04 10:24 0.1 40 0.145 -0.005 0.000025 b 08126124 10:33 10:53 0.138 0.145 -0.007 0.000049 7 08126t24 11'.O4 11'.24 0.143 0.'t51 4.008 0.0000&1 0 8 o8t26124 11:33 11:53 0.145 0.1 54 4.009 0.000081 1 9 08t26t24 12:05 12:25 o.147 0.1 53 4.006 0.000036 1 10 o$t26t24 12:U 12'.il 0.148 0.1 56 -0.008 0.0000&r n 9 (0.025)2.306 Mean Reference Method Value 0.140 RM avq Mean CEM Value 0.146 CEM avq Sum of Differences {.057 di Mean Difference {.006 d Sum of Differences Squared 0.000 di2 Standard Deviation 0.001 sd Confi de nce Coefficie nt 2.5% Enor fi -tail)0.001 cc Relative Accuracv 5.19 RA Bias Adiustment Factor 1.000 BAF 8 of 199 OMostardi Platt T T I T T I t T I T I I t T T T T I T Proiect No. M243506 Unit 'l , Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Client PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Location: Unit 1 DaE:8126124 Test Method: 7E, 3A NOx ppmvd @3o/o 02 RATA CEM Analyzer lnformation NO, Monitor/Model:Ihermo 42iOLS-ACBNN NO, Serial #:12309525996 1=accept 0=reject Test Run Iest Date Start Time End Time RM NOx ppmvd @ 3 va2 CEM NOx ppmvd @ 3 o/o2 (RM.cEM) Difference (di) (RMCEM) Difference2 (di2) 1 1 o8126t24 08:09 08:29 1 13.9 115.9 -2.O 4.00 1 2 08126124 08:39 08:59 111.1 114.2 -3.1 9.61 1 3 08126124 09:07 09:27 113.4 1',t7.1 -3.7 13.69 I 4 ogt26t24 09:36 09:56 't't6.0 120.1 4.1 16.81 1 5 o8t26124 10:04 1O:24 116.7 119.7 -3.0 9.00 1 6 o&t26124 10:33 10:53 116.8 119.4 -2.6 6.76 1 7 08126t24 11 M 11:24 120.2 124.6 4.4 19.36 0 8 08t26t24 11:33 11:53 117.5 126.4 -8.9 79.21 1 I o8126124 12:OS 12:25 118.7 126.3 -7.6 57.76 1 10 ogt26t24 12:?4 12:54 120.3 128.4 -8.1 65.61 n 9 t(0.975)2.306 Mean Reference Method Value 116.W RM avo Mean CEM Value 120.633 CEM avg sum ot Drnerences -38.600 di Mean Difference 4.289 d Sum of Differences Squareo 202.600 di2 Standard Deviation 2.152 sd Confidence Coefficient 2.5% Error (1-tail 1.654 Relative Accuracr 5.1 I RA I of 199 OMostardi Platt Client PacifiCorp Facility: Gadsby Power Planl Project #: M243506 Location: Unit 1 Date:8126124 Test Method: 7E,2 NO,lb/hr RATA CEM Analvzer lnformation NO, Monitor/Model:Thermo 42iOLS-ACBNN NO, Serial #:12309525996 1=accept 0=reject Test Run Test Date Start Time End Time RM NOX !b/hr cEM NOx lb/hr (RM4EM) Difference (di) (RM-CEM) Difference2 (di2) 1 1 08t26t24 08:09 08:29 u.42 66.70 -2.28 5.1 984 1 2 o8t26t24 08:39 08:59 63.30 65.70 -2.40 5.7600 1 3 08t26124 09:07 09:27 u.44 67.50 -3.06 9.3636 1 4 o8t26t24 09:36 09:56 66.10 69.1 0 -3.00 9.0000 1 5 08t26t24 10:04 10.24 66.69 69.20 -2.51 6.3001 1 b o8t26124 10:33 10:53 65.26 68.70 -3.4 11.8336 1 7 ogt26t24 11'.U 11:24 67.92 71.90 -3.98 15.8404 0 I o8t26t24 11:33 11:53 68.72 73.00 4.28 18.3184 1 I 08t26t24 12:O5 12:25 69.60 72.70 -3.10 9.6100 1 10 o8t26t24 12:34 12:54 70.1 5 74.OO -3.85 14.8225 n 9 t(0.975)2.306 Mean Reference Method Value 66.431 RM avq Mean CEM Value 69.500 CEM avg Sum of Differences -27.620 di Mean Difference -3.069 d Sum of Differences Squared 87.729 diz Standard Deviation 0.609 sd Confi dence Coefficient 2.5o/o Error (1 -tai ll 0.468 Relative Accuracv 5,32 RA I I I t I I I T I I I I I I T I I I T Project No. M243506 Unit 1. Unit 2. Unit 3, Unit 4, Unit 5, and Unit 6 10 of 199 OMostardi Platt I I I T I T I T I T I I I I T T I I I Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Client PacifCorp Facility: Gadsby Power Plant Project#: M243506 Location: Unit 1 Dare.:.8126124 Test Method: 34 CO2o/o (dry) RATA CEM Analvzer lnformation COz Monitor/Model:Thermo 41O|QHL-ABN CO, Serial # :12305124129 1=accept 0=reject Test Run Test Date Start Time End Time RM CO2 % (drv) cEM GO2 % (drv) (RM-cEM) Difference (di) (RM4EM) Difference2 (di2) 1 1 08t26t24 08:09 08:29 6.7 6.9 -0.2 0.04 1 2 ogt26t24 08:39 08:59 6.8 6.9 -0.1 0.01 ,|3 08t26t24 09:07 09:27 6.7 6.8 -0.1 0.01 1 4 08t26t24 09:36 09:56 6.7 6.8 -0.1 0.01 1 5 08t26t24 10:04 10:24 6.6 6.8 -o.2 0.04 1 6 08t26124 10:33 10:53 6.7 6.8 -0.1 0.01 1 7 08126124 l:44 11:24 o.o 6.8 -0.2 0.04 1 I 08t26t24 11:33 11:53 6.5 6.7 -o.2 0.04 0 I 08t26t24 12:05 12:25 6.5 6.8 -0.3 0.09 1 10 08t26t24 12:U 12:34 6.5 6.7 -0.2 0.04 n 9 t(0.02!2.306 Mean Reference Method Value 6.644 RM avq Mean CEM Value 6.800 CEM avo Sum of Differencer -1.400 di Mean Difference 4.1s6 d Sum of Differences Squared 0.20 daz Standard Deviatior 0.053 sd Confi de nce Coeffi cie nt 2.5o/o Error 11 -tail 0.041 cc Relative Accuracy 2.9s RA 1 1 of 199 @Mostardi Platt 3.2 Unit 2 Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 I T T I t I I I I t I I I I t t I I I Client: PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Fuel Type: Natural Gas Location: Unit 2 Date:8126124 Tes( Method: 7E, 3A Fuel Factor: 1040 GO2 based NOx lb/mmBtu RATA CEM Ana lvzer lnformation NO, Monitor/Model:Thermo 42iQLS-ACBNN NO, Serial #12309525997 CO2 Monitor/Model:Thermo 410iQHL-ABN CO2 Serial #12305124128 1=accept 0=reject Test Run Iest Date Start Time End Time RM NOT !b/MMBtu CEM NO, lb/MMBtu (RMCEM) Difference (di) (RMCEM) Difference2 (di2) 1 1 08t26t24 08:09 08:29 0.1 38 0.1 34 0.004 0.000016 1 2 08t26t24 08:39 08:59 0.1 35 o.137 -0.002 0.000004 1 3 08126124 09:07 09:27 o.142 0.'t40 0.002 0.000004 1 4 08t26124 09:36 09:56 0.146 0.143 0.003 0.000009 1 5 08126t24 10:04 'lO:24 o.147 o.142 0.005 0.000025 1 6 o8t26124 10:33 10:53 0.1 50 0.144 0.006 0.000036 0 7 08t26t24 11:04 11:24 0.154 0.144 0.010 0.000100 1 8 o8t26t24 11:33 11:53 0.160 0.1 51 0.009 0.000081 1 o o8t26t24 12:O5 12:25 0.1 57 0.1 51 0.006 0.000036 1 10 08t26t24 12:?l 12'.v 0.1 53 0.152 0.001 0.000001 n 9 t(0.025)2.306 Mean Reference Method Value 0.148 RM avq Mean CEM Value 0.14 CEM avq Sum of Differences 0.034 di Mean Difference 0.004 d Sum of Differences Squared 0.000 daz Standard Deviation 0.003 sd Confi dence Coefficient 2.5o/o Error (1 -ta i l)0.002 cc Relative Accuracy 4-24 RA Bias Adiustment Factor 1.026 BAF '12 of 199 @Mostardi Platt T I T t I I I t I T t t I t T I I t T Project No. M243506 Unit 1. Unit 2. Unit 3, Unit 4, Unit 5, and Unit 6 Client PacifCorp Facility: Gadsby Power Plant Project #: M243506 Location: Unit 2 DaE:8126124 Test Method: 7E, 3A NOx ppmvd @3% 02 RATA CEM Analyzer lnformation NO, Monitor/Model:Thermo 42iOLS-ACBNN NO, Serial #:12309525997 1=accepl 0=reject Te$ Run Iest Date Start Time End Time RM NOx ppmvd @ 3 o/42 CEM NOx ppmvd @ 3 o/42 (RMCEM) Difference (di) (RMCEM) Difference2 (di2) 0 1 08126124 08:09 08:29 90.1 109.9 -19.8 392.U 2 08t26t24 08:39 08:59 113.7 113.2 0.5 0.25 1 3 o8t26t24 09:07 09:27 114.3 115.3 -1.0 1.00 1 4 08126t24 09:36 09:56 114.O 117.9 -3.9 15.21 1 5 08t26124 10:O4 10:24 111.3 117.1 -5.8 33.64 1 6 08t26t24 10:33 10:53 112.2 118.5 6.3 39.69 1 7 oBt26124 11:O4 11:24 112.9 118.9 -6.0 36.00 1 8 08t26t24 11:33 11:53 119.3 123.9 4.6 21.16 1 o 08126124 12:O5 12:25 122.7 124.3 1.6 2.ffi 1 10 08t26124 12:34 12:il 123.3 124.9 1.6 2.ffi n I (0.e75)2.306 Mean Reference Method Value 115.967 RM avg Mean CEM Value 1 19.333 CEM avE Sum of Differences -30.300 da Mean Difference -3.367 d Sum of Differences Squared 152.070 di2 Standard Deviation 2.501 sd Confi dence Coefficient 2.5% Error (1 -tail 1.923 Relative Accuracv 4.55 RA 13 of 199 OMostardi Platl Client PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Location: Unit 2 Datet 8126124 Test Method: 7E,2 NO,lb/hr RATA CEM Analvzer lnformation NO. Monitor/Model:Thermo 42iQLS-ACBNN NO, Serial #:12309525997 1=accept 0=reject Test Run Iest Date Start Time End Time RM NOT lb/hr cEM NOx lb/hr (RM4EM) Difference (di) (RM-cEM) Difference2 (di2) 1 1 08t26t24 08:09 08:29 92.77 90.10 2.67 7.1289 1 2 o8t26t24 08:39 08:59 91.30 92.90 1.60 2.5600 1 3 o8126t24 09:07 09:27 96.08 94.80 1.28 1.6384 1 4 08t26t24 09:36 09:56 98.94 96.60 2.v 5.4756 1 5 08t26t24 10:04 10:24 98.91 96.00 2.91 8.4681 1 6 08126124 10:33 10:53 101.56 97.20 4.36 19.0096 1 7 o8t26t24 11:04 11:24 103.73 97.60 6.13 37.5769 0 8 08t26t24 11:33 11:53 107.97 101.50 6.47 41.8609 1 I ogt26t24 12:OS 12:25 106.00 101.90 4.10 16.8100 1 10 o8t26t24 12:34 12:54 103.27 102.40 0.87 0.7569 n 9 t(0.975)2.306 Mean Reference Method Value 99.173 RM avg Mean CEM Value 96.611 CEM avq Sum of Differences 23.060 di Mean Difference 2.562 d Sum of Differences Squared 99.424 di2 Standard Deviation 2.246 'dConfidence Coefficient 2.5Yo Error (1 -tai ll 1.726 Relative Accuracv 4.32 RA T t T I I T I t I T t I t I I I I I tProject No. M243506 Unit 'l , Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 14 of 199 OMostardi Platt T I I I t I T t I T T I I I t T t I t Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Client PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Location: Unit 2 Dale:8126124 Test Method: 34 CO2o/o (dry) RATA CEM Analvzer lnformation COu Monitor/Model:Thermo 410iQHL-ABN COz Serial #:12305124128 1=accept 0=reject Test Run Test Date Start Time End Time RM CO2 % (drv) cEM CO2 % (dry) (RM-CEM) Difference (di) (RMCEM) Difference2 (di2) 1 1 ogt26t24 08:09 08:29 6.0 6.2 -0.2 0.04 1 2 08t26t24 08:39 08:59 6.1 6.2 -0.1 0.01 1 3 oBt26124 09:07 09:27 6.0 6.2 -o.2 0.M 1 4 08t26124 09:36 09:56 6.0 6.1 -0.'1 0.01 1 5 08126t24 10:(X 10:24 6.0 6.1 -0.1 0.01 1 6 08t26124 10:33 10:53 6.0 6.1 -0.1 0.01 1 7 o8t26t24 11:O4 11:24 6.0 6.2 4.2 0.04 1 8 ogt26124 11:33 11:53 6.0 6.0 0.0 0.00 1 I 08t26124 12:O5 12:25 6.2 6.1 0.1 0.01 0 10 08t26124 12U '12:14 6.4 6.1 0.3 0.09 n 9 t(0.0251 2.306 Mean Reference Method Value 6.033 RM avo Mean CEM Value 6.r33 CEM avq Sum of Differences {.900 di Mean Difference {.100 d Sum of Differences Squared 0.170 di2 Standard Deviatior 0.100 sd Confi de nce Coeffi ci e nt 2.5o/o Error (1 -tail o.o77 cc Relative Accuracy 2.93 RA 15 of ,l99 @Mostardi Platt 3.3 Unit 3 Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 I I I T T T I T I I I I I I I T T t I Client: PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Fuel Type: Natural Gas Location: Unit 3 Date:8127124 Tesil Method: 7E, 34 Fuel Factor: 1040 CO2 based NOx lb/mmBtu RATA CEM Ana lvzer lnformation NO, Monitor/Model:Thermo 42iOLS-ACBNN NO, Serial # :12309525998 CO2 Monitor/Model:Thermo 410iQHL-ABN CO2 Serial #12305124127 1=accept 0=reject Test Run Iest Date Start Time End Time RM NO. lb/MMBtu CEM NOI !b/MMBtu (RMCEM) Difference (di) (RM4EM) Difference2 (di2) I 08t27t24 06:35 06:55 0.097 0.092 0.005 0.000025 1 2 o8t27t24 07:02 07:22 0.1 05 0.099 0.006 0.000036 1 3 08t27t24 O7:28 07:48 0.1 04 0.099 0.005 0.000025 1 4 o8t27t24 07:55 08:1 5 0.'t 10 0.1 03 0.007 0.000049 1 5 08127t24 08:22 o8'.42 0.109 0.'t01 0.008 0.000064 1 6 o8t27124 08:49 09:09 0.'t08 0.1 03 0.005 0.000025 1 7 08127124 09:1 5 09:35 0.1 09 0.1 03 0.006 0.000036 0 8 08t27124 09:41 10:01 0.1 09 0.099 0.010 0.000100 1 I 08t27t24 10:07 10:27 0.1 00 0.093 0.007 0.000049 ,|'t0 o8t27t24 '10:33 10:53 0.1 03 0.097 0.006 0.000036 n 9 (0.025)2.306 Mean Reference Method Value 0.105 RM avo Mean CEM Value 0.099 CEM avo Sum of Differences 0.055 di Mean Difference 0.005 d Sum of Differences Squared 0.000 di2 Standard Deviation 0.001 sd Confidence Coefficient 2.5% Error (1-taill 0.001 cc Relative Accuracv 6.59 RA Bias Adiusfrnent Factor 1.062 BAF 16 of 199 @Mostardi Platt T t t T I I T T t T T I I I t t t I T Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Client PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Location: Unit 3 Dale:8127124 Test Method: 7E, 34 NOx ppmvd @3% 02 RATA CEM Analyzer lnformation NO, Monitor/Model:Thermo 42iQLS-ACBNf\NO" Serial #:12309525998 1=accept 0=reject Test Run Test Date Start Time End Time RM NOx ppmvd @ 3 "/42 CEM NOx ppmvd @ 3 o/42 (RMCEM) Difference (di) (RM-CEM) Difference2 (di2) 1 1 08t27t24 06:35 06:55 78.8 75.7 3.1 9.61 1 2 08t27t24 07:O2 07:22 85.7 81.5 4.2 17.U 1 3 08127t24 07:28 07:48 84.8 81.2 3.6 12.96 1 4 08t27t24 07:55 08:1 5 89.1 84.8 4.3 18.49 1 5 08t27t24 08:22 08:42 88.2 83.7 4.5 20.25 1 6 08t27t24 08:49 09:09 87.8 84.8 3.0 9.00 1 7 08t27t24 09:1 5 09:35 88.3 84.3 4.0 16.00 0 8 08t27t24 09:41 10:01 88.7 81.8 6.9 47.61 1 I o8t27t24 10:07 1O:27 81.4 76.6 4.8 23.U 1 10 08t27124 10:33 10:53 u.1 80.1 4.0 16.00 n 9 (0.s75)2.306 Mean Reference Method Value 85.356 F(M avo Mean CEM Value B'.|..411 CEM avo Sum of Differences 35.500 di Mean Difference 3.94 d Sum of Differences Squared 142.990 di2 Standard Deviation 0.609 rd Confi dence Coeffi cient 2.5o/o Error (1 -taill 0.468 Relative Accuracv 5.17 RA 17 of '199 OMostardi Platt Client PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Location: Unit 3 Dare.:8127124 Test Method: 7E,2 NO,lb/hr RATA CEM Analvzer lnformation NO. Monitor/Model:Thermo 42iQLS-ACBNN NO, Serial # :12309525998 1 =accept 0=reject Test Run Iest Date Start Time End Time RM NOX lb/hr cEM NOx lb/hr (RM-cEM) Difference (di) (RM-cEM) Difference2 (di2) 1 1 o8t27124 06:35 06:55 75.4 71.70 3.74 13.9876 1 2 o8t27124 07:02 07:22 80.66 76.1 0 4.56 20.7936 1 3 08127t24 O7:28 07:48 79.53 75.20 4.33 18.7489 1 4 08t27t24 07:55 08:1 5 83.68 78.60 5.08 25.8064 1 5 o8t27t24 08:22 08:42 83.23 77.60 5.63 31.6969 1 6 o8t27t24 08:49 09:09 82.91 78.80 4.11 16.8921 1 7 o8t27t24 09:'15 09:35 83.42 78.50 4.92 24.206/. 0 8 o8t27t24 09:41 10:01 83.87 76.00 7.87 61.9369 1 9 o8t27124 10:07 10:27 76.U 71.30 5.34 28.5156 1 't0 o8t27t24 10:33 10:53 79.78 75.20 4.58 20.976/. n 9 t(0.975)2.306 Mean Reference Method Value 80.s88 RM avg Mean CEM Value 75.889 3EM avg Sum of Differences 42.290 ci Mean Difference 4.699 c Sum of Differences Squared 201.624 il2 Standard Deviation 0.603 'dConfi de nce Coefficient 2.5o/o Error (1 -ta i I )0.463 ;c Relative Accuracv 6.41 RA t I T I I I I t I t t I t I t I T I I Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 18 of 199 @Mostardi Platt I I I I T I I t T T T T I I t I I I T Project No. M243506 Unit 'l , Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Client PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Location: Unit 3 Date:8127124 Test Method: 3A CO2o/o (dry) RATA CEM Analvzer !nformation COz Monitor/Model:Thermo 410iQHL-ABN COz Serial #:12305124127 1=accept 0=reject Test Run Test Date Start Time End Time RM CO2 % (dry) cEM CO2 % (drv) (RMCEM) Difference (di) (RM.cEM) Difference2 (di2) 1 1 08t27t24 06:35 06:55 6.4 6.5 -0.1 0.01 1 2 o8t27t24 07:O2 07:22 6.3 6.4 -0.1 0.01 1 3 o8t27124 07:28 07:48 6.3 6.4 -0.1 0.01 1 4 08t27t24 07:55 08:1 5 6.3 6.4 -0.1 0.01 1 5 o8t27t24 08:22 08:42 6.3 6.5 -o.2 0.04 1 b 08t27t24 08:49 09:09 6.3 6.5 -0.2 0.04 1 7 08t27t24 09:1 5 09:35 6.3 6.4 -0.1 0.01 1 8 08t27t24 09:41 10:01 6.3 6.5 -0.2 0.04 1 I o8t27t24 10:07 10:27 6.3 6.5 -0.2 0.04 0 10 08t27t24 10:33 10:53 6.3 6.5 -o.2 0.04 n I (0.02sI 2.306 Mean Reference Method Value 6.311 F(M avo Mean CEM Value 6.456 ;EM avq Sum of Differences -1.300 li Mean Difference 4.14 I Sum of Differences Squared 0.210 di2 Standard Deviation 0.053 d Gonfidence Coefficient 2.5o/o Error (1 -ta i I l 0.041 Relative Accuracv 2.93 RA 19 of 199 OMostardi Platt 3.4 Unit 4 A Relative accuracy for low enission sources w ith t0, erissions of s 0.200 lbs/nnEltu based on a nean dilference ol +/. 0.015|bs/nrrtstu for annual RATA testing, or +/- 0.020 lbs/nrrBtu for seni-annual RATA testing. Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 T I T t T I I T I I I I I I I I I I I Client: PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Fuel Type: Natural Gas Location: Unit 4 Date:8128124 Tes{ Method: 7E, 34 Fuel Factor: 8710 02 based NOx lb/mmBtu RATA CEM Ana lvzer !nformation NO. Monitor/Model:Thermo 42iOLS-ACBNN NO, Serial #:12318428624 02 Monitor/Model:Thermo 48iO-ABC 02 Serial #:12305124124 1 =a cce pt 0=reject Test Run Test Date Start Time End Time RM NOX lb/MMBtu cEM NOx !b/MMBtu (RMCEM) Difference (di) (RM4EM) Difference2 (di2) 0 1 o8t28t24 06:35 06:55 0.006 0.008 -0.002 0.000004 1 2 o8t28t24 07:07 07:27 0.007 0.008 -0.001 0.000001 0 3 o8t28t24 07:39 07:59 0.008 0.010 -0.002 0.000004 1 4 o8t28t24 08:12 08:32 0.004 0.005 -0.001 0.000001 1 5 o8t28t24 08:44 09:M 0.011 0.013 {.002 0.0000M 1 6 08128t24 09:1 7 09:37 0.009 0.009 0.000 0.000000 1 7 08t28124 09:49 10:09 0.009 0.010 -0.001 0.000001 1 8 o8,t28t24 1021 1O:41 0.009 0.010 -0.001 0.000001 1 9 o8t28t24 11:03 11:23 0.011 0.012 -0.001 0.000001 1 't0 o8128124 11:35 1'l:55 0.010 0.011 4.001 0.000001 1 11 o1t28t24 12:07 12'.27 0.011 o.o12 -0.001 0.000001 n I (0.0251 2.306 Mean Reference Method Value 0.009 RM avq Mean GEM Value 0.010 CEM avq Sum of Differences {.009 di Mean Difference {.001 d Sum of Differences Squared 0.000 di2 Standard Deviation 0.001 sd Confidence Coefficient 2.5% Enor (1-tail 0.000 CG Relative Accuracy -APS -0.001 tb/mmBtu difference A Bias Adiustment Factor 1.000 BAF 20 of 199 @Mostardi Platt T I I T T T T I T I I t T t x t T I T Project No. M243506 Unit 'l , Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Client PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Location: Unit 4 DaE:8128124 Test Method: 7E, 3A NOx ppmvd @ 15Yo 02 RATA CEM Analvzer lnformation NO, Monitor/Mode!:Thermo 42iQLS-ACBNN NO. Serial #:1231U28624 02 Monitor/Model:Thermo 48iO-ABC Oz Serial # :12305124124 1=accept 0=reject Test Run Test Date Start Time End Time RM NOx ppmvd @ 15 o/42 CEM NOx ppmvd @ 15 o/42 (RMCEM) Difference (di) (RMCEM) Difference2 (di2) 0 1 ogt28t24 06:35 06:55 1.6 2.1 -0.5 0.25 0 2 08t28t24 07:07 07:27 1.8 2.3 -0.5 0.25 1 3 oBt28t24 07:39 07:59 2.3 2.6 -0.3 0.09 1 4 o9t28124 08:12 08:32 1.1 1.4 4.3 0.09 1 5 08t28t24 08:44 09:04 3.1 3.5 -0.4 0.16 1 6 08t28t24 09:1 7 09:37 2.5 2.4 0.1 0.01 1 7 o&t28124 09:49 10:09 2.5 2.7 -o.2 0.04 1 8 08t28124 1O:21 1O:41 2.4 2.7 -0.3 0.09 1 I 08t28t24 1'l:03 11:23 3.0 3.3 -0.3 0.09 1 10 08t28t24 11:35 11:55 2.8 3.0 -0.2 0.M 1 11 08128124 12 07 12:27 3.0 3.1 -0.1 0.01 n I t(0.s7s)2.306 Mean Reference Method Value 2.522 RM avq Mean CEM Value 2.74 CEM avq Sum of Differences -2.000 di Mean Difference 4.222 d Sum of Differences Squared 0.620 ci2 Standard Deviation 0.148 ed Confi dence Coefft cie nt 2.5o/o Enor fi -tail 0.114 DC Relative Accuracv 13.33 RA 21 of '199 @Mostardi Platt Client PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Location: Unit 4 Date:8128124 Test Method:. 7E,2 NO, !b/hr RATA CEM Analyzer lnformation NO. Monitor/Model:lhermo 42iOLS-ACBNN NO- Serial #12318/28624 1=accept 0=reject Test Run Test Date Start Time End Time RM NO, lb/hr CEM NO, lb/hr (RMCEM) Difference (di) (RM-cEM) Difference2 (di2) 0 1 o\t28t24 06:35 06:55 1.45 2.00 -0.55 0.3025 1 2 08t28t24 07:07 07:27 1.44 2.10 -0.46 0.2116 0 3 o8t28t24 07:39 07:59 1.72 2.40 -0.68 0.4624 1 4 o8t28t24 08:12 08:32 1.05 1.30 -0.25 0.0625 1 5 08t28t24 08:44 09:O4 2.88 3.20 -o.32 o.1024 1 6 o8t28t24 09:1 7 09:37 2.32 2.20 o.12 o.o14.r'. 1 7 o8t28t24 09:49 10:09 2.30 2.so -0.20 0.o+00 1 8 o8t28t24 1O:21 1O:41 2.27 2.fi -o.23 0.0529 I I 08t28t24 11:03 11:23 2.77 3.00 -0.23 0.0529 1 10 08t28t24 11:35 11:55 2.59 2.80 -0.21 0.0441 ,|11 08t28t24 12:07 12:27 2.77 2.90 -0.13 0.0169 n 9 t(0.97s)2.306 Mean Reference Method Value 2.288 RM avo Mean CEM Value 2.500 CEM AVO Sum of Differences -1.910 di Mean Difference 4.212 d Sum of Differences Squared 0.598 di2 Standard Deviation 0.155 sd Confidence Coefficient 2.5o/o Error (1 -taill 0.119 cc ttelattve Accuracv 14.49 RA Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 T T I I I I I T t T I t T I 1 T I T I 22 oI'199 OMostardi Platt I t I I I T t I I I T I t I I T I I T Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 23 of 199 @Mostardi Platt CIient PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Location: Unit 4 Da!e:8128124 Test Method: 34 Oz % (dry) RATA CEM Analyzer lnformation Ou Monitor/Model Thermo 48iQ-ABC Oz Serial #:12305124124 1=accept 0=reject Test Run Test Date Start Time End Time RM02% (drv) cEM 02 % (dry) (RMCEM) Difference (di) (RM4EM) Difference2 (di2) I 1 08t28t24 06:35 06:55 16.1 16.1 0.0 0.00 1 2 08t28t24 O7:O7 07:27 16.3 16.1 0.2 0.04 1 3 o8t28t24 07:39 07:59 16.3 16.1 0.2 0.04 1 4 o8128124 O8:12 08:32 16.3 16.1 0.2 0.04 1 5 08t28t24 08:44 09:04 16.3 16.1 o.2 0.04 1 6 08128t24 09:17 09;37 16.3 16.0 0.3 0.09 1 7 o8,t28124 09:49 10:09 16.3 16.1 o.2 0.04 0 8 08t28124 1O:21 1O:41 16.3 16.0 0.3 0.09 1 I 08t28t24 1 1:03 1'l:23 16.2 16.1 0.1 0.01 1 10 08t28t24 1 1:35 11:55 16.2 16.0 0.2 0.04 0 11 o8t28t24 12:O7 12:27 16.3 16.0 0.3 0.09 n I (o.o25l 2.305 Mean Reference Method Value 16.256 RM avo Mean CEM Value 16.078 cEM avo Sum of Differencer 1.600 di Mean Difference 0.178 d Sum of Differences Squared 0.340 di2 Standard Deviatior 0.083 sd Confi de nce Coeffi cie nt 2.5o/o Error fi -tail 0.064 CG Relative Accuract 1.49 RA Client PacifiCorp Location: Unit 4 Facility: Gadsby Power Plant DaE: 8128124 Project #: M243506 Test Method: 10, 2 Applicable Standard: 9 CO lb/hr RATA CEM Analvzer lnformation CO Monitor/Model:Thermo 48|O-ABC CO Seria! #:12305124124 1=accept 0=reject Test Run Test Date Start Time End Time RM CO lb/hr CEM CO lb/hr (RMCEM) Difference (di) (RM€EM) Difference2 (di2) 1 1 o8,t28124 06:35 06:55 0.64 1.10 -0.46 0.2116 2 o8t28t24 07:O7 07:27 0.70 1.20 -0.50 0.2500 0 3 o8t28t24 07:39 07:59 0.58 1.30 -0.72 0.5184 1 4 08t28t24 08:12 08:32 0.73 1.20 -o.47 o.2209 1 5 ogt28t24 08:44 09:04 0.61 1.10 -0.49 0.2401 0 6 o8t28124 09:1 7 09:37 0.58 1.10 -0.52 o.270/. 7 ogt28t24 09:49 10:09 0.59 1.10 -0.51 0.2601 1 8 ogt28t24 1O:21 10:41 0.59 't.10 -0.51 0.2601 I o8t28t24 '11:03 11:23 0.59 1.10 -0.51 0.2601 1 10 08t28t24 11:35 11:55 0.60 1.10 -0.50 0.2500 1 11 ogt28t24 12:O7 12:27 0.60 1.10 -0.50 0.2500 n 9 t(0.97s)2.306 Mean Reference Method Value 0.628 RM avo Mean CEM Value '1.122 CEM avo Sum of Differences 4.450 di Mean Difference {.494 d Sum of Differences Squared 2.203 di2 Standard Deviation 0.018 sd Confidence Coefficient 2.5% Error (1-tail 0.014 Relative Accuracy - APS 5.65 RAA I T I I T I I I T I I o Relatirre accuracy based upon +l- 1O% of applicable standard based on Performance Specification 6 I I I I t t I t Project No. M243506 Unit 'l, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 24 ot 199 @Mostardi Plaft T T T T T I I T T T I T T T T T I T T A Relatirre accuracy based upon altemate performance standard of +/- 5 ppm CO plus the confidence coefrcient. Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Client PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Location: Unit 4 DaE:8128124 Test Method: 10, 3A CO ppmvd @15% 02 RATA CEM Analyzer lnformation CO Monitor/Model:Thermo 48|O-ABC CO Serial #:12305124124 O, Monitor/Model:Thermo 48iQ-ABC Oz Serial #:12305124',t24 1=accept 0=reject Test Run Test Date Start Time End Time RM CO ppmvd @ 15 o/42 CEM CO ppmvd @ 15 o/o2 (RM4EM) Difference (di) (RM4EM) Difference2 (di2) 1 1 08t28t24 06:35 06:55 1.1 2.0 -0.9 0.81 1 2 08128t24 07:O7 07:27 1.2 2.2 1.0 1.00 0 3 08t28124 07:39 07:59 1.2 2.2 -1.0 '1.00 1 4 08t28124 08:12 08:32 1.3 2.1 -0.8 0.64 1 5 o&t28t24 08:4 09:04 1.1 2.0 -0.9 0.81 1 6 ogt28t24 09:1 7 09:37 1.0 1.9 {.9 0.81 0 7 ogt28t24 09:49 10:09 1.0 2.0 1.0 1.00 1 I 08t28t24 10:21 1O:41 1.0 1.9 -0.9 0.81 1 9 08t28124 11:03 11:23 1.0 1.9 -0.9 0.81 1 10 o8128124 11:35 11:55 11 1.9 -0.8 0.64 1 11 o8128124 12:O7 12:27 1.1 1.9 -0.8 0.ar n 9 t(0.975)2.305 Mean Reference Method Value 1.100 RM avq Mean CEM Value 1.978 CEM avo Sum of Difference:-7.900 di Mean Difference {.878 d Sum of Differences Squarec 6.970 di2 Standard Deviatior 0.067 sd Confide nce Coefficient 2.5o/, Error fi $il'0.051 cc Relative Accuracy - APS 0.93 DDm + cc differenceA @Mostardi Platt Client: PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Fuel Type: Natural Gas Location: Unit 5 Date:8128124 Tes( Method: 7E, 3A Fuel Factor: 8710 02 based NOx lb/mmBtu RATA CEM Ana lvzer lnformation NO, Monitor/Model:Thermo 42IQLS-ABANN NO, Serial # :12305124117 02 Monitor/Model:Thermo 48iQ-ABC 02 Seria! #:12305124125 1=accept 0=reject Test Run Test Date Start Time End Time RM NO, Ib/MMBfu CEM NO, !b/MMBtu (RMCEM) Difference (di) (RMCEM) Difference2 (di2) 0 1 o8128t24 06:35 06:55 0.016 0.013 0.003 0.000009 0 2 o8t28t24 07:07 07:27 0.013 0.011 0.002 0.000004 1 3 o8128t24 07:39 O7:59 o.o12 0.0'rl 0.001 0.000001 1 4 o8128t24 08:12 08:32 0.010 0.009 0.001 0.000001 1 5 o8t28t24 08:44 09:04 0.013 0.012 0.001 0.000001 1 6 o8t28t24 09:'17 09:37 0.014 0.013 0.001 0.000001 1 7 o\t28t24 09:49 10:09 0.014 0.013 0.001 0.000001 1 8 08t28t24 10:21 10:41 0.012 0.o12 0.000 0.000000 1 9 08128t24 11:03 11:23 0.013 0.012 0.001 0.000001 1 't0 o8128t24 11:35 11:55 0.013 o.o12 0.001 0.000001 1 11 08t28t24 12:O7 12:27 0.012 0.011 0.001 0.000001 n 9 t(0.025)2.306 Mean Reference Method Value 0.013 F(M avo Mean GEM Value 0.012 gEM avo Sum of Differences 0.008 ci Mean Difference 0.001 c Sum of Differences Squared 0.000 di2 Standard Deviation 0.000 sd Confidence Coefficient 2.5% Error (1-taill 0.000 3C Relative Accuracv -APS 0.001 lb/mmBtu difrerence A Bias Adius0nent Factol 1.076 BAF 3.5 Unit 5 ^ Relative accuracy for low enission sources w ith l.lO, enissions of s 0.200 lbs/firtstu based on a nrean difference of +/- 0.015|bs/rnr8tu for annual RATA testing, or +/- 0.020 lbs/nrr8tu for seni-annual RATA testing. Project No. M243506 Unit '1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 t I T T T T I T T t I I t T T I I T I 26 of 199 @Mostardi Platt I I T I T I I I I I T I T I T T I T t Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Client PacifCorp Facility: Gadsby Power Plant Project #: M243506 Location: Unit 5 Date:8128124 Test Method: 7E, 3A NOx ppmvd @15o/o 02 RATA CEM Analyzer lnformation NO. Monitor/Model:Thermo 42lOLS-ABANN NO, Serial #:12305124117 Oz Monitor/Model:Thermo 48iQ-ABC Oz Serial # :12305124125 1=accept 0=reject Test Run Ie* Date Start Time End Time RM NOx ppmvd @ 15 o/o2 CEM NOx ppmvd @ 15,/42 (RMcEM) Difference (d.) (RMCEM) Difference2 (di2) o 1 08t28t24 06:35 06:55 4.2 3.4 0.8 0.64 0 2 08t28t24 07:07 07:27 3.4 3.0 0.4 0.16 1 3 08t28t24 07:39 07:59 3.2 3.0 0.2 0.04 1 4 08t28t24 08:12 08:32 2.7 2.6 0.1 0.01 1 5 o8128124 08:44 09:04 3.6 3.3 0.3 0.09 1 6 08t28t24 09:1 7 09:37 3.8 3.5 0.3 0.09 1 7 08t28124 09:49 10:09 3.8 3.6 o.2 0.04 1 8 08t28124 10:21 10:41 3.4 3.2 o.2 0.04 1 9 08t28124 11:03 11:23 3.6 3.3 0.3 0.09 1 10 08t28t24 11:35 11:55 3.6 3.2 0.4 0.16 1 11 o8t28t24 12:O7 12:27 3.2 2.9 0.3 0.09 n 9 (0.97s)2.306 Mean Reference Method Value 3./til3 RM avq Mean CEM Value 3.178 GEM avg Sum of Differences 2.300 di Mean Difference 0.256 d Sum of Differences Squared 0.6s0 di2 Standard Deviation 0.088 sd Confi dence Coefficient 2.5o/o Error (1 -tail)0.068 cc Relative Accuracv 9.42 RA 27 of 199 OMostardi Platt Client PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Location: Unit 5 Date:8128124 Test Method: 7E,2 NOr lb/hr RATA CEM Analvzer lnformation NO, Monitor/Model:Thermo 42lQLS-ABANN NO, Serial #:12305124117 1=accept 0=reject Test Run Iest Date Start Time End Time RM NO, lb/hr cEM NOx lb/hr (RM-cEM) Difference (di) (RM€EM) Difference2 (d.1 0 1 o8128124 06:35 06:55 4.11 3.30 0.81 0.6561 0 2 08128t24 07:O7 07:27 3.31 2.90 0.41 0.1 681 1 3 o8t28t24 07:39 07:59 3.09 2.80 0.29 0.0841 1 4 o8t28124 08:1 2 08:32 2.63 2.50 0.13 0.0169 1 5 o8128t24 O8:44 09:M 3.46 3.20 o.26 0.0676 1 6 ogt28t24 09:1 7 09:37 3.72 3.40 0.32 0.1024 1 7 o8t28124 09:49 10:09 3.71 3.40 0.31 0.0961 1 8 o8128124 10:21 10:41 3.34 3.10 0.24 0.0576 1 I o8t28t24 1't:03 11:23 3.45 3.20 0.25 0.0625 1 10 ogt28t24 11:35 11:55 3.47 3.10 0.37 0.1369 1 11 o8128t24 12:O7 12:27 3.10 2.80 0.30 0.0900 n 9 t(0.975)2.306 Mean Reference Method Value 3.330 RM avo Mean CEM Value 3.056 CEM avq Sum of Differences 2.470 di Mean Difference 0.274 d Sum of Differences Squared 0.714 di2 Standard Deviation 0.067 sd Confidence Coefficient 2.5o/o Error (1 -ta i ll 0.052 cc Relative Accuracy 9.79 RA T I I I T I t T I I T I I I I T T I I Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 28 of 199 @Mostardi Platt I T t I T I I T I I T I I T T T T I T Project No. M243506 Unit 1. Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Client PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Location: Unit 5 Date:8128124 Tesil Method: 3A o,2% ldryl RATA CEM Ana lvzer lnformation 02 Monitor/Model:Thermo 48iQ-ABC O, Serial #:'t2305124125 l=accepl 0=reject Test Run Test Date Start Time End Time RM02% (drv) cEM 02 % (dry) (RMCEM) Difference (di) (RMCEM) Difference2 (di2) 0 1 08t28t24 06:35 06:55 16.4 16.2 0.2 0.M 1 2 o$t28124 07:07 07:27 16.4 16.3 0.1 0.01 1 3 o8128124 07:39 07:59 16.3 16.3 0.0 0.00 1 4 08t28124 08:12 08:32 16.2 16.2 0.0 0.00 1 5 08t28t24 08:44 09:04 't6.2 16.2 0.0 0.00 I 6 o8128124 09:1 7 09:37 16.2 16.2 0.0 0.00 1 7 08t28t24 09:49 10:09 16.2 16.2 0.0 0.00 1 8 08t28t24 10:21 10:41 16.1 16.2 -0.1 0.01 1 I ogt28t24 11:03 11.23 't6.1 16.2 -0.1 0.01 0 10 08t28t24 11:35 1 1:55 16.1 16.2 -0.1 0.01 1 11 08t28t24 12:O7 12:27 16.2 16.2 0.0 0.00 n 9 t(0.025)2.306 Mean Reference Method Value 16.211 RM avo Mean CEM Value 16.222 CEM avo Sum of Differences {.100 di Mean Difference {.011 d Sum of Differences Squared 0.030 di2 Standard Deviation 0.060 sd Confi dence Coefficient 2.5Yo Error (1 -taill 0.046 cc Relative Accuracv 0.35 RA 29 of 199 @Mostardi Platt Client PacifiCorp Location: Unit 5 Facility: Gadsby Power Plant Dah: 8128124 Project #: M243506 Tes( Method: 10, 2 Applicable Standard: 9 CO lb/hr RATA CEM Analvzer lnformation CO Monitor/Model:Thermo 48|Q-ABC CO Serial#:12305124125 1=accept 0=reject Test Run Test Date Start Time End Time RM CO !b/hr CEM CO lb/hr (RMCEM) Difference (di) (RM-CEM) Difference2 (di2) 0 1 o8128t24 06:35 06:55 1.07 1.30 -0.23 0.0529 1 2 ogt28t24 07:07 07:27 1.10 1.30 -0.20 0.0400 I 3 08128t24 07:39 07:59 1.14 1.30 -0.16 0.0256 1 4 ogt28t24 08:12 08:32 1.26 1.40 -0.14 0.0196 1 5 o&t28t24 08:44 09:O4 1.02 1.20 -0.18 0.0324 1 6 ogt28t24 09:1 7 09:37 0.99 '1.20 -o.21 0.w1 1 7 o&t28t24 09:49 10:09 0.94 't.10 -0.16 0.0256 0 8 o8128t24 1O:21 1O:41 0.98 1.20 -o.22 0.0484 1 I 48t28t24 11:03 11:23 0.90 1.10 -o.20 0.0400 1 10 o8128t24 11:35 11:55 0.91 1.10 -0.19 0.0361 1 1',|ogt28t24 12:07 12:27 0.92 1.10 -0.18 0.0324 n 9 t(0.975)2.306 Mean Reference Method Value 1.020 RM avq Mean CEM Value 1.200 CEM avq Sum of Differences -1.620 di Mean Difference {.180 d Sum of Differences Souared 0.296 fi2 Standard Deviation 0.023 d Confidence Coeffi cient 2.5o/o Error (1 -taill 0.018 Relative Accuracv - APS 2.20 RA A Relati,,e accuracy based upon +l- 'lO% of applicable standard based on Performance Specilication 6 I I T I T t I T I I I I T I I I I T T Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 30 of 199 @Mostardi Platt I I t I T T I T T I I t I I T I I I t A Relatire accuracy based upon altemate performance standard of +/- 5 ppm CO plus the confidence coeficient. Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Client PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Location: Unit 5 DaE:8128124 Test Method: 10, 3A CO ppmvd @15% 02 RATA CEM Analyzer lnformation CO Monitor/Model:Thermo 48iO-ABC CO Serial #:12305',t24125 O, Monitor/Model:Thermo 48iQ-ABC Oz Serial #:12305124125 1=accept 0=reject Test Run Test Date Start Time End Time RM CO ppmvd @ 15 "/42 CEM CO ppmvd @ 15 o/42 (RMCEM) Difference (di) (RM-cEM) Difference2 (di2) 1 1 ogt28t24 06:35 06:55 1.8 2.1 -0.3 0.09 1 2 08t28t24 07:O7 07:27 1.9 2.2 -0.3 0.09 1 3 08t28t24 07:39 07:59 1.9 2.3 -0.4 0.16 1 4 08t28124 08:1 2 08:32 2.1 2.3 -o.2 0.M 1 5 ogt28t24 08:44 09:04 1.7 2.1 -0.4 0.16 1 6 o8128124 09:1 7 09:37 1.7 2.0 -0.3 0.09 1 7 08t28124 09:49 10:09 1.6 1.9 -0.3 0.09 1 8 08t28t24 10:21 1O:41 1.6 1.9 -0.3 0.09 0 9 08t28t24 11:03 11:23 1.5 1.9 -o.4 0.'t6 0 10 08t28t24 11:35 11:55 1.5 1.9 -0.4 0.16 1 11 08t28124 12:O7 12:27 1.6 1.9 -0.3 0.09 n 9 (0.975)2.306 Mean Reference Method Value 1.767 RM avq Mean CEM Value 2.078 CEM avo Sum of Differences -2.800 di Mean Difference {.311 d Sum of Differences Squared 0.900 di2 Standard Deviation 0.060 sd Confi dence Coefficient 2.5o/o Enor (1 -tail)0.046 cc Relative Accuracy - APS 0.36 DDm + cc differenceA 31 of 199 @Mostardi Platt 3.6 Unit 6 Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 t I I I I t I t I I t I T I I I T I I Client; PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Fuel Type: Natural Gas Location: Unit 6 Date:8129124 Tes* Method: 7E, 3A Fuel Factor: 8710 02 based NOx lb/mmBtu RATA CEM Ana lvzer !nformation NO, Monitor/Model:Thermo 42iQLS-ACBNN NO, Serial # :12309525999 02 Monitor/Model:Thermo 4tliO-ABC 02 Seria! #:12305124126 1=accept 0=reject Test Run Iest Date Start Time End Time RM NOX lb/MMBtu cEM NOx lb/MMBtu (RMCEM) Difference (di) (RMcEM) Difference2 (di2) 1 1 08t29t24 06:40 07:00 0.009 0.010 {.001 0.000001 1 2 08t29t24 07:08 07:28 0.008 0.008 0.000 0.000000 ,|3 08t29t24 07:37 07:57 0.008 0.008 0.000 0.000000 1 4 ogt29t24 08:07 08:27 0.009 0.009 0.000 0.000000 1 5 08t29t24 08:36 08:56 0.009 0.009 0.000 0.000000 1 6 08t29t24 09:05 09:25 0.009 0.009 0.000 0.000000 1 7 08t29t24 09:35 09:55 0.009 0.009 0.000 0.000000 1 8 08129t24 10:04 10:24 0.009 0.009 0.000 0.000000 0 9 08t29t24 10:34 10:54 0.008 0.009 -0.001 0.000001 1 10 08129t24 1'l:03 11:23 0.009 0.009 0.000 0.000000 n 9 t(0.025)2.306 Mean Reference Method Value 0.009 RM avq Mean CEM Value 0.009 CEM avq Sum of Differences {.001 di Mean Difference 0.000 d Sum of Differences Squared 0.000 di2 Standard Deviation 0.000 sd Confidence Coefficient 2.5% Error (1-tai!)0.000 cc Relative Accuracy 4.18 RA Bias Adiustment Factor 1.000 BAF 32 of 199 @Mostardi Platt I I t T I t I T T T I I I T I I I I I Poect No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Client PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Location: Unit 6 DaE:8129124 Test Method: 7E, 3A NOx ppmvd @15% OZ RATA CEM Analvzer lnformation NO, Monitor/Model:Thermo 42iOLS-ACBNN NO. Serial #:12309525999 02 Monitor/Model:Thermo 48iO-ABC Oz Seria! # :12305124126 1=accept 0=reject Test Run Iest Date Start Time End Time RM NOx ppmvd @ 15o/42 CEM NOx ppmvd @ 15 "/42 (RM€EM) Difference (di) (RMcEM) Difference2 (di2) 1 1 o8t29t24 06:40 07:00 2.6 2.8 -0.2 0.04 1 2 08t29t24 07:08 07:28 2.2 2.2 0.0 0.00 1 3 08t29t24 07:37 07:57 2.2 2.2 0.0 0.00 1 4 o&t29t24 08:07 08:27 2.3 2.4 -0.1 0.01 1 5 08t29t24 08:36 08:56 2.4 2.4 0.0 0.00 1 6 o8t29t24 09:05 09:25 2.5 2.6 -0.1 0.01 I 7 o8129124 09:35 09:55 2.4 2.4 0.0 0.00 1 I 08t29t24 10:(X 1O:24 2.3 2.5 -o.2 0.04 0 I 08t29t24 10:34 10:54 2.2 2.5 -0.3 0.09 1 10 08t29t24 11:03 11:23 2.4 2.6 -0.2 0.04 n 9 (0.e75)2.306 Mean Reference Method Value 2.367 RM avo Mean CEM Value 2.456 CEM avq sum of urttenences {.800 di Mean Difference {.089 d Sum of Differences Squared 0.1/t0 di2 Standard Deviation 0.093 rd Confidence Coefficient 2.5% Error (1-tail 0.071 cc Relative Accuracv 6.77 RA 33 of '199 @Mostardi Plaft Client PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Location: Unit 6 Da!€:8129124 Test Method: 7E,2 NO,lb/hr RATA CEM Ana lvzer lnformation NO, Monitor/Model:Thermo 42iQLS-ACBNN NO, Serial # :12309525999 1=accepl 0=reject Test Run Test Date Start Time End Time RM NO, lb/hr CEM NO, lb/hr (RMCEM) Difference (di) (RM4EM) Difference2 (di2) 0 1 08t29t24 06:40 07:00 2.40 2.60 -0.20 0.0400 I 2 o$t29124 07:08 07:28 2.09 2.10 -0.01 0.0001 ,|3 08t29t24 07:37 07:57 2.01 2.00 0.01 0.0001 1 4 08t29t24 08:07 08:27 2.22 2.30 -0.08 0.00& 1 5 o\t29t24 08:36 08:56 2.23 2.30 -0.07 0.0049 1 6 08t29t24 09:05 09:25 2.35 2.40 -0.05 0.002s 1 7 o8t29t24 09:35 09:55 2.23 2.30 -0.07 0.0049 1 8 o\t29t24 10:04 '10:24 2.22 2.40 -0.18 0.0324 1 I 08129t24 10:34 10:54 2.14 2.30 -0.16 0.0256 10 08t29t24 11:03 1'l:23 2.26 2.40 -o.14 0.0196 n 9 (0.975)2.306 Mean Reference Method Value 2.194 RM avo Mean CEM Value 2.278 CEM avo Sum of Differences {.750 di Mean Difference {.083 d Sum of Differences Squared 0.096 di2 Standard Deviation 0.055 sd Confi dence Coefficient 2.5o/o Error 11 -!ail 0.050 cc Relative Accuracv 6.08 RA Project No. M243506 Unit '1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 I T T t I T I T T T t I I I I t I I I 34 of 199 @Mostardi Platt I T T I I I t t T I I T I I I T I I I Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Client PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Location: Unit 6 Da@:8129124 Test Method: 3A O2olo ldryl RATA CEM Analyzer lnformation Oz Monitor/Model:Thermo 48iQ-ABC Oz Serial #:12305124126 1=accept 0=reject Test Run Test Date Start Time End Time RM02% (dry) cEM 02 % (drv) (RMCEM) Difference (di) (RM€EM) Difference2 (di2) 1 1 08t29t24 06;40 07:00 16.5 16.3 0.2 0.04 1 2 08t29124 07:08 07:28 16.6 16.3 0.3 0.09 1 3 08t29t24 07:37 07:57 16.6 16.3 0.3 0.09 1 4 08t29124 08:07 08:27 16.4 16.3 0.1 0.01 1 5 08t29t24 08:36 08:56 16.4 16.3 0.1 0.01 1 6 08t29t24 09:05 09:25 16.5 16.3 0.2 0.04 0 7 ogt29t24 09:35 09:55 16.6 16.3 0.3 0.09 1 8 08t29124 10:O4 10:24 16.3 16.3 0.0 0.00 1 9 08t29124 10:34 10:54 16.2 16.2 0.0 0.00 1 10 08129t24 11:03 11:23 16.2 16.2 0.0 0.00 n 9 (0.0251 2.306 Mean Reference Method Value 16.411 RM avq Mean CEM Value 16.278 CEM avo Sum of Difference:1.200 di Mean Difference 0.133 d Sum of Differences Squared 0.280 da2 Standard Deviatior 0.122 sd Confidence Coefficient 2.5% Error (1-tail 0.094 cc Relative Accuract 1.39 RA 35 of 199 @Mostardi Platt Client PacifiCorp Location: Unit 6 Facility: Gadsby Power Plant Da!c:8129124 Project #: M243506 Test Method: 10, 2 Applicable Standard: 9 CO !b/hr RATA CEM Analvzer lnformation CO Monitor/Model:Thermo 48iQ-ABC CO Serial #:12305124126 1=accept 0=reject Test Run Test Date Start Time End Time RM CO lb/hr CEM CO lb/hr (RMCEM) Difference (di) (RM€EM) Difference2 (di2) 0 1 o8t29t24 06:40 07:00 0.74 1.00 -0.26 0.0676 1 2 o8t29t24 07:08 07:28 o.77 0.90 -0.13 0.0169 3 o8t29t24 07:37 07:57 0.77 0.90 -0.13 0.0169 1 4 08t29t24 08:07 08:27 0.77 0.90 -0.13 0.0169 1 5 o8t29t24 08:36 08:56 0.76 0.90 -0.14 0.0196 1 6 o8t29t24 09:05 09:25 0.79 1.00 -0.21 0.0441 1 7 o8t29124 09:35 09:55 0.81 0.80 0.01 0.0001 1 8 08t29t24 10:04 10:24 0.76 0.80 -0.M 0.0016 1 9 o8t29t24 10:34 10:54 0.74 0.80 -0.06 0.0036 1 10 08t29t24 11:03 11:23 0.76 0.80 -0.04 0.0016 n 9 t(0.975)2.306 Mean Reference Method Value o.770 RM avq Mean CEM Vatue 0.867 CEM avo Sum of Differences {.870 di Mean Difference 4.097 I Sum of Differences Squared 0.121 ,i2 Standard Deviation 0.068 s Confi dence Coefficient 2.5o/o Enor (1 -tail)0.052 :c Relative Accuracy - APS 1.66 RAA o Relati,,e accuracy based upon +l- 1Oo/o of applicable standard based on Perfurmance Specification 6 I I I t I t T T I I I I I I T T I I I Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 36 of 199 @Mostardi Platt T T I I I I I I I t I T t T I T I I I A Relatire accuracy based upon altemate perbrmance standard of +/- 5 ppm CO plus the confidence coefficient. Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Client PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Location: Unit 6 DaE:.8129124 Test Method: 10, 3A CO ppmvd @15Yo 02 RATA CEM Analyzer Information CO Monitor/Model:Thermo 48iQ-ABC CO Serial #:12305'.t24126 Or Monitor/Model:Thermo 48|Q-ABC O, Serial #:12305124126 1=accept 0=reject Test Run Iest Date Start Time End Time RM CO ppmvd @ 15 o/42 CEM GO ppmvd @ 15 o/42 (RMCEM) Difference (di) (RM-cEM) Difference2 (di2) 0 1 08t29t24 06:40 07:00 1.3 1.8 -0.5 0.25 1 2 08t29t24 07:08 07:28 1.3 1.6 -0.3 0.09 1 3 08t29t24 07:37 07:57 1.4 1.6 -0.2 0_04 1 4 ogt29t24 08:07 08:27 1.3 1.5 -o.2 0.04 1 5 08t29124 08:36 08:56 1.3 1.7 -0.4 0.16 1 6 08t29124 09:05 09:25 1.4 1.7 -0.3 0.09 1 7 08t29t24 09:35 09:55 1.4 1.4 0.0 0.00 1 8 o8t29124 10:04 1O:24 1.3 1.4 -0.1 0.01 1 I ogt29t24 10:34 10:54 1.3 1.4 -0.1 0.01 1 10 08t29t24 11:03 11:23 1.3 1.4 -0.1 0.01 n 9 t(0.97s)2.306 Mean Reference Method Value 1.333 RM avo Mean CEM Value '|..522 CEM avg Sum of Differences -1.700 di Mean Difference {.189 d Sum of Differences Squared 0./150 di2 Standard Deviation 0.127 sd Confi de nce Coeffi cie nt 2.5o/o Error fi -tail 0.098 cc Relative Accuracy - APS 0.29 oom + cc differenceA 37 of 199 OMostardi Platt 4.0 CERTIFICATION Mostardi Platt is pleased to have been of service to PacifiCorp. lf you have any questions regarding this test report, please do not hesitate to contact us at 630-993-2100. As the program manager, I hereby certify that this test report represents a true and accurate summary of emissions test results and the methodologies employed to obtain those results. The test program was performed in accordance with the test protocol, test methods, the Mostardi Platt Quality Manual, and the ASTM D7036-12, as applicable. MOSTARDI PLATT -/ /2fu/4 prosramManaser Christopher S. Eldridge Quality Assurance I I I I t t I I t t I I I I t t I I t Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 38 of 199 @Mostardi Platt APPENDICES Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Appendix A - Company AETB Certification 40 of 199 @Mostardi Platt mostardiaiplatt March 23,2012 Efiective immediately, Mostardi Platt self-certifies that all Part 75 test proJects conform to the ASTM D 7036-04 Standard Practice. The following contac{ information is provided as required by the Standard: MostardiPlatt 888 lndustrial Drive Elmhurst, lllinois 601 26 63G993-2100 tplatt@mo-mail.com Also, attached is a list of eacfr Qualified lndividual (Ol) with the type of exam (e.9., Group I' ll' lll lV and/orV), the date the exam was taken and the name and email address of the exam provider. Should you have any questions or need additional information, please contact Thomas Platt, P.E. at 630-993-2683. Approved: By: Chief Executive Officer Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 41 of 199 OMostardi Platt qSfl AETB lmport Data I t Seckham Benninghoff Burton carlisle cohngolo Col€man Crlvlare Dunn Eldridge Gro5s Hendrlck5 Howe len5en lones Kossack Kukla Lipinski Peter5on Petrovlch Russ sands sather Sollars Sorce Trez.k I L c F P s E L J R MostardPl.tt 530,993-2100 MostardPlatt 630-993-2100 Most rd Pl.tt 630-993-21@ MostardPlatt 630-993-21@ MostardPhtt 630-993-2100 Most.rdPlatt 630-993-2100 MostardPlatt 63G9!r3-2100 MoltardPl.tt 630-993-2100 MoitardPlatt 630-993-2100 MostardPlatt 630-993-2100 Mostard Platt 63G8 3-2100 MostadPhtt 530-993-2100 Mosted PLti 630-993-2100 Mostard Platt 63G993-2100 Mo5tardPl.tt 630-993-2100 Moltard Pl.tt 630-993-2100 Mosterd Platt 630-993-2100 Most.rd Phtt 630-993'2100 MostardPLtt 630-993-2100 Mostard Pl.n 8G993-2100 Mostard Phtt 63G993-2100 MortardPhtt 530-993-2100 MostardPhtt 630-993-2100 MostardPl.tt 630-993-2100 MostardPlefr 630-993-2100 E E T P J s Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Kenneth Aaron Stuart Rob.rt Nkholas Paul Jeffrey Chrlstlah Chrlrtopher leffery B.n amin l.cob Chrlstopher Kyle D.ni€l .lo!hua Mlch.l Mark wllllam Tlmothy Stu.n Mlchael Rlchard Antelo chrlrtopher tolatt@mo'mail.com tolatt@mp'mail.com tola$@mp-mall,com tplatt@mp-m.il.com tplatt@mp-mail.com tplatt@mrm.ll.com tolatt@mp-mail.com tpl.n@mo-mall.com tplatt@mo-mall.com tol.tt@mp-mail.com tolatt@mp-m.il.com tplatt@fro-m.il.com tplat@mcmail.com tolatt@mo-mail.com tplatt@mp-mall.com tolafi(amo-mall.com tplatt@mo'mall.com tplan@mo-m.ll.com tplan@mlmail.com tpl.tt@mrmail.com tpl.tt@mo-mail.com tolatt@mo-mail.coh tolan@mo-mall.com tplatt@mo-mail.com tplatt@mo-mall.com 5/18/2023 source Ev.luatlon S*lety 9/8/2023 Source Ev.lu.tlon Sel.ty 1/4/2023 Source Ev.lu.tlon Selcty 1/8/2021 sourc€ Ev.lu.tlon 56lety 41412024 burce Ev.lu.tlon Selety 31242023 wce Ev.lu.tlon Sehty 1/4/2023 Source Evrlu.tlon Sclcty 10127 12023 Sourc. Evalu.tlon Scl.ty 21181202L Sutc. Ev.lu.tlon S@l.ty l/ 19 / 2024 sEwce av.lu.tlon Schty 1/30/2020 Source Evrlu.tion Sciety 2117 12021 Sowce evafurtlon Sclety 1/4/2023 Source Ev.lualion Sci€ty 1/11/2021 sourcc Ev.lu.tlon sehty llhfl2o2l Sourcc Ev.luatlon Sni€ty 4/4/2024 Source Evaluatlon S@lety 1/31/2020 Source Ev.luatlon Selety L/!7 12023 Sourca Er.luatlon Sclety 21412022 burc. Ev.l!.tlon Schty 4/8/2020 Source Ev.luation Sdiew 1/5/2023 Source Ev.lu.tlon Schty 2frl2020 Sourc. Evelu.tion Sdiety 7 /2E12o23 source Ev.lu.tlon Selety 2/1812022 Source Ev.lu.tlon S6hW 411412020 Sowce Evalu.tlon Sclew o5tlprcrram@rmall-com q5tloroaram@qmall.com ostiprorram@imail.com ostiDrotram@rmall.com qstiDrotram@tmail.com ortiprorram@qmail.aom ortioroqram@smail.com qstiororram@qmall.com ostlprorram(aamall.com q5tlprcrram@gmall.com qstiororram@amall.com o5tlorotram@amril.com qstigroaram@amail.com qstiprotram@tmall.com ostiDroaram@tmall.com ortiorotram@rmail.com ortiororram@amall.com ortiproaram@!mall.com artiproa6m@{mall.com ostio@aram@amall.com qitioroaram@!mall.com o gtio,oaram@rmall.com ostlprorram@qmall.com ostioroaram@rmall.coft ortioroaramtaamall.com G.oup V (Pa.t 75) Group V (Part 75) G.oup V (P.rt 75) Groug v (Pan 75) Grcup V (Pan 75) G.oup V (Part 75) Group V (Part 75) Group V (Pa.t 75) Group V (Part 75) G6up V (Part 75) Group V (Part 75) Group V (P.rt 75) G@up v (P.rt 75) GBup V (Part 75) Group V (Part 75) Group V (Part 75) Group V (Part 75) Goup V (Part 75) GEup V (Part 75) Goup V (Part 75) Group V (Part 75) Grcup V (P.rt 75) Group V (P.n 75) Group V (Part 75) G@up v (Part 75) I I T I I I I I I I I I T I I I I slLs/2024 42 of 199 @Mostardi Platt Appendix B - Ql Certification(s) for Field Personnel Project No. M2435OO 43 of 199 I Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 @Mostardi Platt I ET ETo I I T I T I o)(,)5l T T I ;l 5l'- nE I = c.i a; I o-l t T !$ N Nts\S\L J uo(, .go l!.9 E(,o oaoN o ea! =llolr o .Eo \\ tl \\\ .J EEF E$Eo1-ocrrS aE9tGr- cL ETHE c rrAo 2 e .H E: EgiE;ii ETEgTgEE?ES:?H EtgEEHIE E rE E E ,E ; E: Fv 6 lQtAgEEE- 'E e E.6 5 F s IgIifip'fr PF 6 5 E ; =EE*a tLJJ.-(d r-l P. () o{ol.{(d tlr,ao E o a!coo I T t I I T I Appendix C - Test Section Diagrams t I I I t I I I T T I Poect No. M243506 45 of 199 OMostardi Platt I unit 1, unit 2, Unit 3, unit 4, unit 5, and Unit 6 GASEOUS TRAVERSE FOR RECTANGULAR DUCTS 14.75', 13.3' Date: PacificCorp Gadsby Power Plant Salt Lake City, Utah August 26,2024 Distance from lnside Wall To Traverse Point: 1. 2.0 Meters2. 1.2 Meters3. 0.4 MetersTest Location: Unit 1 Tests Points per Port: 3 TS-001 Rectangular Duct Drawing 3 Point Rev.0.1 Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 46 of 199 GASEOUS TRAVERSE FOR ROUND DUCTS Length > 1l2Dia.T Length > zDia.I Date: Test Location: Duct Diameter: Duct Area: No. Sample Points: PacifiCorp Gadsby Power Plant Salt Lake City, Utah August 26,2024 Unit 2 Stack 7.5 Feet 44.18 Square Feet 3 T3-006 Gaseous 3 Points Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Rev. 0.'l 1t1t2021 47 of 199 @Mostardi Platt GASEOUS TRAVERSE FOR ROUND DUCTS Length > 1l2Dia. -l- I Length > 2 Dia.I PacifiCorp Gadsby Power Plant Salt Lake Clty, Utah August 27,2024 Unit 3 Stack 17.5 Feet 239.61 Square Feet 3 t t I t Job: I t I T T t T I I t T I t T I Date: Test Location: Duct Diameter: Duct Area: No. Sample Points: T5-006 Gaseous 3 Points Project No. M243506 Unit '1. Unit 2. Unit 3. Unit 4, Unit 5, and Unit 6 Rev.0.1 1t1t2021 48 of 199 @Mostardi Plaft GASEOUS TRAVERSE FOR ROUND DUCTS ** > 1l2Dia.-T- I Lenglh > 2Dia.I Date: Test Location: Duct Diameter: Duct Area: No. Sample Points: PacifiCorp Gadsby Power Plant Salt Lake Crty, Utah August 28,2024 Unit 4 Stack 12.0 Feet 113.1 Square Feet 3 T5-006 Gaseous 3 Points Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Rev.0.1 GASEOUS TRAVERSE FOR ROUND DUCTS Length > 1l2Dia.--r- I Length > zDia.I Date: Test Location: Duct Diameter: Duct Area: No. Sample Points: PacifiCorp Gadsby Power Plant Salt Lake City, Utah August 28, 2024 Unit 5 Stack 12.0 Feet 113.1 Square Feet 3 T5-006 Gaseous 3 Points Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Rev.0.1 T I T I T T I T I T I ! T I I t I T t GASEOUS TRAVERSE FOR ROUND DUCTS Length > 1l2Oia. T I Length > zDia. I Y Date: Test Location: Duct Diameter: Duct Area: No. Sample Points: PacifiCorp Gadsby Power Plant Salt Lake City, Utah August 29,2024 Unit 6 Stack 12.0 Feet 113.1 Square Feet 3 T5-006 Gaseous 3 Points Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Rev.0.1 1t1t2021 51 of '199 @Mostardi Plaft Appendix D - Sample Train Diagram Project No. M243506 52 of 199 @Mostardi Platt Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 USEPA Methods 3A, 7E, and 10 Extractive Gaseous Sampling Diagram t ""r*--l ATD-008 Extractive 3A 7E and '10 Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Rev. 1.3 53 of '199 1t1t2021 @Mostardi Platt Appendix E - Calculation Nomenclature and Formulas Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 T I I T t T t I T t T T T T t t I T I Cllent: PacifiCorp Facllity: Gadsby Power Plant Project#: M243506 Test Locatlon: Unit 1 Date:8126124 ( 73.2 ppm - 0.3 ppm) x (9.34 o/o 0.27 o/o) x ( 6.66 o/o 0.20 o/o) x 73,5 ppm x (1.194 x 10^-7) = 0.00000878 lbs/dscf x 1,040 dscf/mmBtu = 0.136 NOx lbs/mmBtu Samole Calculations NOx ppmud 90,3 Dom 89.9 ppm - 0.3 ppm O2o/o (dry) 9.89 o/o 9.87 o/o - 0.27 o/o CO2 o/o (dty) 9.91 o/o 9.74o/o - 0.20o/o CO2 based NOx lb/mmBtu 0.00000878 lbs/dscf x 100o/o 6.72 o/o NOx ppmvd @ 3olo 02 = 73.5 ppm = 9.34 o/o = 6.72 o/o Q",=(C-Q) x C.. C.-Ct where: Qu, = Effluent gas concentration, dry basis, ppm or o/o C = Average gas concentration indicated by gas analyzer, dry basis, ppm or o/o Co = Average of initial and final system calibration bias check responses for the zero gas, ppm or o/c G = Average of initital and final system calibrauon bias check responses for the upscale calibration QdS, ppfi or o/c Ga = Actual concentration of the upscale calibration gas, ppm or o/o 73.5 x ((20.e - 3.0)/(20.e - e.3)) 0.1 NOx lb/MMBtu x = 113.9 Mostardi Plaft Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 NOx ppmvd @ 3olo O2 NOx lblhr 473.8 = 04.42 NOx lb/hr v5.0 55 of 199 RATA Extractive 4/16/20 OMostardi Platt MOSTARDI PLATT Derivation of Factors Used in Nitrogen Oxides Calculations Factors for calculating concentration as pounds per dry standard cubic feet: Factor for c^,.,- as No, - 28316 846 Tl"scf = 6.242801x 10-s lb ltf ur" 6.z42B x1o'5ttv2 ' 4.53592x 1oE 74 lb tqlml- Where Mw I I I I I t I T T Factors for calculating from parts per million to lb/dscf: Using 22.414liters of gas per gram-mole at 0"C and 1 atmosphere pressure, One pound-mole of gas is contained in 359.04765 ft3 at 32"F and 29.92 in. Hg, or 385.31943 ft3 at 68"F and29.92 in. Hg ppm x Mwlb/lb-mole = lb/dscf 385.31 943 dscf /lb-molexl 06 = pollutant molecular weight; NO2 = 46.0055 lb/lb-mole Factor for ppm NO, == 8.3755 x 106 dscf/lb 46.0055 x 2.5952494 x 10-e Use 8.3755 x 106 CN&F-008A Derivation of Factors NOx Rev. 1.2 111t2021 I I Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 I I t t t I I I 56 of 199 @Mostardi Platt t T I I T T T T T T T I t I T I T T t MOSTARDI PLATT Pollutant Concentration Correction 3o/o for Percent Oxygen 20.9 - 3o/oCadi = Ca 2Ag - oys1z where: C"oi = Pollutant concentration corrected to percent Oz 20.9 - 3% = Percent Oz, the defined Oz correction value, percent 20.9 = Percent Oz in air o/oO2= Measured Oz coflc€otration dry basis, percent Co = Pollutant concentration measured, dry basis, ppm. CN&F-007D Conection of Pollutant lo o/oO2 Rev.2.2 1t1t2021 Proiect No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 57 of 199 @Mostardi Platt MOSTARDI PLATT ppm Conversion Calculations and Factors ppm to lbs/scf (ppm X) x (conversion factor X) = X lbs/scf lbs/scf to lbs/hr Dry ppm's with dry flow, and wet ppm's with wet flow. (X lbs/scf) x (airflow scf/min) x (60 min/hr) = X lbs/hr lbs/scf to lbs/mmBtu Dry ppm's with dry diluent, and wet ppm's with wet diluent. COz - (X lbs/scf) x (F") x (100/COz) = X lbs/mmBtu O, - (X lbs/scf) x (Fo) x (20.91(20.9-0z)) = X lbs/mmBtu Conversion Factors NO, - 1.19396 x 10'7 SOz-1.6625x10'7 CO-7.2664x10-8 CHo - 4.1637 x 10'8 C.Hu- 1.1419x10-7 CN&F-026 PPM Converstion Calcs & Factors Rev. 1.2 I I T T I I I T T T I t t I T T T T T 1t1t2021 Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 58 of 199 @Mostardi Platt t t M'STARDI PLArrrI Emission Rate CalculationsI A pollutant emission rate (E), expressed as pounds of pollutant per million Btu heat input from the fuel I combusted can be calculated by several methods as follows: A. C = C,/7000 where, 6 = pollutant concentration, lb/dscf I B ffi"- ," :il"5":: ,::;:l:::busted durins the rest is sampred and anaryzed ror sross calorific value, then: I e=ffi'nu t where "sY = sififfi?it"*yntandard conditions, dscr/hr I C. lf an integrated gas sample is taken during the test and analyzed for o/oCOz or o/oO2, dry basis by I volume, with an approved USEPA Method 3 or 3A gas analyzer, then 100 20.9 I E=cFc%co2orE=cFa@; Where o/oCOz and o/oOz are expressed as percent values: F" = ? factor representing a ratio of the volume of carbon dioxide generated to the calorific value of the specified fuel type combusted in Figure 1. Fd = a factor representing a ratio of the volume of dry flue gases generated to the calorific value of the specified fuel type combusted in Figure 1. Fuel Tvoe F F.Fuel Tv6e F F" Coal Anthrmiie 10100 1970 Fuel Oil 91 90 1420 Coal. Bituminous 9780 1800 9570 r820 Coal Lionite 9860 191 0 Naiural Gas 8710 't 040 Coal. Sub-Bituminous 9820 1840 Wood 9)to 't 830 Figure 1. Fuel Type D. t T t T T ! T lf fuel sample increments are taken and composited during the test and an ultimate analysis is performed and the GCV is determined, then ^ 321 x 103 (o1o51 Fr = ----==::- where o/oC = Carbon content by weight expressed as percent. GCV l3.e+101o111+ 7.53(o/oc) * 0.57(o/oS) * 0.14(0/oN) -0.46(0/o0))x 106Fd-GCV H = Hydrogen, percent; C = Carbon, percent; S = Sulfur, percent; N = Nitrogen, percent; O = Oxygen, percent I CN&F-009 Emission Rate Calcs t Project No. M243506 I Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Rev. 1.2 59 of 199 1t1t2021 @Mostardi Platt MOSTARDI PLATT Relative Accuracy Test Audit (RATA) Calculations and Bias Adjustment Factor Calculation Mean Difference -1+d=-) dinLi=1 I T I I T I T T T T I I I Standard Deviation lzr=.,0? - [xilra']' c.J-l-I n-l t Confidence Coefficient .sd LL - t0.0ZS-!n Relative Accuracv ldl + tcctRA=ffi: x 100 Bias Adiustment Factor ldtBAF = 1+ csinlw CN&F-030 Part 75 RA Bias Calcs Project No. M243506 Unit I, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Rev. 1.2 1t1t202'l t T T I I T 60 of 199 OMostardi Platt Appendix F - Reference Method Test Data (Computerized Sheets) Project No. M243506 Unit '1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Client: PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Test Location: Unit 1 Date:8126124 I I I T I I I t T T Run 1 NOx ppmvd 02o/o 1d,wI Run 2 NOx oomvd 02 % (drv)Time 8:09 8:10 8:11 8:12 8:13 8:14 8:15 8:16 8:17 8:18 8:19 8:20 8:21 8:22 8:23 8:24 8:25 8:26 8:27 8:28 8:29 70.95 70.95 72.36 71.94 72.86 72.79 72.77 72.61 72.90 74.O1 73.63 73.06 73.58 73.88 74.O3 74.35 74.31 74.63 74.29 73.89 73.87 9.18 9.17 9.27 9.25 9.25 9.30 9.33 9.33 9.33 9.35 9.32 9.37 9.35 9.44 9.38 9.44 9.45 9.44 9.44 9.40 9.32 Time 8:39 8:40 8:41 8:42 8:43 8:44 8:45 8:46 8:47 8:48 8:49 8:50 8:51 8:52 8:53 8:54 8:55 8:56 8:57 8:58 8:59 71.57 71.46 9.10 9.14 CO2o/o (dryl 6.76 6.76 6.71 6.72 6.73 6.69 6.68 6.68 6.68 6.66 6.69 6.66 6.67 6.61 6.65 6.61 6.61 6.61 6.62 6.65 6.49 72.12 9.2171.58 9.1272.07 9.13 71.75 9.1072.69 9.08 CO2% (drvl 6.74 6.71 6.66 6.72 6.72 6.73 6.75 6.71 6.74 6.75 6.76 6.78 6.76 6.75 6.73 6.72 6.73 6.71 6.65 6.64 6.55 72.12 71.91 71.80 71.95 71.11 71 .51 72.45 72.O7 72.69 71.91 9.15 9.10 9.07 9.07 9.03 9.07 9.08 9.12 9.14 9.1372.74 9.1572.99 9.26 74.O1 73.81 9.28 9.07 Average Time 9:07 9:08 9:09 9:10 9:11 9:12 9:13 9:14 9:15 9:16 9:17 9:18 9:19 9:20 9:21 9.22 9:23 9.24 9:25 9:26 9:27 6.66 CO2% HwI 6.65 6.64 6.61 6.61 6.62 6.61 6.& 6.69 6.71 6.69 6.69 6.70 6.73 6.68 6.74 6.72 6.70 6.68 6.73 6.67 6.68 73.22 9.34 Run 3 NOx opmvd 02% |dryl74.74 9.25 9.28 9.3373.60 9.32 74.25 73.76 74.24 73.31 73.48 73.36 73.25 71.87 72.67 71.56 72.86 Average 72.21 9.12 Run 4 6.71 74.01 74.05 72.44 73.10 72.U 9.31 9.32 9.28 9.19 9.15 9.20 9.21 9.18 9.14 9.22 9.11 71 .80 9.1 572.90 9.1971.97 9.21 9.13 9.22 9.21 Time NOx oomvd O2oh 4d,wl CO2 % (drv) 9:36 73.47 9.20 6.69 9:37 73.84 9.22 6.68 9:38 74.90 9.28 6.64 9:39 73.03 9.26 6.669:40 74.87 9.32 6.629:41 74.67 9.31 6.62 9:42 75.37 9.27 6.64 9:43 73.39 9.30 6.63 9:44 73.88 9.37 6.59 9:45 73.57 9.25 6.669:46 74.51 9.32 6.62 9:47 73.75 9.28 6.65 9;48 74.20 9.32 6.62 9:49 74.86 9.26 6.66 9:50 72.88 9.25 6.669:51 73.46 9.24 6.67 9:52 73.08 9.20 6.70 9:53 73.68 9.23 6.68 9:54 7310 9.20 6.69 9:55 73.42 9.15 6.73 I T t I T T 9:56 72.31 Average 73.'.|.2 MostardiPlatt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 9.26 RATA Extractiv e 41 1 6120 @Mostardi Platt I I I v5.0 62 of 199 5.68 Average Client: PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 1 Date:8126124 Time 10:04 10:05 10:06 10:07 10:08 10:09 10:'10 10:11 1O:12 10:13 1O:14 10:15 '10:16 10:17 10:18 10:19 10:20 10:21 10:22 10:23 1O:24 Run 5 NOx pomvd OZoh (drvl CO2 % (drv) 72.33 9.12 6.7472.40 9.19 6.7071.25 9.23 6.6872.55 9.16 6.7272.19 9.18 6.7172.68 9.24 6.6772.36 9.18 6.7172.22 9.21 6.6973.77 9.23 6.6873.43 9.28 6.6573.',t0 9.25 6.6773.05 9.35 6.6174.15 9.30 6.6374.32 9.36 6.6075.24 9.38 6.5974.64 9.31 6.6374.98 9.35 6.6074.45 9.41 6.5775.30 9.37 6.5974.92 9.31 6.6374.77 9.35 6.61 Run 6Time NOx oomvd O2o/o (dwl CO2 % (drvl 10:33 74.91 9.22 6.6710:34 73.'11 9.31 6.6310:35 73.67 9.20 6.7010:36 73.17 9.31 6.6410:37 73.56 9.27 6.6610:38 72.97 9.21 6.6910:39 73.72 9.21 6.6910:40 72.62 9.24 6.6810:41 73.27 9.26 6.6710:42 72.41 9.15 6.7310:43 72.49 9.14 6.7410:44 71.91 9.20 6.7010:45 73.06 9.18 6.7110:46 73.78 9.17 6.7210:47 73.10 9.24 6.6710:48 73.88 9.33 6.6210:49 74.11 9.20 6.7010:50 74.40 9.29 6.6410;51 74.54 9.34 6.6110:52 74.39 9.3'l 6.6410:53 74.16 9.21 6.63 Average Time 11:04 11:05 11:06 11:O7 11:08 11:09 11:'10 11:11 11:12 11:13 11:14 11:15 1 1:16 11:17 11:18 1 1:19 11:20 11:21 11:22 11:23 11:24 73.53 Average 73.49 9.24 Run 8Run 7 NOx ppmvd O2o/o (drvl CO2% (drvl 75.00 9.30 6.64 75.63 9.36 6.61 74.82 9.43 6.57 74.94 9.33 6.63 75.29 9.35 6.6275.55 9.36 6.6175.09 9.42 6.57 75.55 9.36 6.61 75.19 9.38 6.60 75.34 9.35 6.61 74.79 9.36 6.6176.00 9.36 6.6176j0 9.36 6.6175.80 9.38 6.60 75.70 9.46 6.55 76.40 9.38 6.60 76.17 9.37 6.6076.60 9.19 6.5376.90 9.20 6.63 76.80 9.24 6.59 77.00 9.18 6.61 Time NOx pomvd O2olo ldryl CO2% (d,wl 1 1:33 75.55 9.32 6.631'l:34 75.70 9.36 6.6011:35 76.11 9.37 6.6011:36 76.18 9.33 6.621'l:37 74.75 9.30 6.6511:38 75.43 9.34 6.6211:39 74.74 9.34 6.6211:40 75.58 9.29 6.6511.41 75.84 9.30 6.6511:42 75.45 9.32 6.641'1:43 75.47 9.33 6.6311:44 76.18 9.34 6.6211:45 75.84 9.31 6.6411:46 76.07 9.34 6.6311:47 76.51 9.29 6.6511:48 75.86 9.36 6.6111:49 77.00 9.37 6.6111:50 76.47 9.30 6.6411:51 77.55 9.31 6.6411:52 77.14 9.35 6.61 'l 1:53 77.OO 9.07 6.45 Average 75.75 9.34 MostardiPlatt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 9.32 RATA Extractiv e 41 1 6120 OMostardi Platt v5.0 63 of 199 Average Client: PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 1 Date;8126124 T I T T T I I T Time 12:O5 12:06 12:07 12:08 12:O9 12:10 12:11 12:12 12:13 12:14 12:15 12:16 12:17 12:18 12:19 12:20 12:21 12:22 12:23 12:24 12:25 76.54 76.61 76.52 76.08 74.98 75.74 76.01 77.04 76.24 76.84 76.49 76.22 75.42 76.24 77.U 75.89 76.52 76.66 77.18 9.43 9.42 9.39 9.36 9.40 9.36 9.37 9.28 9.35 9.28 9.31 9.32 9.37 9.33 9.27 9.26 9.34 9.33 9.34 Time 12:34 12:35 12:36 12:37 12:38 12:39 12:40 12:41 12'.42 12:43 12:44 12:45 12:46 12:47 12:48 12:49 12:50 12:51 12:52 1253 12:54 76.84 76.58 76.57 76.62 76.11 76.67 76.73 77.27 76.40 76.74 75.77 76.64 9.35 9.37 9.40 9.35 9.31 9.30 9.34 9.36 9.34 9.30 9.31 9.40 Run 9 NOx ppmvd 02% 1drvl76.40 9.3977.57 9.41 CO2% (d,wl 6.59 6.58 6.56 6.57 6.59 6.61 6.58 6.62 6.60 6.66 6.61 6.66 6.64 6.63 6.61 6.63 6.67 6.67 6.63 6.63 6.62 CO2 % (drv) 6.55 6.s8 6.60 6.58 6.57 6.58 6.57 6.57 6.60 6.62 6.61 6.59 6.62 6.64 6.65 6.62 6.62 6.63 6.64 6.64 6.58 Run 10 NOx ppmvd 02o/o (drvl 78.32 9.4578.15 9.4278.35 9.38 78.34 9.4077.84 9.4278.16 9.4177.73 9.42 76.97 9.41 77.20 9.38 76.41 9.35 MostardiPlatt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 77.',|.4 9.37 RATA Extractiu e 4 I 1 6120 @Mostardi Platt I v5.0 64 of 199 T I I I T I T I Client: PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Test Location: Unit 2 Date:8126124 Time 8:09 8:10 8:11 8:12 8:13 8:14 8:15 8:16 8:'17 8:18 8:19 8:20 8:21 8:22 8:23 8:24 8:25 8:26 8:27 8:28 8:29 Run 1 NOx pomvd 02o/o (dwl 62.48 9.9363.66 8.9668.45 9.46u.84 7.6269.75 7.3268.05 7.2766.61 7.1366.18 7.13u.46 7.2067.22 7.3268.28 7.4068.47 7.3168.43 7.'.1865.22 7.1866.14 7.2269.30 7.3268.91 7.4369.50 7.v69.28 7.2467.17 7.2268.84 7.23 Run 2Time NOx opmvd O2o/o ldwl CO2% 1drvl8:39 63.69 10.61 6.688:40 62.83 10.64 6.698:41 65.60 10.28 6.868:42 69.93 11.29 6.368:43 67.19 10.22 6.898:44 61.66 11.23 6.428:45 67.00 13.24 5.348:46 61.46 12.59 5.638:47 66.72 10.01 6.998:48 67.25 9.93 6.038:49 69.14 9.88 6.068:50 67.84 9.83 6.098:51 67.57 9.76 6.128:52 66.86 9.79 6.118:53 66.97 9.90 6.068:54 69.94 9.99 6.018:55 68.41 9.97 6.038:56 67.01 9.77 6.128:57 67.86 9.76 6.'128:58 67.90 9.81 6.108:59 66.58 9.91 6.05 CO2% (dwl 6.21 6.65 6.28 6.68 5.93 5.97 6.07 6.08 6.03 5.95 5.90 5.96 6.06 6.05 6.03 5.96 5.89 5.95 6.02 6.04 6.03 Average 67.20 7.59 Run 3 Time NOx pomvd 02% (drul GO2 % (drv) Average Time 9:36 9:37 9:38 9:39 9:40 9:41 9:42 9:43 9:44 9:45 9:46 9:47 9:48 9:49 9:50 9:51 9:52 9:53 9:54 9:55 9:56 6.23 CO2% (dwI 6.06 6.03 6.03 6.01 6.06 6.06 6.07 6.03 6.05 6.05 6.09 6.'t6 6.15 6.10 6.06 6.06 6.10 6.14 6.17 6.13 6.00 66.64 10.40 Run 4 NOx oomvd 02% |dwl 59.49 9.88 69.33 9.98 69.02 9.97 70.22 10.03 68.85 9.93 9:07 9:08 9:09 9:10 9:11 9:12 9:13 9:14 9:15 9:16 9:17 9:18 9:19 9:20 9:21 9:22 9:23 9:24 9:25 9:26 68.19 10.3567.69 11.1704.00 10.3868.54 10.8862.62 10.1667.00 10.2965.53 10.3168.54 10.2070.40 10.0968.81 9.9569.58 9.8569.73 9.7869.18 9.7668.84 9.9569.97 10.0770.33 9.9970.55 9.8168.95 9.8067.65 9.8070.07 9.93 5.84 6.43 5.83 6.60 5.94 5.88 5.87 5.93 5.98 6.04 6.10 6.13 6.15 6.06 6.00 6.03 6.12 6.'13 6.13 6.07 9.30 9.40 69.33 9.9368.14 9.9268.86 9.5972.60 9.52 71.32 9.4570.54 9.31 73.39 71.30 71.61 71.60 70.90 9.55 9.34 9.4672.26 9.5372.83 9.5372.56 9.4571.83 9.36 9:27 71 .46 10. 1 3 5.98Average 68.46 10.13 6.06 9.62 71.19 9.67 MostardiPlatt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 v5.0 65 of 199 RATA Extractive 41 16120 OMostardi Platt Average 70.34 Client: PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 2 Date:8126124 I t T T T t ! I t I Time 10:04 10:05 10:06 10:07 10:08 '10:09 10;10 10:11 10:12 10:13 1O:14 10:15 10:16 1O:17 10:18 10:19 10:20 10:21 10:22 10:23 1O:24 9.96 9.82 9.60 9.69 9.95 9.48 9.48 9.28 9.08 9.21 9.36 9.35 9.37 9.19 9.07 9.07 9.17 9.30 9.27 9.12 9.05 Time 10:33 10:34 10:35 10:36 10:37 10:38 10:39 10:40 10:41 1O:42 10:43 10:44 10:45 10:46 10:47 10:48 10:49 10:50 10:51 10:52 10:53 69.31 71.72 72.69 9.78 9.26 9.37 Run 5 NOx pomvd 02% @wl 67.79 67.59 68.66 67.83 67.53 69.93 70.80 72.53 69.80 69.27 69.06 68.96 71.73 71.86 72.53 71.23 71.43 72.26 72.25 73.87 70.73 COZ% (drvl 6.09 6.06 6.08 6.05 6.02 6.03 6.04 6.05 6.13 6.08 6.01 6.02 6.01 6.09 6.15 6.15 6.10 6.04 6.06 6.13 6.17 73.56 9.24 73.51 9j273.59 9.01 CO2 % (drv) 6.03 6.06 6.08 6.01 6.08 6.07 6.02 6.06 6.00 6.02 6.14 6.19 6.20 6.17 6.10 6.11 6.11 6.18 6.22 6.21 6.17 Run 6 NOx oomvd 02% Gwl76.83 9.8069.69 9.8970.41 9.79 69.53 9.59 69.56 9.6569.55 9.88 72.89 72.27 74.47 74.33 74.64 73.34 71.51 72.90 72.98 9.00 9.05 9.20 9.17 9.19 9.03 8.95 8.99 9.06 Average Time 11:04 11:05 11:06 11:07 11:08 11:09 11:10 11:11 11:12 11:13 11.14 11:15 11:16 11:17 11:18 1 1:19 11:20 11:21 11:22 11:23 11:24 5.07 CO2 % (drv) 6.01 6.06 6.03 6.10 6.19 6.12 6.07 6.12 6.21 6.23 6.22 6.14 6.07 6.08 6.13 6.18 6.20 6.12 6.07 6.05 6.05 Average70.36 9.37 Run 7 NOx opmvd 02 % (drv) 72.35 9.33 Run 8 6.11 71.24 70.24 9.M 9.52 Time NOx pomvd 02o/o (dlvl CO2o/o (drvl 11:33 73.07 9.71 6.09 11:34 72.08 9.60 6.0011:35 72.52 9.70 6.0711:36 72.69 9.74 6.0411:37 74.89 9.38 6.0811:38 76.32 9.36 6.06 11:39 76.03 9.32 6.0211:40 77.49 9.19 6.0911:41 77.41 9.11 6.1111:42 77.33 9.06 6.06 11:43 76.45 9.14 6.'14 11:44 76.65 9.27 6.0711:45 77.48 9.40 6.0011:46 79.07 9.40 6.0011:47 79.05 9.15 6.0511:48 77.17 9.01 6.01 11.49 76.85 9.07 6.07 11:50 78.07 9.32 6.02 11:51 80.35 9.42 6.0211:52 79.90 9.36 6.06'11:53 80.00 9.16 6.09 I I T T I T 70.84 9.39 74.19 9.0174.55 8.97 72.46 74.66 74.31 73.15 74.64 9.23 9.04 9.21 9.31 9.21 9.00 9.18 9.31 9.29 9.18 9.07 9.04 8.80 9.02 74.24 74.76 74.75 74.61 76.17 75.96 75.82 73.82 73.8273.00 9.00 74.86 9.10 73.91 9.17 MostardiPlatt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 t T t v5.0 66 of 199 RATA Extractive 41 16120 OMostardi Platt 6.'.12 76.71 Client: PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Test Location: Unit 2 Da!'e:8126124 Run 9 NOx ppmvd 02% {d,wl Run l0Time NOx oomvd 02% (d,wl CO2 % (drv) 12:34 77.21 9.61 6.0612:35 76.37 9.55 6.0012:36 75.56 9.69 6.04'12:37 75.87 9.87 6.0512:38 76.51 9.97 6.0812:39 78.28 9.90 6.0412:4O 76.22 9.75 6.0112.41 76.69 9.22 6.0712:42 78.00 9.15 6.0212:43 79.38 9.34 6.1112:44 80.73 9.36 6.1012:45 79.99 9.24 6.1612:46 80.26 9.22 6.1712:47 79.44 9.31 6.1312:48 79.89 9.15 6.0212:49 79.89 9.11 6.0212:50 80.81 9.12 6.0212:51 79.38 9.31 6.1412:52 80.24 9.51 6.0412:53 80.27 9.41 6.0812:54 80.18 9.23 6.18 Time 12:05 12:06 12:07 12:08 12:09 12:10 12:11 12:12 12:13 12:14 12:15 12:16 12:17 12:18 12:19 12.'2O 12:21 12:22 12.'23 12:24 12:25 75.97 77.68 76.93 76.71 75.65 75.21 74.14 75.87 77.99 78.46 77.96 79.62 80.22 79.46 78.81 78.44 79.70 79.71 80.01 78.20 78.U 9.809.82 6.069.87 6.049.73 6.009.66 6.049.70 6.029.70 6.029.66 6.049.45 6.M9.37 6.089.15 6.189.19 6.179.18 6.179.16 6.179.'t5 6.199.13 6.199.17 6.'t89.34 6.109.39 6.079.34 6.109.33 6.11 CO2 % (drvl 6.07 77.85 MostardiPlatt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 6.10 v5.0 67 of 199 RATA Extractive 4116120 OMostardi Platt Client: PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 3 Date:8127124 I t T T T T I t T I Time 6:35 6:36 6:37 6:38 6:39 6:40 6:41 6:42 6:43 6:44 6:45 6:46 6:47 6:48 6:49 6:50 6:51 6:52 6:53 6:54 6:55 Run 1 NOx ppmvd 02o/o Grvl Run 2 Time NOx opmvd 02% Hryl7:02 53.61 9.61 7:03 54.42 9.63 7:04 53.80 9.627:05 52.33 9.717:06 50.88 9.747:07 51.83 9.65 7:08 53.17 9.67 7:09 51.91 9.61 7:10 54.43 9.697:11 54.39 9.607:12 51.30 9.687:13 51.65 9.657:14 52.97 9.607:15 55.46 7:16 55.70 7:17 52.57 7:18 53.907:19 55.417:20 55.357:21 56.567:22 53.03 9.71 9.77 9.71 9.70 9.72 9.74 9.79 9.78 45.29 50.90 48.72 40.39 36.06 44.44 49.77 50.27 47.O1 47.90 49.19 9.62 9.55 9.64 9.81 9.85 9.65 9.60 9.69 9.67 9.68 9.67 47.59 9.67 CO2 % (drv) 6.38 6.78 6.53 6.55 6.25 6.32 6.34 6.31 6.31 6.32 6.31 6.36 6.39 6.30 6.29 6.30 6.31 6.31 6.30 6.30 6.30 CO2 % (drv) 6.31 6.30 6.31 6.28 6.27 6.31 6.3't 6.33 6.30 6.34 6.31 6.32 6.34 6.30 6.27 6.30 6.30 6.30 6.29 6.27 6.28 51.31 9.7149.36 9.65 48.85 48.58 49.49 51.74 54.23 53.52 54.32 9.65 9.62 9.61 9.63 9.66 9.67 9.68 Average Time 7:28 7:29 7:30 7:31 7:32 7:33 7:34 7:35 7:36 7:37 7:38 7:39 7:40 7:41 7:42 7:43 7:44 7:45 7:46 7:47 7:48 5.36 CO2% Grvl 6.31 6.30 6.29 6.27 6.29 6.32 6.30 6.32 6.23 6.27 6.31 6.32 6.34 6.31 6.33 6.34 6.32 6.33 6.34 6.33 6.33 Average48.52 9.67 Run 3 NOx pomvd 02% @ryl55.96 9.6055.66 9.6752.96 9.71 53.56 9.68 Run 4 6.30 52.86 52.49 55.36 56.29 54.66 53.23 47.46 9.76 9.74 9.69 9.72 9.67 9.90 9.81 Time NOx ppmvd 02% Hryl CO2 % (drv) 7:55 55.56 9.62 6.357:56 56.23 9.67 6.347:57 55.31 9.73 6.327:58 55.78 9.83 6.28 7:59 57.22 9.65 6.36 8:00 56.52 9.75 6.31 8:01 56.38 9.74 6.328:02 55.32 9.75 6.328:03 55.59 9.73 6.33 8:04 56.49 9.77 6.31 8:05 55.77 9.69 6.35 8:06 57.41 9.67 6.368:07 57.14 9.64 6.378:08 56.70 9.69 6.35 8:09 57.05 9.69 6.35 8:10 56.56 9.71 6.34 8:'11 55.93 9.69 6.35 8:12 57.16 9.69 6.358:13 58.01 9.69 6.35 8: 14 57 .21 9.67 6.36 8:15 55.95 9.67 6.36 I T I I t I 52.89 9.73 56.49 54.22 9.70 9.6654.16 9.7352.69 9.68 52.49 9.67 52.96 9.71 53.79 9.7055.83 9.68u.40 9.72 53.95 9.71 Average MostardiPlatt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 v5.0 68 of 199 T t T 6.349.70 RATA Extractiv e 41 1 6120 OMostardi Platt 6.31 Average I t I T I I T T I T Client: PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 3 Date:8127124 Run 5 NOx ppmvd O2o/o |drvl Run 6 NOx pomvd 02o/o (drvl 55.62 9.6355.53 9.6157.12 9.6856.52 9.6357.33 9.6055.69 9.6454.76 9.6455.9't 9.6455.85 9.6357.68 9.6455.17 9.6454.68 9.6756.56 9.6555.23 9.63 57.07 56.18 55.27 56.83 56.81 57.27 55.72 9.65 9.66 9.64 9.65 9.65 9.65 9.68 Time 8:22 8:23 8:24 8:25 8:26 8:27 8:28 8:29 8:30 8:31 8:32 8:33 8:34 8:35 8:36 8:37 8:38 8;39 8:40 8:41 8:42 56.24 56.03 57.26 56.65 56.11 55.66 56.99 57.92 57.15 57.18 55.21 55.95 56.58 57.06 57.M 55.1 I 55.45 56.54 56.08 56.20 55.59 9.61 9.65 9.68 9.73 9.80 9.62 9.59 9.68 9.62 9.61 9.& 9.66 9.66 9.67 9.67 9.67 9.68 9.66 9.65 9.67 9.66 Time 8:49 8:50 8:51 8:52 8:53 8:54 8:55 8:56 8:57 8:58 8:59 9:00 9:01 9:02 9:03 9:04 9:05 9:06 9:07 9:08 9:09 COZ% ldrvl 6.36 6.36 6.35 6.34 6.30 6.38 6.40 6.37 6.39 6.40 6.38 6.38 6.38 6.38 6.37 6.38 6.37 6.38 6.39 6.38 6.39 CO2% @ryl 6.38 6.40 6.37 6.39 6.41 6.40 6.40 6.40 6.41 6.40 6.40 6.39 6.40 6.41 6.40 6.40 6.41 6.40 6.40 6.41 6.39 Average Time 9:15 9:16 9:17 9:18 9:19 9:20 9:21 9:22 9:23 9:24 9:25 9:26 9:27 9:28 9:29 9:30 9:31 9:32 9:33 9:34 9:35 6.37 CO2 % (drv) 6.41 6.41 6.41 6.41 6.42 6.42 6.42 6.43 6.42 6.41 6.40 6.42 6.41 6.43 6.41 6.43 6.42 6.42 6.41 6.42 6.42 s6.38 9.56 Run 7 NOx opmvd 02o/o (dwl 57.74 9.5358.29 9.58s7.87 9.60 57.16 9.62 55.69 9.61 55.07 9.61 56.88 9.62 55.36 9.60 55.04 9.Al 55.55 9.65 55.17 9.68 57.04 9.63 56.81 9.65 56.04 9.60 55.67 9.6654.76 9.6356.45 9.65 il.90 9.65 u.79 9.67 56.13 9.6555.81 9.66 Average 56.13 I t I I T I Run 8Time NOx ppmvd O2o/o (drvl CO2 % (drv) 9:41 55.16 9.48 6.45 9:42 56.69 9.53 6.45 9:43 56.72 9.59 6.44 9:44 56.26 9.58 6.459:45 55.20 9.61 6.449:46 55.47 9.65 6.429:47 55.16 9.67 6.42 9:48 57.48 9.59 6.45 9:49 57.79 9.59 6.45 9:50 57.34 9.58 6.45 9:51 56.77 9.58 6.469:52 58.12 9.56 6.469:53 56.99 9.57 6.469:54 56.46 9.55 6.47 9:55 55.64 9.59 6.46 9:56 54.98 9.62 6.44 9:57 55.71 9.60 6.469:58 55.06 9.60 6.459:59 55.03 9.59 6.46 10:00 54.89 9.72 6.41 10:01 55.53 9.62 6.45 T T T Average 56.11 MostardiPlatt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 v5.0 69 of 199 RATA Extractiv e 4l I 6120 @Mostardi Platt 56.12 Client: PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 3 Date:8127124 I T I T T T T T T t Time 10:07 10:08 10:09 10:10 10:11 10:12 10:13 10:14 10:15 10:16 1O:17 10:18 10:19 10:20 10:21 10:22 10:23 10:24 10:25 10:26 10:27 Run 9 NOx ppmvd 02% GwI CO2 % (drv) 58.53 9.47 6.4757.45 9.52 6.4757.73 9.56 6.4756.51 9.55 6.4854.96 9.60 6.46 58.32 9.64 6.4459.28 9.69 6.4346.35 9.88 6.34 38.82 9.76 6.40 49.39 9.53 6.5055.98 9.39 6.56 57.29 9.36 6.57 54.46 9.61 6.4742.45 9.70 6.4337.96 9.66 6.4549.27 9.43 6.5554.63 9.38 6.5755.66 9.38 6.56 53.24 9.45 6.54 50.92 9.51 6.52s0.00 9.53 6.51 Run 10 Time NOx pomvd O2o/o Gwl CO2 % (drv) 10:33 52.82 9.45 6.4910:34 52.74 9.39 6.5410:35 55.91 9.55 6.4810:36 53.42 9.62 6.47 10:37 51.31 9.54 6.49 10:38 53.08 9.67 6.4410:39 51.07 9.53 6.5110:40 53.60 9.53 6.51 10:41 55.84 9.53 6.5110:42 56.10 9.49 6.5310:43 55.78 9.51 6.5210:44 54.56 9.54 6.5110:45 54.85 9.56 6.5010:46 54.04 9.57 6.5010:47 53.03 9.53 6.5110:48 54.88 9.57 6.50 10:49 55.82 9.56 6.50 10:50 59.16 9.59 6.50 10:51 57.02 9.60 6.49 10:52 55.28 9.57 6.5110:53 54.82 9.60 6.49 MostardiPlatt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Average 6.50 v5.0 70 of 199 RATA Extractiv e 4 I 1 61 20 @Mostardi Platt I T T I I I T I I I Client: PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 4 Datei 8128124 Time 6:35 6:36 6:37 6:38 6:39 6:40 6:41 6:42 6:43 6:44 6:45 6:46 6:47 6:48 6:49 6:50 6:51 6:52 6:53 6:54 6:55 16.10 16.11 16.11 16.10 16.09 15.98 16.02 16.02 16.04 16.04 16.04 16.03 16.02 15.97 15.97 15.97 15.97 15.97 15.97 15.98 15.96 Run 1 NOx oomvd 02% (drvl 1.19 1.19 1.19 1.19 1.33 0.94 0.92 0.89 0.99 0.99 1.12 1.19 1.25 1.39 1.39 1.39 1.49 1.59 1.59 1.59 1.59 Run 2Time NOx ppmvd 02o/o |drvl CO pomvd7:O7 1.59 16.35 1.027:08 1.59 16.34 1.057:09 1.20 16.33 1.067:10 1.05 16.35 1.047:11 1.'19 16.35 1.077:12 1.22 16.35 1.097:13 1.30 16.34 1.057:14 0.99 16.33 1.067:15 1.19 16.29 1.057:16 1.23 16.29 1.127:17 1.39 '16.30 1.097:18 1.56 16.30 1.137:19 1 .59 16.30 1.077:20 1.59 16.31 1.097:21 1.59 16.31 1.117:22 1.59 16.32 1.107:23 1.56 16.31 1.207:24 1.59 16.30 1.267:25 1.53 16.28 1.157:26 0.86 16.28 1.087:27 0.79 16.28 1.13 CO opmvd 1.07 1.07 1.08 1.04 1.M 1.08 0.99 1.01 1.00 1.02 1.02 1.04 1.01 1.00 1.05 1.04 1.01 0.98 '1.05 1.04 1.01Average 1.26 16.02 Run 3Time NOx oomvd 02% /dlvl CO opmvd 't.03 Average 1.34 16.31 1.06 1.09 1.10 1.18 1.21 1.19 1.13 1.15 1.18 1.12 1.11 1.15 1.17 1.10 1.U 1.0s 0.99 0.97 0.97 0.99 v5.0 7l of 199 Run 4 Time NOx pomvd 02o/o (drvl CO ppmvd 8:12 0.79 16.31 0.92 8:13 0.79 16^30 0.93 8:14 0.79 16.30 0.96 8:15 0.79 16.29 0.99 8:16 0.79 16.26 1.008:17 0.79 16.26 1.038:18 0.83 16.27 1 .018:19 0.83 16.27 1 .03 8:20 0.80 16.27 1.06 8:21 0.79 16.28 1.07 8:22 0.80 16.22 1.16 8:23 0.80 16.20 1.168:24 0.79 '16.20 1.218:25 0.80 16.19 1.13 8:26 0.80 16.18 1.21 8:27 0.83 16.18 1.18 8:28 0.80 16.17 1.16 8:29 0.87 1 6.18 1 .1 I8:30 0.99 1 6.1 8 1 .1 I 8:31 0.99 16.18 1.27 8:32 0.99 16.18 1.22 1.10 7:39 7:4O 7:41 7:42 7:43 7:44 7:45 7:46 7:47 7:48 7:49 7:50 7:51 7:52 7:53 7:54 7:55 7:56 7:57 7:58 0.79 0.83 0.90 0.99 1.16 1.26 1.43 1.59 1.66 1.83 1.99 2.13 2.19 2.19 2.40 2.56 2.11 1.59 1.85 2.22 16.34 16.33 16.35 16.35 16.36 16.36 16.36 16.36 16.36 16.36 16.36 16.36 16.37 16.36 16.35 16.34 16.34 16.33 16.34 16.337:59 1.40 16.24 0.98 MostardiPlatt Project No. M243506 Unit '1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 1.10 RATA Extractiv e 4l I 6120 OMostardi Platt Average Client: PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 4 Date:8128124 I I I e:37 1.8e 16.13 o.6i IAvaraoe 1.89 16.17 0 5?- I aAverage 1.84 16.13 0.92 I rime Hor.pr#" uorn ro^ co ppmvd rime ,rr"*f'Ll n ,or, co ppmvd I8:44 1.08 16.29 1.01 9'.17 1.89 16.24 0.918:45 1.58 16.29 1 .00 9:18 1 .89 16.25 0.88 8:46 1.g4 16.28 O.g7 9:19 1 .89 16.25 0.92 I8:47 2.07 16.28 0.98 9:20 1.89 16.23 0.93 I 8:48 2.28 16.26 0.98 9:21 1.89 16.22 0.888:49 1.7O 16.26 0.97 9:22 1.89 16.18 0.92 I8:50 '1.59 16.27 0.89 9:23 1.91 16.15 0.92 t8:51 1.94 16.27 0.91 9:24 1.89 16.15 0.958:52 2.47 16.27 0.93 9:25 1.89 16.15 0.918:53 2.85 16.27 O.g2 9:26 1.89 16.14 0.91 I8:54 3.11 16.27 0.95 9:27 1.89 16.14 0.90 I8:55 3.24 16.26 0.93 9:28 1.89 16.14 0.908:56 2.72 16.21 O.92 9:29 1.89 16.14 0.93 I8:57 2.01 16.18 0.93 9:30 1.89 16.14 0.87 I8:58 2.35 16.18 0.92 9:31 1.89 16.14 0.93 r 8:59 2.64 16.18 0.99 9:32 1.89 16.14 0.939:00 2.79 16.18 0.96 9:33 1.89 16.15 0.87 I9:01 2.81 16.18 0.94 9:34 1.89 16.15 0.91 I9:02 2.94 16.18 0.95 9:35 1.89 16.13 0.929:03 2.79 16.18 0.97 9:36 1.89 '16.12 0.969:04 2.64 16.18 0.97 9:37 1.89 16.13 0.92Average 2.36 16.23 0.95 Average 1.89 16.17 0.91 Run 7 Run Irtr ryww ffiwry''"w t9:50 1.85 16.22 0.90 10:22 1.86 16.22 0.929:51 1.87 16.22 0.90 10:23 1.86 16.22 0.919:52 1.89 16.21 0.95 10:24 1.89 16.22 O.9O I9:53 1.89 16.21 0.95 10:25 1.89 16.22 0.899:54 1.89 16.20 0.95 10:26 1.89 16.20 0.919:55 '1.89 16.19 0.95 10:27 1.89 16.21 0.89 I9:56 1.89 16.20 0.93 10:28 1.89 16.19 0.91 I9:57 1 .89 16.1 8 0.88 1 0:29 1 .89 16.20 0.919:58 1.89 16.13 0.94 10:30 1.89 16.12 0.919:59 1.89 16.13 O.g2 10:31 1.89 16.10 0.93 I 1 0:00 1 .89 16.1 3 0.92 10:32 1 .82 1 6.08 0.94 a 1 0:01 1 .89 16.1 3 0.90 1 0:33 1 .80 1 6.08 0.9510:02 1 .89 1 6.1 3 0.89 1 0:34 1 .73 16.09 0.92 t 1 0:03 1 .89 1 6.1 3 0.89 1 0:35 1 .80 16.07 0.9'l I1 0:04 1 .89 1 6.1 3 0.94 10:36 1 .86 't 6.05 0.94 1 0:05 1 .80 16.14 0.94 10:37 1 .80 16.05 0.9610:06 1.82 16.14 0.93 10:38 1.80 16.00 0.95 I10:07 2.OO 16.12 0.99 10:39 1.80 16.06 0.97 I10:08 2.03 16.12 0.97 10:40 1.80 16.06 0.92 1 0:09 1 .93 1 6.1 0 0.93 10:41 1 .80 16.06 0.94Average 1.89 16.16 0.93 Average 1.84 16.13 0.92 MostardiPlatt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 v5.0 72 of 199 RATA Extract ive 4t16t2O I @Mostardi Plaft T I I t T T T I t I I Client: PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 4 Dal.c:8128124 Time 11:03 11:04 11:05 11:06 11:07 '11:08 11:09 '11:10 11:11 11:12 '11:13 11:14 11:15 11:16 11:17 11:18 11:19 11:2O 11:21 11:22 11:23 2.30 2.36 2.33 2.36 2.30 2.30 2.27 2.20 2.33 2.29 2.26 2.36 2.20 2.36 2.23 2.40 2.36 2.40 2.32 2.27 2.O0 2.20 2.19 2.19 2.12 2.12 2.19 2.24 2.27 2.01 2.20 2.20 2.20 2.14 2.10 2.10 2.09 2.06 2.09 2.10 16.16 16.15 16.14 16.14 16.14 16.14 16.13 16.13 16.13 16.10 16.05 16.05 16.04 16.01 16.01 16.01 16.01 16.01 16.00 15.63 Run 9 NOx oomvd 02o/o ldwl2.30 16.18 16.10 16.10 16.08 16.08 16.09 16.09 16.07 16.07 16.08 16.07 16.07 16.07 16.07 16.06 16.06 16.06 16.06 16.05 16.05 16.05 CO ppmvd 0.90 0.93 0.92 0.92 0.93 0.94 0.94 0.95 0.90 0.91 0.9'l 0.93 0.96 0.91 0.91 0.94 0.94 0.95 0.93 0.97 0.90 Time 11:35 11:36 11:37 11:38 11:39 11:40 11:41 11:42 11:43 11:44 11:45 11:46 11:47 11:48 11:49 11:50 11:51 11:52 11:53 11:54 11:55 CO pomvd 0.90 0.90 0.89 0.91 0.91 0.90 0.88 0.95 0.88 0.95 0.91 0.94 0.94 0.96 0.96 0.98 0.98 0.94 0.93 0.93 0.98 Run 10 NOx oomvd O2o/o 1dwI2.16 16.17 I I I I I T I I I Average Time 12:O7 12:08 12:O9 12:10 12:11 12:12 12:13 12:14 12:15 12:16 12:17 12:18 12:19 12:20 12:21 12:22 12:23 12:24 12:25 12:26 12:27 16.13 16.13 16.13 16.14 16.13 16.12 16.11 16.10 16.10 16.10 16.04 't6.04 16.04 16.04 16.04 16.03 16.04 16.03 16.02 16.00 16.00 0.93 CO oomvd 0.94 0.93 0.86 0.87 0.92 0.93 0.92 0.93 0.90 0.91 0.93 0.94 0.92 0.93 0.96 0.93 0.96 0.93 0.91 0.93 0.92 2.31 16.08 Run l'l NOx oomvd 02% {dlvl 2.20 2.30 2.31 2.30 2.30 2.30 2.31 2.38 2.3s 2.33 2.34 2.30 2.30 2.34 2.30 2.30 2.30 2.30 2.30 2.29 2.31 Average 2.14 2.31 16.07 Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 v5.0 73 of 199 RATA Extractiv e 41 1 6120 @Mostardi Platt Client: PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Test Location: Unit 5 Date:8128124 I T T T I T I t T T Time 6:35 6;36 6:37 6:38 6:39 6:40 6:41 6:42 6:43 6:44 6:45 6:46 6:47 6:48 6:49 6:50 6;51 6:52 6:53 6:54 6:55 Run 1 NOx oomvd 02% Hwl CO pomvd4.39 16.08 I .644.28 16.11 1.614.03 16.11 1.583.74 16.11 1.563.41 16.09 1 .553.39 16.06 1.603.31 16.07 1.573.20 16.08 1.593.11 16.09 1.553.00 16.09 1.533.00 16.10 1.533.00 16.07 1.532.81 16.06 1.552.91 16.06 1.562.98 16.06 1 .572.93 16.06 1 .542.83 16.06 1.522.95 16.06 1.512.81 16.07 1.532.79 16.07 1.512.79 16.07 1.51 Run 2 Time NOx oomvd 02% @wl CO oomvd7:07 2.59 15.81 1.53 7:08 2.59 15.96 1.577:09 2.59 16.08 1.587:10 2.59 16.10 1.597:11 2.49 16.13 1.58 7:12 2.59 16.14 1.56 7:13 2.59 16.15 1.577:14 2.59 16.15 1.607:15 2.59 16.13 1.597:16 2.59 16.14 1.587:17 2.59 16.14 1.557:18 2.59 16.16 1.54 7:19 2.59 16.17 1.55 7:20 2.59 16.17 1.557:21 2.59 16.'16 1.547:22 2.59 16.16 1.577:23 2.47 16.16 1.617:24 2.39 16.16 1.687:25 2.35 16.13 1.65 7:26 2.59 16.10 1.63 7:27 2.50 16.1 1 1.72 Average Time 7:39 7:40 7:41 7:42 7:43 7:44 7:45 7:46 7:47 7:48 7:49 7:50 7:51 7:52 7:53 7:54 7:55 7:56 7:57 7:58 7:59 3.22 16.08 Run 3 2.79 '16.11 1.55 Average 8:32 1.99 16.11 1.59 16.09 '1.93 NOx opmvd 02% Gryl CO pomvd 2.19 16.06 ',t.76 2j9 16.09 1.76 2.33 16.13 1.83 2j9 16.15 1.782.19 16.15 1.802.19 16.17 1.782.29 16.18 1.672.39 16.19 1.67 2.39 16.18 1.67 2.39 16.18 1.632.39 16.17 1.U2.39 16.17 1.662.39 16.15 1.77 2.39 16.14 1.66 2.52 16.13 1.552.69 16.13 1.522.63 '16.13 1.512.79 16.13 1.51 2.73 16.13 1.51 2.72 16.13 1.50 Run 4Time NOx opmvd 02% Hwl CO opmvd8:12 2.16 16.03 1.52 8:13 2.19 16.05 1.48 8:14 2.19 16.06 1.50 8:1 5 2.12 16.07 1 .518:16 2.59 16.07 1.568:17 2.36 16.07 1.628:18 2.23 16.08 '1.63 8:19 2.23 16.09 1.68 8:20 2.19 16.11 1.69 8:21 1.99 16.13 1.788:22 1.96 16.15 1.84 8:23 1.79 16.14 1.95 8:24 1.79 16.14 1.99 8:25 1.79 16.13 1.95 8:26 1 .89 16.10 1.928:27 1.99 16.09 1.92 8:28 1.96 16.09 2.01 8:29 1.86 16.09 2.02 8:30 1.86 16.09 2.02 8:31 1.99 16.09 2.00 t T t T t I 1.48 15.14 Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 t T I 1.79 v5.0 74 of 199 16.09 RATA Extractiv e 4 I 1 6120 @Mostardi Platt 1.65 Average 2.O5 I I T I T T t t I I Client: PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Test Location: Unit 5 Date:8128124 Time 8:44 8:45 8:46 8:47 8:48 8:49 8:50 8:51 8:52 8:53 8:54 8:55 8:56 8:57 8:58 8:59 9:00 9:01 9:02 9:03 9:M Run 5 NOx opmvd 02% 4d,wl2.39 16.012.53 16.052.59 16.062.59 16.072.59 16.072.66 16.062.70 16.072.73 16.082.92 16.092.83 16.092.89 16.092.93 16.102.89 16.092.69 16.092.79 16.102.83 16.102.79 16.112.83 16.112.82 16.122.86 16.112.83 ',16.12 Run 6Time NOx oomvd 02o/o /d,wl 9:17 2.97 16.009:18 2.89 16.039:19 2.98 16.049:20 2.87 16.039:21 2.99 16.049:22 2.96 16.059:23 2.99 16.069:24 2.99 16.079:25 2.93 16.079:26 2.99 16.089:27 2.99 16.099:28 2.88 16.119:29 2.89 16.119:30 2.94 16.119:31 2.99 16.129:32 2.96 16.099:33 2.99 16.109:34 2.99 16.119:35 2.99 16.099:36 2.99 16.099:37 2.99 16.10 CO ppmvd 1.58 1.56 1.34 1.56 1.56 1.57 1.51 1.48 1.47 1.46 1.45 1.46 1.49 1.49 1.49 1.47 1.48 1.46 1.47 1.46 1.45 CO oomvd 1.48 1.49 1.49 1.49 1.48 1.48 1.47 1.46 1.44 '1.45 1.45 1.47 1.47 1.43 1.43 1.44 1.44 1.4',1 1.43 1.43 1.44 I I T I T T Average Time 9:49 9:50 9:51 9:52 9:53 9:54 9:55 9:56 9:57 9:58 9:59 10:00 10:01 10:02 10:03 10:04 10:05 10:06 10:07 10:08 10:09 1.50 CO ppmvd 1.41 1.41 1.41 1.42 1.42 1.44 1.41 1.40 1.42 1.41 1.41 1.43 1.42 1.40 1.39 1.39 1.39 1.38 1.39 1.39 1.42 2.75 16.09 Run 7 NOx pomvd 02% 1d,wl Average 2.96 10:41 1.59 16.08 1.46 16.12 2.20 3.01 3.01 2.99 2.99 3.03 2.99 2.99 2.99 16.08 16.10 16.11 16.11 16.13 16.13 16.16 16.17 Run 8Time NOx pomvd 02 % (drvl CO pomvd 10:21 2.59 16.07 1.4110:22 2.59 16.10 1.4210:23 2.63 16.10 1.4210:24 2.65 16.12 1.4210:25 2.69 16.13 1.4110:26 2.67 16.14 1.4210:27 2.59 16.15 1.401O:28 2.78 16.16 1.3910:29 2.79 16.17 1.4'l10:30 2.79 16.18 1.4010:31 2.79 16.16 1.4010:32 2.79 16.14 1.38 1 0:33 2.80 16.1 3 1 .4010:34 2.79 16.14 1.3810:35 2.80 16.13 1.4110:36 2.79 16.14 1.4O10:37 2.79 16.14 1.3910:38 2.79 16.14 1.3910:39 2.86 16.14 1.3710:40 2.70 16.14 1.49 2.99 16.163.03 16.172.99 16.17 3.14 16.17 3.04 16.15 2.88 16.16 2.79 16.172.76 16.182.90 16.17 3.13 16.17 3.19 3.09 2.86 16.17 16.16 16.15I I T Average 2.99 MostardiPlatt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 16.15 1.41 v5.0 75 of 199 16.14 1.44 RATA Extractiv e 41 1 6120 @Mostardi Platt Average Client: PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Test Location: Unit 5 Date:8128124 I t I I T t T T I T Run 9 NOx opmvd 02%(dlvl Run 10 NOx ppmvd 02% GwlTime 11:03 11:04 11:05 11:06 11:07 11:08 11:09 11:10 11 11 11:12 I'l:'13 11:14 1 1:15 1 1:16 11:17 11:18 1 1:19 11:20 11:21 11:22 11:23 3.39 3.27 3.19 2.91 2.85 2.77 2.59 2.60 2.65 2.79 2.82 2.86 2.79 2.76 2.66 2.66 2.59 2.59 2.69 2.62 2.96 16.16 16.16 16.17 16.17 16.17 16.18 16.19 16.17 16.15 16.13 16.14 16.14 16.14 16.14 16.16 16.16 16.17 16.17 16.16 16.15 16.16 Time 11:35 11:36 11:37 11:38 1 1:39 11:40 11:41 11:42 11:43 11:44 11:45 11:46 11:47 11:48 11:49 11:50 11:51 11:52 11:53 11:54 11:55 2.69 2.59 2.59 2.63 3.09 3.'19 3.19 3.03 3.03 2.86 2.63 2.59 2.59 2.49 2.46 2.79 2.99 2.99 2.99 2.93 2.96 16.01 16.08 16.08 16.10 16.09 16.10 16.11 16.11 16.12 16.14 16.16 16.17 16.17 16.17 16.15 16.14 't6.15 16.16 16.12 16.12 16.12 CO oomvd 1.38 1.40 1.37 1.37 1.36 1.36 1.35 1.37 1.36 1.35 1.37 1.37 1.37 1.37 1.38 1.36 1.U 1.35 1.35 1.36 1.38 CO pomvd 1.27 1.37 1.38 1.35 1.37 1.37 1.39 1.38 1.40 1.39 1.36 1.36 1.38 1.37 1.36 1.40 1.42 1.41 1.41 1.39 1.40 Average Time 12:O7 12:08 12:09 12:10 12:11 12:12 12:13 12:14 12:15 12:16 12:17 12:18 12:19 12:20 12:21 12:22 12:23 12:24 12:25 12:26 12:27 1.37 CO oomvd 1.49 1.45 1.43 1.41 1.40 1.39 1.38 1.38 1.38 1.36 1.U 1.33 1.31 1.34 1.3s 1.35 1.35 1.36 1.U 1.35 1.38 16.122.81 16.16 Run 11 NOx ppmvd 02o/o (drvl 2.33 16.042.40 16.06 2.29 16.07 2.36 16.11 2.33 16.122.40 16.122.40 16.122.39 16.142.54 16.14 2.90 16.14 2.99 16.152.62 16.162.53 16.172.45 16.17 2.39 16.15 2.49 16.142.39 16.142.39 16.152.39 16.14 2.54 16.13 2.97 16.12 1.38 T T T T T I Average 16.13 1.37 I t I MostardiPlatt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 v5.0 76 of 199 RATA Extractiv e 41 1 6120 OMostardi Platt I I I t t t T T T I Client PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 6 Date:8129124 Time 6:40 6:41 6:42 6:43 6:44 6:45 6:46 6:47 6:48 6:49 6:50 6:51 6:52 6:53 6:54 6:55 6:56 6:57 6:58 6:59 7:00 Run I NOx ppmvd 02 % (drv) 3.13 16.362.81 16.352.71 16.352.60 16.362.48 16.352.28 16.352.18 16.361.99 16.361.94 16.361.80 16.361.64 16.351.60 16.361.60 16.361.59 16.361.59 16.371.59 16.371.59 16.381.59 16.381.59 16.371.59 16.371.59 14.35 Run 2Time NOx ppmvd 02% Grul CO ppmvd7:08 1.59 16.32 1.027:09 1 .59 '16.35 1.047:10 1 .59 16.35 1.067:11 1 .79 16.34 1.037:12 1.79 16.33 1.057:13 1.76 16.32 1.077.14 1.76 16.32 1.067:15 1 .76 16.33 1.087:16 1.U 16.33 1.097:17 1 .59 16.34 1.067:18 1 .59 16.34 1.077:19 1 .59 16.33 1.O77:20 1 .59 16.35 1.047:21 1 .59 16.35 1.047:22 1 .59 16.36 1.O47:23 1.59 16.36 1.047:24 1.59 16.36 1.047:25 1.59 16.36 1.067:26 1.59 16.37 1.057:27 1.59 16.36 1.067:28 1.59 16.34 1.05 CO oomvd 1.21 1.19 1.09 1.10 1.04 1.O4 1.05 't.03 1.01 1.03 1.00 1.03 1.03 1.03 1.03 1.03 1.07 1.03 1.01 1.02 1.09 Average 1.98 16.27 Run 3Time NOx pomvd 02% {drvl CO ppmvd Average 1.64 16.34 Run 4 1.0s1.06 1.05 I I I I T T I I I 7:44 7:45 7:46 7:47 7:49 7:39 7:40 7:41 7:42 1.59 1.59 1.59 1.59 1.59 1.59 1.59 1.59 1.59 1.59 1.59 1.59 1.59 1.59 1.59 1.59 1.59 1.59 1.59 1.59 16.32 16.32 16.33 16.33 16.34 16.34 16.33 16.35 16.35 16.35 16.35 16.34 16.34 16.35 16.35 16.35 16.35 16.36 16.35 16.35 1.09 1.09 1.06 1.08 1.01 1.06 't.09 1.06 1.07 1.08 1.04 '1.01 1.07 1.07 '1.05 1.02 1.05 1.02 1.U 1.01 Time NOx oomvd 02olo (dwl CO opmvd8:07 1.59 16.31 1.098:08 1.66 16.30 1.O28:09 1.79 16.28 1.048:10 1.79 16.28 1.038:11 1.79 16.28 1.028:12 1.79 16.29 1.018:13 1.79 16.29 1.088:14 1.80 16.28 1.098:15 1.80 16.29 1.068:16 1.79 16.29 1.028:17 1.79 16.28 1.098;18 1.79 16.30 1.088:19 1.79 16.31 1.098:20 1.79 16.31 1.028:21 1.79 16.31 1.058:22 1.79 16.30 1.088:23 1.79 16.31 1.018:24 1.80 16.32 1.058:25 1.79 16.31 1.018:26 1.79 16.31 1 .088:27 1.79 16.29 1.08 7:51 7:52 7:55 7:57 1.59 16.35 1.06 MostardiPlatt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 v5.0 77 of 199 16.30 RATA Extractiv e 41 1 6120 @Mostardi Platt Average 1.78 Client: PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 6 Date:8129124 I T I T I T T t I T Time 8:36 8:37 8:38 8:39 8:40 8:41 8:42 8:43 8:44 8:45 8:46 8:47 8:48 8:49 8:50 8:51 8:52 8:53 8:54 8:55 8:56 Run 5 NOx ppmvd 02% Grvl CO opmvd 1.79 16.29 1 .06 1.76 16.30 1 .011.79 16.32 1 .081.76 16.31 1.021.76 16.31 1.O2 1.77 16.31 1.O4 1.76 16.31 1 .06 1.79 16.32 1.031.80 16.31 1.05 1 .79 16.30 1 .05'1.80 16.30 1 .061.80 16.31 1.O4 1.79 16.30 1 .09 1.79 16.31 1.01 1.79 16.30 1.00 1 .74 16.29 1 .0'l1.79 16.29 1 .031.80 16.30 1.001.80 16.30 1.01 1.80 16.30 1.06 1.80 16.30 1.02 Run 5 Time NOx ppmvd 02o/o {dlvl9:05 1.80 16.269:06 1.79 16.269:07 1.80 16.269:08 1 .80 16.26 9:09 1.80 16.25 9:10 1.80 16.24 9:11 1.80 16.249.12 '1.80 16.25 9:13 1.80 16.25 9:14 1.80 16.26 9:15 1.80 16.27 9:16 1.81 16.27 9:17 2.00 16.27 9:18 2.01 16.279:19 2.OS 16.279:20 2.00 16.279:21 2.00 16.27 9:22 2.00 16.26 9:23 1.98 16.26 9:24 1.83 16.25 9:25 1.86 16.24 CO ppmvd 1.07 1.04 1.04 1.05 1.09 1.08 1.03 1.09 1.05 1.09 1.02 1.O4 1.O7 1.01 1.04 1.04 1.07 1.O7 1.05 1.05 1.06 Average Time 9:35 9:36 9:37 9:38 9:39 9:40 9:41 9:42 9:43 9:44 9:45 9:46 9:47 9:48 9:49 9:50 9:51 9:52 9:53 9:54 9:55 1.04 CO opmvd 1.02 1.07 1.08 1.03 1.04 1.O2 1.04 1.08 1.01 1.03 1.01 1.07 1.03 1.01 1.03 1.04 1.02 1.08 1.01 1.M 1.07 1.78 16.30 Run 7 NOx pomvd 02% @rvl Average 1.87 16.26 1.05 Run 8Time NOx pomvd 02% @ryl CO oomvd 1 0:04 1 .85 16.1 0 1 .O7 1 0:05 1 .91 16.1 0 1 .O7 1 0:06 1 .95 16.08 1 .07 10:07 2.00 16.08 1.01 1 0:08 1 .96 16.07 1 .O710:09 2.00 16.06 1 .09 10:10 2.OO 16.09 1.01 10:11 2.00 16.10 1.05 10.12 1 .81 16.09 1 .0310:13 1.80 16.10 1.01 10:14 1 .80 16.09 1 .08 10:15 1.80 16.08 1.01'10:16 1.80 16.08 1.02 10:17 1 .80 16.07 1 .07 1 0:1 8 1 .80 16.06 1 .08 1 0:1 9 1 .80 16.05 1 .01 1 0:20 1 .80 16.03 1 .09 10:21 1.80 16.01 1.O4 10:22 1.77 16.01 1.0410:23 1.79 15.99 1 .0410'.24 1.80 15.99 1.09 1.62 1.60 1.64 1.80 1.72 1.74 1.80 1.80 1.61 1.71 1.76 16.28 16.28 16.29 16.29 16.29 16.29 16.29 16.29 16.30 16.29 16.29 I T t I I I 1 .80 16.30 1.80 16.29 1 .80 16.28 1.80 1.80 16.27 16.27 1.80 16.27 1.80 16.26 1.80 16.261.80 16.241.80 16.22 Average 1.75 MostardiPlatt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 16.06 1.05 RATA Extractiv e 4 I 1 6120 @Mostardi Plaft I I I v5.0 78 of 199 1.04 Average 1.86 I I t t I Client PacifiCorp Facility: Gadsby Power Plant Project #: M243506 Test Location: Unit 6 Date:8129124 Run 9Time NOx pomvd 02o/o (dtvl CO opmvd Run 10Time NOx oomvd 02olo (dwl CO pomvd 1 1:03 1 .90 16.01 1 .0311:04 1.87 16.05 1.0211:05 1.80 16.06 1.04 1 1:06 1 .80 16.07 1.0411:07 1 .80 16.08 1 .09 1 1:08 1 .80 16.05 1 .03 1 1:09 1 .89 16.04 1 .0111:10 1.93 16.04 1.01'11:11 1.83 16.04 1.0411:12 2.00 16.03 1.0911:13 1.93 16.04 1.0711:14 1.80 16.04 1.09 1 1:15 1.99 16.03 1.03 1 1 :'16 1 .93 16.03 1 .O711:17 2.00 16.02 1.O711:18 2.O0 16.02 1.02 1 1:19 2.00 16.03 1.0911:2O 2.00 16.04 1.0811:21 1.86 16.04 1.O211:22 1.80 16.04 1.0211:23 1.89 16.02 1.O4 10:34 10:35 10:36 10:37 10:38 10:39 10:40 10:41 '10:42 10:43 10:44 10:45 10:46 10:47 '10:48 10:49 10:50 10:51 1.79 1.66 1.80 1.80 1.80 1.80 1.80 1.80 1.80 1.80 1.80 1.80 1.80 1.80 1.80 1.80 1.80 1.80 1.80 1.80 16.06 16.06 16.03 16.04 16.04 '16.05 16.03 16.08 'r6.04 16.04 16.03 16.03 16.04 16.05 16.04 16.03 16.03 16.03 16.03 16.02 1.08 1.02 1.08 1.04 1.02 1.04 1.05 1.04 1.04 1.03 1.01 1.09 1.02 1.04 1.03 1.01 1.02 1.06 1.07 1.01 10:52 10:53 I I I I 10:54 1.96 16.02 1.07Average 1.80 16.04 1.04 MostardiPlatt Proiect No. M243506 Unit '1 , Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Average r.90 16.04 1.05 RATA Extractive 41 16120 @Mostardi Platt v5.0 79 of 199 T I Appendix G - Continuous Emissions Monitoring System Data and Plant Operating Data I I I t I I I t I T I T I I I t I I T Project No. M243506 80 of 199 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 @Mostardi Platt s(LE(Eoo=o oi. d d i o i N N t,oo) l olE :8qo AE E E z A ii i E :e _d Ai il1E (ocllCc(E'r tclicf S. r . t lo . I ! =s=i . i s1 - od = 4E,Y _ .t s F [6 8 f, t ? 5 a??$ t cE SH ; E E ii f E i Jd d . i iI dld"l ' ll f!e i"trl6l' It"id lil=It"l< i lrIiiiul-il"to l*iit IilIl-l=l' iIl*i5lr IIIIlrldIIIIil-t*1t ! t> !,i d toil.IE l,t" IIlolo i t" IIi l1lIII= 6t l!t\Iil' IIl=l3lJlll.ldIt- l. d IIIkt, i dt"l( ! l( I:i"ldlJIIIl1"€IIIl"ql'te I- Iit"t' iit,l' iIIl.lql:ia]N qq{ 1, 1 , tli- t - lo t lo i i' 1 " il l=l]- aIt"ldt- IIl* lllIIIil:l.tt !a l"16 . t' IIInIIIi=dioll( ! It"l., i l*Llo . i- IIll" IIrl' IIi,q l-lni1IIIl.ldIIIIIl; iL(! q;a! t" ld ; l"IlI I .. { lq II l' IIl"lc i l=iIr oN6otNoNb{! 6 L6 Ya * o. g wz E'c * {g XE r ^ ? - EF oI € I F a 6 ar ; e 5 o p5 $1 6 o o6 F N E O) ! E NE (5 k - oo L ii qo O - P E oo-EIou tI q lq Tt l-IElolcIN l-l'trIt ! IN 8 i - i = F5 ,E E :e! ITTTIIITIIITtTIITII (! (LEoooo cid d c i or i . i J . i 6 i d . ; d d o o i q q q q q q q q q q c q q e q q e q q . ! q cq q q q q q q q q q q q e 9 q q q q q q oo 6 @ 6 @ o o o @ o N I'o o) : or = *pOEqo IE E E a a cl l E ! 6 iT E E !E o 63*e -. l i c; c i c i c i c i d c i < i c i c i c ; c ; c i d c i . i c i < i d c i ci nn q : q n t 9 9 q ! t q q q q q \ \ q \ oo 6 0 @ 6 @ @ @ @ @ @ r q Q q q q q q q q . - q \ I ,. C Q I i e ;; ; J ; ; ; ; J J . . J J J : J J : J ; d a r o c i d a r c ; c i d (i a d d a c ; r ; o i d o (o=trlo(E(,f$--f 8i - 6q = cE c&; ) =E r - e{ E z\ *8 t . - 6E G9 J ftrS P gE =o - t r : EH E E s fi i I E i cio d c i -. d ? ! ! ! ! ! i l ! ! ! 9 9 9 Q 9 C< 6 ; 6 6 i o i o i i a o i o i ; ; ; J ; d i E E 6 6 o o o s 65 o! i r eN e q t a N ( N e q e t l l e Q Q Q e l e @6 0 0 @ o o o 6 6 0 0 @ o6ido+No NS sa L PE JF ,v 2 € i * {g XE 'L l r ! - (E >E l i t - ; E EI 6e 5 O 9r S3 5 o oE i x e O) : E FE (E h - oo L A- Q o O - P E oo-t8ot .UEE66o=@ did d N N Nd d S t6 (n : t OEE36Io EE E I I i IIIE il . ; - d id . i F N N .i. i . i d f l d i, j r R l - di i f .i d . i d N i l -. ^ 3 . o'd r r c i N d +., i c i d i l N (o5ELr!d5!l : .F 8; !O { l E Qn t r FEl i t cr -d E Eg E E S J E iX i E i f f qI6iBs tstsqo-fr(! nli: qq*s ts -. ett!s cl E,5 l1e:t fis3Eza- t- , itz3TEqti!E. !EIT)e_i IPrE,t t rE5AD= (F,plri!"F3E BE = ; NNgtN (r ) g E, gE :5 E ;E * ;5 gE I ? 3E si t EF = HH o- 8. E eE ' E IT IEl 0-ErItIITTtII dc i c i d N N Nd N S It6 (' ) lGEsIan +a + 6 di l ; . Y ' N N d; . i d N d FN o S j q4 \ q tIItIIt E gE SE g E E ii f E E EE ! ! i i IIrI ilNs f6i qJ*8N q:q(s :itc!E ,iiNs fltBs 1 1: ,leI!3t Zirzi .E[, iEt-ht tdl'_i fFEE,:: rE5(o= (F9EirIs"t r 3E ,f ; 1 = i Itr io!tN -' E5* E8 T 3c -E E t eE He i o ?t t g8 5 g! E FH * ot - eo bE ECoo-t8o (Eo-E(Eoo=@ a;F : J . i t,o 65oI | : *ao=#Io rir i t s d (o=clEc(E1ocl+cf &F t (r . . l = c? 9 c NF>. i dS E r. F - .t s 8 - Eg E tE 5 !Fo5rS E" - g E EH . E E S fi i I E i tE E 5 g! iE i E E! , a$ *liE lc ; r lc ; -t - II ,1 . Icit-!t: IINlolri!Iidt;l{ iI!I.: t_lst: lele lII .i ,=l ' I .; t' IIt-lsIit-l- I! q(!N t-l{t-ININ (,!ec l.l-Ihl=It t"ldIl"l8lIl.Idt: le ! IN t"ldl5IIt"ldl1"<i l3iIIi*l' IIIt:ls q.ia Illd i IIilEi-Io t"t' IIIit iIIl=t"l_lll. IIIt s IIit"l< i It sI' t"ldi' IIIl=t- Il_ Ii" Il. i IIidIIIi^r-l- I,NiS LIIIIit€1iiIIi?:a t-l. ; io -t- IIi=1' IIIdIIl-Ir(!N3 il oi !o ; I1iIIIl r; c t IiI q lq ntF iIIIIII - l- o loIIII ci l . ; jlJ IILiII c tqIIII I l e NI ! AQt3 ileIIIi=l II.l. ; l8t- It-ldt-l' iIlet-l*ieiN Ii.trlE - l.l" IIl"i9t-Nl- l"l' ji"I' iIt"l9t-t*!! eE II !tNP*No ro S aa 5 - 8E tv z E- e r <o 5. E .J = ; 3E rf ; 6 BI dx 5 o ga gs 5 o oG F N t 9t = c N c (E H - Oo L A- qo (l ) - PEo(LtIoE IITITtITTTtIIIITttT i rj lc i ' i" III s E- ; E5 I ET EErITIIIEl Hr t, IIIIIIITt E gE sE E E E ,i x f E E .i. i r i d N d (d N 8 d* ; J N N ^' . b - dr i r i " i N d qq q q ., i q. ? q q rr r ttr i ; i i IIIE (o3E(!rtc){cf 8, r ' , lI } { ! =sEi \ i I9ss 5-N qii(!N q I3rtN .o B=* EE El s EE * f; E *f ; E o ga g= 5 gE E FN € $E ' EE eE = B 3I = ; -go-€a!6o=o oi 6 o i . d N N t\ l q = . to o) 5 o{ = *ao: E, ,Io(oEfEtr(Eroc3{cl 8" . ' , lo i ! = (E c N^ ; D =h . i sl - od = :-. Y _ .5 FEE ef , , ? 5 =t66r$ aG E" - g E EH E E S ii f r E E oo o o ci . J d r i tE E E € ! iE I E *{ -d AI te1aE6 I "1 " d l . ; 'l ' III -t _ -t - II d l . i ,1 , : lJ l -t - et e NI N l"INiiI II It-ldt' I l ooi IIt- l6 r l- g l' : Ic rl I:Il_ i - l. l i t" t " !1l I 1- l - 1J I J ll"t " d l d l' t ' il l. i lc ; lo Io - l- l - ilrll1l" i " lJ lc ; ir Ili1t- l - l. ' 1 . I ri I -t - i l i -i - ix i t I. . iII' lIIloI:t-I( !ta l"Il*ldlFll-IIl' IIIIt;l-1N lrl" r " l* l ' II1Il.l- iIIt-l. . i IIIIi. liFi;IIIr-It s lc i l;III1- lc ;li iIIl*i' illilt?t-(!i t,i"l1Il"IIiii;l=l-lc it;l' IIIi:t-ig IIlql-l!t-i1I1"I:qFIIIlcl' IIt"ldi: Iiit-lrIll. lhi:Ne IldIl.a t"t\t- Ii.l! IIi.l. ihl' lIt.]' It.l-l=IIN,3 I{ciui=Ii"I t'l'i:l.tqi! l@l5iIIl' IldIIIIIIll9l-l-IQte t_Il=l-i-t- I t-l' IIt"lil=l+1NIN t-t.IN I tN:$No F* S a6 =P E Jt s81 , E: 'o - = r F - (E >E l l t r i'i 6 ts i 6 s 5 o 9a g: 6 oo 6 F N t CD : E F= (U E - Oo L - qo (l ) - *Eo(LtIou. :3 I t - : ; E5 (, .!i4( ! I IItttIII oo-EooooEI oo) fqtI jii 6 i @=fEE(Ed=fd-- l 8, f ' , rr } 4 = c N^ . D >A \ i -e < . z--/ .A r bg = SP rB E" - g E SH s E g ii i E i aq q q o- 6 @ F r - q q q q I q - - .q q q d r i d F 6 c i i 6 d d J d d d <i @ . d dlc i o s NN d N ;: a i c c i J ci . i , . i ci ri. a i + l r r.i d o i .i d d c i c i d o d o d o c ; o o c i c i c i c i c i d o q q . ! q q q q c q q q q q q c q q I c q q \q \ \ \ \ \ \ \ \ \ \ \ t \ \ \ \ \ a \ @o o 6 @ 6 0 @ @ qq q e q s q q e e q e e q q e s e q q e IITIITTt aE E E 2 3 I E Ei Fs <t e E s E -6 6i !E*E t= oo o o \q q q q \ q q q q c q q q c q q q q q q 6@ F 6 ei 9 e n 9 n : t f i t t l : : i 9 e 9 9 s g- : FS od L zl l5s)az- l)2a l:3t zE- I:3t zE:EE !:tr dz<!oqI id)ca aa(:UFEd,: ,$iao=(F,gi;iv;1"F)C)0 oT(No @s sa = PE JFwz E- Z * <g XE 'o - l x ! - (E >E l i t - I'i E B: r= f r E o ?r g: 5 oo 6 F X e O) : E NE (5 h - do L ^- Qo (D - P E o(LEIot s0-Eooo=o qq . { q dN d S qq . 1 . ' l ri . i . ; .i; j ' ( d N oo d - !g (t =ot =bg#Io -- a ( ' { i.i @ d (ocft,c(udcltc:) 8. " ' r - |r , : t E q! cNF>. i od = <t r - .t s 8 - Eo - : , = at e 5 =f65r& P sE =o - c 2 , SH E E s }i i E E E <id d c i *E E t ! r rE E i E : DE*: !E t"ld ; l^t-l. i t-(! ,( ! IN IFt?i:IIIIt"t: l1.iII:t"lolrIil' I It"t"I It.lc ; l" i:I lct' II1;t' i*jIl*l"iIl"lo i iB l"lc ;t' IIt"ldI.il:l!IQ ir iIIlc i l' It.lqIIIiIild IIt"l.l. IlclrIiIIi-t, ;t;l. iIIII' I i - l*ic II d l d "i ' IIIIiI qIi"l' IIIl.li1-(!N i*l' IIIITt-l*taIN l=It"l. i IIIIit-l. it' iIIlolc it' Ill"l;i' ll€Iil-lsi!.: l;t.ti ilIi" il-lc i Ill-Ei- . IIt. loIII,ilr-e It:ldt:ie l_l" t ldINt- "i " l " l , -- l - l - .l " l _ i " =i - l = l ' _i " t " l " '] ' l - l ' iI 'l " l " l " it i -i - i - l - =i = i = l - il l "i " 1 " " <i l c i l c ; l c i o. ro . lq o- ii l "l " l . l " 'l ' l ' i ' ii " .i ' i . 1 . -l - i = i = il ^i ln l^ i :i : : : : AL t , ! e hNStNo os s6 L @= I p og *2 E- i c r <q , 5. E , J v - o L ; 3E ri ; 6 E= 6p E o 9r gs 5 O OE Fd E \) t = c (t E (E H - @O L - qo O - PE t,(LE8oE. IIITTIIITIITIIttIIt t:idI.Ililel'IJt-IQle s *- ; F5 oe c ITIITTIT G(LE(E6o=o aq a q N d oo N o oi oi o i oi +e ; { i Y t \ jtHT ::a q IIIIIItTI od d - @cl!tC(gdcf*cl 8, . ' , ff i NP =h { - d=4E-E - .6 t s 6g E It E 5 tr?B t cE =o - c 2 5H E E 5 ii f i E F J, j j . ieE E 5 4 s ii i ; l : iEIE Ir" lI1ieIt.l"ll,I'1i IIlrloi3l l-l.ININ l" lleL.1* l,l*IlIit it. Ii"l=ll= II I t9l NA l-ir(!- It-lo i I1IiIIt-t-t-It.tdt' It-to ;t" iIIl:l"l' il=l' it"lc il- it"l. i l6 - IillIi\ IIl.lc tl' IIEl-t.In Ilcl* lt"l- I1- Ilc le l" l ' il i, l * t: l' l ' l- l - l= l" i " ll t^ i _ lr i l+ l' l = il t" l " lB lB io - Io - t- l - tl l" l . l' l ' t. l . il i! l ! l- l - (iN !; N It. ld i t"t"l. iI' Il.i' Ilt.l- Il. Illl*l=IIIl" lt"Iit"1.. . ILl6 - It"I. it:ta ialdi-INIt leli ll:t( ! l.ql'lrINIca It, ; iIilIt-ldisi'qit s IiIl.tii.iiL It"i3 ! i "t " *l * x ; l e i e 3 Eg g ,s lI d, l t - . 1 - ce e N IIII ,1 , 't ' III ;i ; q 16 - -l ' II -t - .t lo il + iI _l _ dl d 3StN 9S 's a5r Eg El e ?E I (I = Y > - to > 5 1 = s E g; ' * i t o 95 rE E EF = Hf 6- 3, E .LEI& qq-i - IIIII ct l. d 1I d l d t- l - ill i l-l - (uIE(!oo=o ; d ; d 6 i . i < ; 6 < i - .i ; a; i c i J .i 6 ; d oi od * . i r. i d i 6 6 6 6 @ 1 o @ @ q\q q e q q q q q n q q q e q q q q q e r e q . ! r\ c q i q . q a q q ! q .q q c \ lCgo) = or =EgB, )Io ,l q q q q. i , q I'q q \ q q \ q. q \ q q I c t ci c i c ; d o c j d d d d c i d c j c i < ; c j o o cj c ; cj ;; ; J J ; J - ; ; J - ; : ; ; J ; ; ; - J d d d ; il c i < i < i : c; ; G i c ; ai o F d c i c i J t a 1 : r- a .- .- ! i- ! ! ! ! r- i - i - r - r - r - t @o o 6 6i @ t s o o ; d ; 6 d , ; d d i A ; d qi .b ci d d d l;, i d ; ; -9\ E E 6 ql OE L @=lEC(ud--cf+=cl 6. { ' ) r. r : 1 = (r E C &b =a . i od = *8 - s - YE E +F r& t eE '= o - c z EH E E s ii f i E i ci c i d c ; cE E ! 9 a g E E ? EA iE i E t ; _ d Ai EESE l" c e r ! (! t N t t !! q q t q t q e e q e e oo o 6 @ @ @ o @ @ @ @ 6 0 € o Ne $ ! e ! q g e a t N s q Q e l e e { e oN@osNoNb$6 L PE JE tv 2 E- i * {g XE I ^ ? . - E - - -. E 7i : . . tu > < A F 6 6 ts I ds 5 o 9r g3 5 oo B i x e \) t , - c i { c (U h - .D o L ^- Sl o O* P E o(LioooE. tIITTTITTIIIIT!TTII IItIIITtTIItItIITII (uEEs6o@ lo o ? .i 6 i . i ri li6 6 Itoo:or =B$6fo -: - l dd d d N d q( . { q q .i; d c i N N (oclE(!dcltl S. r , t to - q E r1 A e NP=i . i#ii - .E F ES T E fr - 3 5 'I br& tE t sE gE S E E ri x f i i E ci . i c i c i d d tE i ; E i II !! Yls .t3 {E qo_!(!s t-s cttt!E Bgtdo NS {! a E6 Y f r - o{ tv z E- e : se ;E s l€ Ii I (U Ui - of i E o P; [8 5 g! E FN * (u d - do bd Ee AE = IsoE ,i t r = ; (EEE(Eoo=o!,6 o) l OE*srIo q!\ : @f!,codcf*cl 8' r ' t (r : . ! = sr g cF=A . l ' sl - od = 4E-E - .5 F bE el , ? 5 a??B t eE sH s E E ;i i f E E .! i q qCE E E 9 g ii i ; E : Ets t:IE l"lo ; t\i=1l" ll' IIi;IlqIt st' iIIIt-lc ;l' i.IIlqI6 Il.l; Il.ININ Il"t:I\1' l"IIl=t' iIi_ldI' iIt' IIIt- l@IIll*l' IliIllll*ldIt( It-ldItst' iIIt-l. ;I'l" iIlql].lf l]' ]Q]N i' l ' dt!N I :l * 'l ' Ii-t: iIt. lc i lcl' Ii"ldl"iiul.LCt- t"lolrIil"lat"iDt; -q.{qJ It"lc ,l' It: IIl"]' IIl-lil:l!! c; It.Ir I].ldI: IIt- Il* iIit:t' IIIt-l. it- I1iisl" lIt-l" i=ll1iloiIt s-IIIlr ;l. IIti Il"lc it' i- l!(! i! :siD l.t JIlIIl*ln:IIIIl.ci 1il. , l l*IlIt-i=IIIJ' li1El-1.il'Jl.c I II't,l=iiIt-i" iiuit"lri' Il"tc ,IJ 1ll*lo qq oi:iII lnl"l't.telurE -6 9 9 H Es 3 I oF r! ( ! B' S Noo*No co S sa L 6Y JF ,v 2 E- Z r <o i E , J 1 - O L ' .L d y- E - (E >= , i F id 6 nr ; s 5 O 9a g8 5 oo B F N E O) : E FE (U k - oo L F t: o O* PE AE = (LtIou. IIIITtITIIIIITtTTTI -g(LEooo=o i n \ I q q q q e n \ q c q \. ' l q ! q q \ -a q a a q i : a i i q q a : - - - q q : *r o 6 e I q . , l . i q q \ \ q q q qq aq t . t . 1 q q 4 NN f f t,oOr l or : *ao:pIo 6d . 6 d \ I t q a. 1 q i q \ : q -. q q q q \ q q q o6 @ 0 6 0 0 i i 60 @ @ @ @ @ @ (o--f1'(od=cfi=cf&- (} { ! = cE cNP =E r - o.i l = z5 *8 & - - E, E +F oQIE i t eE =o - t r : EH E E s ii f i E i AE E F O A 6! E E = d 9. E 8 E a: <= : ! ! : , di {?i= oiN o i o € .. 6 ae e 9 f : f i : : l : ! f Q 9 9 6 9 Q 9 R*H E, E 6 6l OE r qq q q Q e Q Q q e t a e Q e t e r e ! a 66 0 @ O O @ @ O @ @ @ @ ee e q e s Q e q q e { a e e e e { q t s @ootovNo SS a6 E OY JTwz E- i 4 <o ; , . - . ) = o L ; l€ {i ; 6E I n s E o ?t s8 5 sr o 6 F$ E r. r r = c e{ c 6E - (D 0 L F Q o (l . ) - 9E AE = ot8ot (!EE(Eooo rr r S - ci i J J d d !,o CD = ot :Eqo d@ @ d N d (oEloc(Edcf+cl I' f ' t (r : ! = @-&s =i . r - .s - O. d = 4E*F - .6 F EA E ,t 9 5 ;EnS tE !9 oE Sg c E s ii f i E E o@ @ J tE E E ! ! i€ i E !i o 6EII!E IIl-Io i t-i t- Il-lot- t- l. . i lEIIt"ldt, It5l' iIIIt- iil"t' IIIl"l! IIIldiIIi.t'i IN IlIl=IIt-lc i ii:t" iliIlcIIill"lo1- - It"lil" IIIl-l:lcIN -i " ; " i' l ' i - il l* l * i * le 19 l! il l i" 1 " " i' i ' - iil. l . l " ll l, l* i* I' i " i ' ;l i= i = l - I' l ' ' ' i" i " i " lc i l < i l< ; r- l - l - ti l d l J rr i l" l ' 1 " i, " I' l ' i ' ii i i. " " l- l . , . .. . . (, ! e ai e e lt-ldiIlt" l6 rl"I'i' iIIl=I' Iit.lc il' IIiIir IIIIIIit-tc ; I=IIll. il1ll.l-1Ilqt' Iql'qqiqlo ' Ir. t i si r -i - !t e !] e l6Iir ! ls It"IJ Ilo ii^IIIl"l' IlqiI Ilo i IIl=It-l" IIt- IIl- IIi-l@iIt"l. i IEiIIIt-t' i, ilniIt- IIIIl. . i Ilql-IIi: IiIid IIl. it-lcte IIINt-l.q qo s $- ; F5 (, E L IIt ?N3*No ro $ te 5 - 3E (v z E- = E <o j. E . J = O L ; 3E rE ; EB : 6 E E o 9E s3 5 oo 6 F X E 9' P - C N E GH - OO LF {O c) - PEo(LEIot tITtTTITTIITIt ITttTTTTIItTTIIIITT oEE(oooo do i d J .? \. 1 q q q c q q q q q q q e q q I q q e .t e q q qq ! \ q q q - q 9 9 9 - e e a q o q e a - - - 6 d o o - N - - d : : . i . i ^i - o; o o F; d J rd d 6 i \q \ ! : q q ! t q q q n q q 9 P ! q 9 ( ! !o o) 1 ol E *aO: J#Io aa - q aE E E z . ii ! E gi o 6I {E li q q I i q 9 q q e q \. ! - ! q q q \ e ol c 60 0 0 qq q q q c c q q q 9 q q q q c q q q q q ji J j j j j j i J J i J j j j j j j j j o6 0 0 (o=lEc6.r )=f$=f 8" . . , rf x = cE c NP=E ; O.d = at - d96E 'l 3 5 Jt69lr I eE SH E E S ii f i E i - q q . q q -. : : q q . ! q q q - - q q i 60 N 6 n i ? e e n r 9: r : : : a r I l: i I Yl 1 9 I : ; r; e s fi - : F5 ad I oo:E: zl=-BE=: =Eq:odz< !!o!Ii43Ez d -€<f!FEO 't 2 = >E5a h)<t see Iti*2i li-NFooog qa a a a Q t a a q a E E a ( ! q t t q q @@ o @ @ o o o o o6I{No (o s sa L P; Jt swz E- e * {. 9 XE 'I l Y : - (5 > E l { t - ; 6B i 6 s r o ?r ge E oo 6 F n t It P - c N c (U h - do L ^- to O * PE aE ' o(LEIot E(Eo-Eoo@tto o) = ot = *ao!5r lIo@lEort=l.r--l 8, r . , G- =s5 >a . . i Oo d = zqoL _ .4 ) g bE E fi e 5 Jtrr S E" - E E EH E E S ;i i f i E i :c i c i . i +o 6 6 @@ o c i gE E E 9 A GE E ! , = ' 5 F: E 3 O <= E E s I ' .i !{l:Ec6 -- - s q e q q c q e\ 11 q q q q q \ q q \ c c q lo 6 o oi ' d ; F l ; a ; J d r d d J d - ci d F ' o i J ci ON € @ O iii i + - r r d F d d d d @ d t i d d di d d < ; @ d d d ; d ; ; ; < i ; a 6 d d d d a F ; d c i d d d d ci c i d d c ; o o d d d d <i d d d . i c , d c ; o c; qq q c e q q.! c1 q q I q ! q I c q q q q -. 6 9 9 6 9 q 9 - - : -- : - : : a * N * q ! C ! 9 9 : : H5 (, F- oo o @ @ 6 0 @ o !! e Q t t s e s e s e ! ! s g e a t Q { {IsNo f- S s6 L 6 Y Jt s .v 2 E- l 4 (q r j. E ; }E I f ; 6 EI 6s E o 9t r s: 5 oo 6 F X E l) r = . N tr (5 b - @o LF ! ] O O* P E oltodotr TTItTTITIITIITIIITI l5e :ta" jE6 !=;ca!=:dtl!E0= iE)d G{6Q -€<l !FEO,= 3 ,ciaD) (F,gIE\F)o)g on:iN @E 5- EE tv z E- i :S E 'E ; gE TE ; E B: il f r E o ga i ii = 6 gT E FH * $T - EE eE = Eo-Eo ,B ! = ; !s tBs qE\e.G IE t=B! q;-s q;B: d.i c i d d ( r. o t IITITIIIITITIsl E5r ff i l #l fi 9 5 IE TI s0-E.Eoo=o iJ d i N d 6l6 6 d d rld d r j N d toor lG*" 8#IU' -.d . i c i N N i. i t s r i f l N i; i d d d ra . 6. !, t oo o t t aI sH E E E ix f i F tr r l E i II!I -F l (ELEooo=o ll@ o i. i d . i o- -'a a d N N .i t,o d) lor : *^ 8s;Io eE E t g! iE ! E Ei o dt !E{lls-t s (ol!,c(Edl+Ef 8. . ' t 8T E&s Ei . I ' !l - od = 4L*t - .E E - E6 ' t f E et 3 5 atoEnE ' ta !l oE =* ; C S ii f i E dd d c i -- - N o6 N O ;J d . i dd d r i 11- I' lt-t-1' lIl".il- II;I' I<i irlg lit- It- lc , lqt- IIiIIi' q. l-;l-IIIt"l. ; l=irlo It-I-IiIl-t- Iil_IlqI:iIIl"!t-l6IIiil!! Ii- riL- 1 . - 6 lo 6 IIli ^i l. n N _, ' - !r e L ! t" Ii- l" i . l " i- l = l ' i- l - i = l, i , l ' lr l* ln l- l - l - li l l- l i l r ii t t- i - t - ii l l. i l - ld ; ii l l. i " l . i' i ' l ' i. i . i . l" l " l ' li i l' i " 1 " ti " l il i d l i l ,: ,: l: N i t ! lc ! rN i! lN o'q IIIl*l!IIIN 1l t-I'il-IIil.laI1D It"tol"l. i1"1. it' Ilt-ldllll=i'l_i' IlIlt.i-t.t; l"l. It"ldt- l^ i lDi"iIlst@ ' I' iilrt! t-io " ]tIIIII t"lc it' llt- 1" lo i I ,t icIlIIII .i * -t - IIII_l - ^t ^ II!I ,l * "i ' I l.IJl q qolq ll-ili"to ' Ill"i. . IIll.l9:l,!l; t- It"toil. it-t.iN I E €= E IE ; Hs I 'E ll r et N o to ITITTI oNStNo o) S s6 = PE )twz E- Z E <c , 5. E , J - - O L 'o - l Y F - tE >€ l l t r i; 6 nr ; s 5 o $5 [s E or i 6 i i l E O) = E NE (5 E - OO L x- S o O* PE lO.L€I,Ud. TIIIITIITI IIIIItIIIIITI (EEE(E6o@dEIgo !E r l i i IIIT .i . i d i - ' d d r. . 8 . -o d G 4id d ' { N N qq r l q ** . 8 . qq . i q qq q q ,J J J N ' i- o - l - l : oo o , :I (E=l ::c ff i l =h . r - E; r E s f f i l r sI E i E + P ' ,l l l * I I E II qiY!BB gnBe qF*E3 .q:t!( .. iB!! .iBt! tsitB! fraN .i- i6StN oF .6 ; $$ == EE Ei e iE r d ? x E - * hi fi i E ? EE Ei E PF = HE o 5, E aE - t8oE. $l = l (Ed6(Eoo@toGryEgdDFt lo dd c ; - id d d N N (oclE'c(Urtc=+cf, 8d , , 1r } , 1 = c) 9 c XF>. i ar - _e < E z--{ .A E - E. P E ft , ? 5 a?g6rs E eE SH S E E ii f i E F dJ d d 6i6 b cid i d dii r i E i EE !E il:@IIl"laiIlcI' iIl-l-It- Iql' il-IJlF - IIIit, t"l. il' Ii:le Il.oIt" l-t" Ii"l*II It-l-t;INIit-l. ;t' IIlslo l-l. it' IiFIiIt.lo II I't(ic li'ITlc III-l8t*leIF l" i " i' t ' Il.l' IIlr It.luldt- IIiiat: IiI It\l=It-ldi=IIit.l. ;l" Il1" l" i l i!Ir IINiN 1* lsItsIt! 5rL alN IIl=Ilr ; l=1i.ldi iloldi' iIt_lqi;IIi=t' IIl=l' it.i"l*IIiaI' iil"iF ' iIt. Il.ji"lt Il-i"t"l*II, ltEl ljl"o I'l"It. Il"lc ; 1I ts d o@ lIIl c lqiIIII d l c i IIIIi -i - .l ' IIIIIIIIIIiIiI -t . dli l IiiI e iq 'i ' Il -t - il lc ; -. l . j III dJ ' oo@o*NoNFa6 5* qE E? . , E= I =f E .s iE Ef 'E (E H- co i i g O p3 98 5 oo 6 F i e l) r Y - c C{ E (5 E - FO L;' QO () - PEoo-tsoE TIITTTTtttIIIIIITII tiBt.ieit ! l! ' l1t It. -6 r 3 6 - e ; F5 o! r! IItIIIIIItTTTtItTIT GEEGao=oto or c gl gE88a Fl l o(o5Ed5t' .E:) Sr t 9! i = ff i =i ' \ i t sE -# SE S E S J F ii f i i E f f -. i ; d N N 6r 6 E 64 6 - dil d a i N N 3. dd d { N f l tr i ; i i IIrE r{ q - -- - N qq q r ! qt!!s . NI 6t tsFcs ;t!E ts -r E F I - E I i 5 o! + Et ! 5t NN5tN (\ s =E g f3 e EE * fr 5 HE i o P; [5 6 g! E FH E ES - N? o - qE aE = tIot (EEE(Eooo qq q q 6i o 8 J dd d d N ( t,oO'EOEb3o=cl D Ft l o SE E E 4 t E. E E E ET "= * i EiEI 17E6 -F (oclE'codcf+=trf, 8. r . , l( } 4 = ccxp>\ is- Oo d F .+zF - .E F EE fE 5 a? 6Ert E" - g E EH E E E Ii i E E E cq q q -- - s F; r j . , i :iEN qt"tll5t.rqIt s iN l"It s iiiIIlxl< i l"llllcl"l' IIl"ldIl.lFt" lilcliIlc i l" i4; IIt"lal5]NIts 1" Itsl' iIi=t' IIlil. i llIt"ldi=llIlFlitloLiiIl*Its i:( ! Ilqib,Iil*l"I1"iql-<i t; IiqlllI!aa l-I' Itsl5IIIi,l6l=l.l' IIIIi.lr i IFiliciSldlt-iFL! It.ldlr IIl"l. il" Il.l' IIIIl5t*i!IFIN l.It st. lc i IIl.l=i' Il: Il"i"It iII:i-I]N l"l"lc i l" il-lit" IIt-lc it' It-li i6 {1. i.dIiisl:iqIN lelN - i-lel5ls ll il'j I'J t' l ' tl t"I' ii t-l. it" II t" ll. .jII!IIIIi*IIt"i-:NlFIt ! t"l. ;t- IilFiN - iIIt. j@IlIl, it sNlFl- Il; IIIIIt. i@IIiIli-l!1A IIIt-lEIIt"lc i lr iIIl: llrItslu l "1 " i l E 'i ' lI1III -t " o l J IIIi -t - "1 " III "1 . c lc ila q lc ^t " IiIIi .- t - h N ]to E E= 5 i5 t i 5 1 o i . l . IN N ts l F )a== i6!.:it ZIE lF6:E6cEdE/ l5!Fr@,2 = ;a?P ,e , l=IarF)o)9 , @sNotNo Cf ) s sa L O Y Jt s .v z E- e * <g i' E ' ^ ? - E- ol E I F i ; E BI dn g O 91 95 5 O 96 FB E l) r Y - c (! t r (E E - FO L F qo c, - PE o(Loood TTITITITITTIIII!tTI IEt EErTTIIT tt dtr t o TIITITITI (c , :)E(Ed){trf 8. r ' t HE Ew*\ i#TE . .f i F E6 I E SF 6h If tC t aE sE s E E ii i i E io ' r i . i d N li- + " i N N ci. i . i r i d f l de i d l d d ir ! ; E i ITr! qr t q r q qq q q ts F N € . 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Jl*; ldt't:l' il*l=ll=IIt.toIlc ' l- it"l* iIIrt"lclrIi"iIIil!l' IIli=lnNl; tTT oooiotfNo F* S s6 r o Y -. o. 9 tv 2 E- J c r <o j. E , ) = o L '( L z r - E - (5 >= X F ii 6 nr ; e 5 o $3 ; $8 5 oo C F X E L, , E - e N t r (5 k - FO La - So O* F E o(LrIot TtttIITTII s *- i 3 F5 '& nE zf l5: :I3ia!I3t Za- !t3Ez 3FE,I(c{dcIFEIEiID= (F,giEi!;E TTITIITT (!o-Eooo=o q, q . a q - ! 61 1 q: q a q q q t - q a q q t, I oaEor gtr I d c i c i d c i c i c i , c i c i c i d d c i . i d d d d ; d d d $E EE €i g] E , E E G : <: : E E : o 6I83€= ;o ; o a i a; c j o i d dd d d c u? q e.! t q q q n q a q q q t q q q q . ? @o 6 0 0 0 @ @ ; J .i d d ; a; c ; d; ; ri ai .i J ; 6i c i < i J J ci ! q q q q q q q 1 q q q ! 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' d € ' d d @clE(Eto3dcf Sr , t rr } l E gL c dE r =i! . 1 -#*u - FF E cE sH S E E ii i E E ri - - t i rq c q dt J F : 3 ir E ; i i IIIE 5Ns !i qI$I o63tN OE N ' {! e tr . tE J i E 1 ti ' c XE r d? x E - fi A? fi E p ? EE EE E EF = f; € d - 8, E aE - EI& E T= E d I' rg d; d i (EEE(I,oo@o) (Do (ocfE(E,,r ,cl+cf 8" ; RE !-s= 9 gE 9E EH E E E E - ^ E : . Et r I E E E AE F s j .: t Y ? . : l Y ? ; - ; EE ( J o l r r l> c ;d d d ii d i NN N R -P ; l j dd d B i; ; R ' il E i sE <: i E ! 3 6X a EI !! l,lcIIdit.IEl"Iit"l"IilidIl: IIIll.lrt.t:tn IiI,NIIt-iIIIit.idII iIt; iIIidl III r l - iIIIII el e d ldIiIII "i " IIiIi .t - 8t 8 I l .1 . "1 " I al a i ; l; IIIiIII ^l ' i ll l' l ^ lltllrl, i , l^ i " liir It,ili, lo Ili l- r - IJ J ltll l- l - le is {} t ; t; t i IIilrIii;18lu) Il= o6(botNoNaN^ L 6Y r L o g &? " ' s ' E ' dE - BI o> € 8 t r r 6 3: 8 3 5 o 9i E 98 6 o o5 F N . E ED ! E HE (! h - bo L = NOEE 'coo-Eeot tITTtITTTTItIIITTII lsl:te a E= E 5 F l oE a; II}te l=l' lIli I]=l iiIIIldIiIlt; lI1llr]ElI1_t' iIIl"ld;l. I I' IIi]=t' I1l.l'l:I!i8isa ElIIIll: Ill, lII1-i' IiI1;i"ldl't.lil- iIiIt.t" iIt,l" Iii- IliI1. l Is1e5 i. i . i^ l ^ llii l- l - i" l ' 1i lr.t . ilI I 'l ' II ;l u is Is l-le lIisIi"l-iIIiIIIEldII{IIIIt. IiIt"liiIii"ld Ii!qe IlillI ,i , , l, lII .1 - r ]'IlIIi!l8I Iec l$ BIss $s N-N i ITITIT TTII o(LEooo=o aa : 9 q \ P \ a q f q9 a : a 9 9 a 9 r y Nd d - - - N d d d N N d N d N - dd d d d d d d d o o o o 6 o d d o d d d r@ r d NN N . J d d N J ; N N d N d N N N N d F d N d d N d . d d d d N N d N N d N d d N d Y E E o o o o o 5 pl aa I \ : I q q I q \ q q q q I a .q l . . 9 q 9 I FT T do d oIE E E EI TS ! E T; -d . ! 6 6t IC F :8 3 9 o o o l o dd d d d d d d d d d d d d d d d d d d d oq q q o ;J : ; ; J ; ; ; ; - - ., . - - - d il d 6 d N d i N o d d d d N o d .N d o o Nd d N N N N d N N N N N N N N d N d N N q9 q q q c q c q 9 9 q 9 9 0 c 9 9 q 9 \ I=I5l Es; t E^ i tt , ; E E * u * ; I ; rl t i l ! r 3 i i_ I iid 6 r9!No$No NS N^ a L o. 9 E L, =s , = . J= O L '( ! = v : - o> E 8 t r a 6 E: 6 5 E O gr g5 5 or <i f i F & P o) r E RE (! h- Ao g i NodE .Ed)(LEooox dd d o (U0-E(Eoo=o d; d t o,o!oC) toclEc(Edcft5 8" ; 8E v-s; . s s E 25 EE E E E s - ^ E : : ii f i f i E E F f l T : dr d j d; d d dd d d dd i l q i Nd d H NN N E ii E E i E _ dEEI 1E Ii;Il= IIIi:l-iIII Il-lill"1" 1l: IIl.l-Irt.rSts l-l. IR3Ii: IIIIl=II,.!t- ii1EI:isle l-l-l:IIl=IIl-I'iel-tals lIt- lIlIl*ldIIdIIl" IIIIIlqiRIiIIl"l.cl; ll- l ;IIII:Iiistbla I EllldlIIt.El"IdIl"IIl"lBl' t-ldl-l,1dIIl"l"I ;il.?ssi6 L} l$ I:l-It"l*IihIl-I e lcIIIIt' t;!e I!-t- IIIii*ldildII1l.l' IIt.dII1i"l- Ii' Ii=LSls l1i:l:iql"IIl.l"l-IIit. llll-IIIl=IIIII$tS ll-t?llitNiIIIl8l' It"l_lqt" Il"JIIiIl=IIIi*is ll -i - IIIIlIllll sl s IIIIIIi 'i 'Ei E -t - IIIII d ldIiIIl -t " i*lIll.i=lt.la qnsB .cE EE 6 t l oe G It-t- IIIIIE II' l1-Idl=IIIl.l:lsrS te I -l - ,1 , -l - 8qqn o,{ tNotNo oo S N- i r 8E \3 e =3 E 'O - = r E - o >* 8t r i, i E fr ; Tf l E rJ =E Eb o od G F & E O) T E HE (s h - bo L = NO 9* EEo(LEooot ITIIttITI (o(LE(goo=oE:l dd d d ;; ; t i -* - x gE E S FF ;i ; d id d d i{ d d ;;; N d N tTI dd N f i 5T=l E nE I Ec . i Et t ; g E * u f f I ; rl S l l ! I ! ! = I rE E E iE -6 r : EI iE I -l - IIIl :l r I :i 3 IIIIIiI Ei E IIII ;; IiIIiII 33, 1, IIIIIII qq' l" IIII d l d IiIIIIIIII ; lJiIiIII : i ; sl s i -t - III_t - el e II i.l-IIiIEl"iI1et' lIl-l, IdIIt; IIIisLl*tb IIit" IIIlelIIIl. iIIIie!iIIleicIIIl"IIIt.1' lul- Il=IIIIIt-lcIIil-NIIIl' IIIt- lI6 ! l"i: IIIlst"istb Il. ! lul:l*l' IIt_t9l"IL^ r l"t-t-l*tsls ii"ldt* IiI1-l' IiiIii-i; LIiIIle1_l" IILINiIt.t1tsl" Il- It, IIILJ' IIiIi-i-IIIIloIl' Il.l"Il"I].il l*iIIt" IIl"I il. IIl, il=IBl"II, Il"I],l'l9I illIIl1l;IIlI18lolIiIlIIili li-iIllIE1I1- lr _ lIIlIlf r IIIlll. i 1III ss it-l"iiIn qna Ilrtsls .i lIr\qnb i"ldt-Ii' IIIi-i- IIIit-l8l. IIl-let' III].l' IIlrql" IIlqIIiIIiIIIt"t; IIIIIIi=isits III' i=It-l8l_IIl=l-l$l- Il' IIl=IIIIt:t_iB 8Il:t$t; ;t ;-i - III -l - II ' ]' l Neoo{No st S N^ L 6v f F OE t 1 - . '- . i , ]E 8E '( L = v : - G >i 8t r r 6 E: 6 $ E O 9E 98 5 o d6 F N . E ED ! E HE (E h - ;; o L = NO 9* EE 't roo-Eoqot IIt; IIiSl( ! q e t= E 6 F f oi x bB (!EE$oo=@o,O)oro (otrlEc(!rttrl{cl8; o:SEs; e s E 9E EH E E E S - ^ E T 5I # E E E rr F s i .l ? Y ? . n i ? ; E Eq u o l l r f >c d; r N ii+ d d; d d ;J ; if EE E $E <= : E g o -d 3io! ir -- . 8 Nd N B - 1.el- I : l : IIIIIII q iqIIIIi)IIiijl !ae IIlsl' Il=l" Ihl- ll1', IIll: Ii.lEtile Il; 'l- IIt.l' IiiIl* ' ldiiit-lr IIt_l3lilt; Ill=I'sl: ilIl=IiIt.l5l" ii"l" iIIi.ldtNII]"l3l-ql"IIIIIl=t^6es Ii. IIlet' -t " - l"III =l = III *l * 'l ' II "i " 'l ' II1 .i - -t - nl * :e rPiIIt.t" IIIi=IIiIl-tql"t8lJ rs iElIiiiBl"IIIiirIIlt"IEt: iIl, Iiii.l' iil= I o lo i !; ; r; l a iiIlliIi=l.IiIlst"iit"i' IIl.l*li"l-l^l*Ii\iIlri-IIIixi;ib I'1- Il- Il"l-Iilui_lii Ii1l,; i-r9 IIIii; IIIl" IIlt"t5ldIIIllIt IlsIllIlct; IIIt:idIiIl-l*IIIiIt-ldIIiIIt:l=l .r " be iIIi"i.rire l*t:lsts .! fl t* $ 5 $' , *E ?cootNo ro S N^ L 6Y - L O g &? , 'r = r JE O L 'tL = v : F o >€ 8t r r E E: . - i E o er gr 5 o o6 i N E O) ! E HE (! h - bo L = NO 9* EF .EoL5qon ITtIItTIITtIITIIIII ItIIITITt E0-E(Eoo=o q:q q d@ d d EEI 88 8 P dd i l d ir 6 N qq q Q r . ;; - t i tTI:r5l Egg l >c . i , EE E i E E * , = i I ; ,l l I s I * I I j l . I f EE E $E <r i E g 3 , a3 !cla T IIl- iIl1IllIldIIIt.IEIiut" IIlet" II Il.1' iII1"i"isl"iI di*IIIt' iIl.ldt.tsts ilal' Iiel*IIl.i"IIl"l' IIIl=1l"lriE l"ii*l' IIi;t_lxllIl.l' Il:ts]E lqltoilll' lt"ldl'lrl-Il_l=IIIt-t' ilIl=t9l.ai b Il=ldlllllr IIIIIi.rEIiiii-inI l-1- Ili: IIIleIl- 1- lidIIIIIl*l*l.tst" IIIl' IiIIl.l*lIt"l-l' IIIl"l' iiii: I1li8t.LS; ldi-l^Il'=lIt8t: It" iloIJIlt.t' llIi8iQ'i 8 Ii.t-il.l!l"ildIIIl8l' II r- l - !i ilI, ti. r - l" l" iiilrl i= i= llil"1 " t8 l8 ld ld ri I ], 1 , lltit" l " il i i l II "1 " l' l ' iill . l" l " li i. i " i- l - I ,I:lit ic l{ t- t - rl ,lili, l . l- ! -,l lr1 i- 1 . t- l - I i^ l - ls lBI ; l ; ri l n t"lrI i. Ilr iIl"dIIIIiIi3IIIt-i' IliIIlBl' l1^t;t. t IIl' It"t' iIl=IlIIi{ ] TsE INn Ilil*IN Ilql-iii"lrIIt_IEl"ld It"lut"l' III "1 "=l ' II ui u ii ' l' II 81 8 .l ' IIII lat' Ildt" iiIIt.l' ll1l-lBiisi Il"lsl*IIi"l-IIiIllIl-l' ll: ILIIiel;s IIl' Ii,i:aIN E E= I 5 F l o; od N Nq!ootlNo (o S N^ L 6v f F OE t 1. . =9 E I J= O L 'a L = v > - o >E 8t r a 6 ts : Ei E o gE g8 E o oG F i . E ED ! E HE (E h - il o L - NO 9 * EE 'too-Eoot (EoE(I,oo=o dd d d dd d ; dd d d O)o)ot- (o=cl!,c(Eiocf,icf8" ; 6!SEs; 9 gE 9_ E EH E E E s - . 8 : ii E f E i f l F t r i; d d-- r s i +i d { rE E E $E <r i E ! o -d t5iEiE IId l.l=Il.l-iIl-IIl"dss iL- IIIiiIldiiiI!IiII.l"IIl*IIIIl-IIIiIrl9l=1S1b Il:lstb lt-i- II1rdlxIlIt-l-iIt.Iri"iit.l-ll1=Il=IIrsis E IIN d id Il- lqldIIil. iiIII^ lll; l ; I d l d IilI r l*lIt- Lrs,S l^lBl- It"lNI iie IIl.t-t.ri te -i - IIIllI c lcIIiIIlI -l --l - llII ! lN st s l=l' Ilal-iIl"ldiIIiiIIt_l8i"Ii*IilnIll"let' lI IiIIieiIIIlulole qIIIni"IIIl' ir8i' iIIlIl*t" Ill"iat' i- IIIt"lol"tela IIIIl: lIlee i-IiIIIt: 1iltlgis; I1" t8t"tetn EIl.Il=IIIi"l8t. i:: IIl-t- III' l. r It-ldI II ;l ; Ii "t _ "t - II oI3*No l- S {6 L OY f F og iz E- i :5 e ;E '( ! = r : - o> € 8 t r r 6 B: E 3 E o e' t se s od G F N . E O) ! E HE (U h - Eo L = NO 9- BE 'E(LEoot ITIIIIIIIIIIItIIII! E i= ; 6 ! f oi x is !l NIIluIIiIIIt: IIi!Il:IIlI11- IIEls t.lqt- Il=IIIIIl: ilIiIII6t'rE 4a IIIIITITI .EEE(Eoo=o dd N g ' dr i . i E ' ;; ; d dd d d dd d d EET TII dd d ; =I5l Egs t =A i Et s s E E *u F = I ; rl t l l ! r r E "T t i+ d ds, 5 5E r* II I E IE -d . ! - EE EE!E II!IIlII d l i l IldIIIIIt.l" I:IIi-lalNt.lBlIIlBl*IIl8l"IIil.l' Iill' It'tsts dai 1lIIIl d l d I Il" t.jdIIIl=ldIt"l"iIIt, ia o ldldLILIi- dNB lql: It-l6l"lsla Il-:srA IlIt;ls d it:l-IIIl,ldIIl-t:isIE qb r i. r- i - ll t_ 1 " t9 tq l- 1 " il l- l - iill8i 5 l" ] ' ll i" l " ll r" i i= i = l' i ' il i- l ^ il l- 1 " l. l . ]' l ' l, l , il!i' i ' il t_ l: lQ i ! ; l ; llIIIIIIsl t d ldI I1iiIiII dIt,I'tsIE ilnIIIlet.ld11Et- IIIl=IiIt-ldiis$ .r iIIt"1d IIl*IIIil.t3IIIi3i*IIiiIIisi; ilIliIIIi=I:t.sI l,II8lf r Il"iIl*i"Ii1t' L:IIl:ilItes 8d .!dtt.i; i t IIIlliII sl 8 IIII -l ' Ii EI E , l. IIII -l - II "1 . *l * III ^1 " r l' IIIII ; lJIIIiI -t -" i' III]Nl-l"L}i! E E= ! .i Ef aa :2f uI 3e l:3t zz- I:3t zzi EE {tf,Ezr tf!CI id . f,E2 E -I<: !Ft49: : ,45(D=<t s 5E iu3l lI: ))-:i iEZa;rZ. EOAI J sP*No @S N^ L d9 a L og Ei , . EE ' aL = v : F E >5 !l . r at r ii - co ar ! o PE [e 5 o o5 F i . E O) ! E HE (5 h - do L = NO 9- BE5o.Eod)G g0-E(Eoo=o dd d i dd d * NO r O o)O)oo) (oEfac(!dEfrCl I "'; lf , y 9E$-EN 9 gE 9- E EH s E E E - ^ E : EI # E E E +r F s 'tt r 9 9 6 - - g 5 r r ' = ' 'r r . l . r i r , i i r ! - Jid d iii i ;;J df lE E rE <: i E g 3 o6 r tl!! l.l=il*IIIt" It,i=I It-l-IiIIIil-iI1li-l"I1Ii_i"I t:t- IiII l' ii" I1l=llol:tsls lr IIIIlsl"Il"l-it"ili=IIl_t; IIt-l:is l' IlIi,l:l;is l-id1ll=t" lIIIlnIl"Ii*ii"i-IIt-iIt.l' l1=1e:e; : d oI*No o) S N^ i r tg t 7. " =9 E r JE O L 't L = r : F o >E 8t r io ' E3 : a 8 6 o gr g: 5 o oG F E E ED TE RE (5 h - ts o L = NO 9* EE6.LEoot TIITItITtIItIIIIttI e .96 F l 6e ildiIiI Il*III Ii, IIiIl- ii1d IlIlqt- IIt"l" Il"lel=IIl-l" IIt. Iit, IIIll.]' lIl=llI1"liL:Ti l' It-lel- IiiIl1.l' lll: IIIIIl"IQl3 Ii_l=It-litrL" l: l"t8t- it.l=Ill, iIl=l-l;s d:i;i I "i " t =i = l = ll ll sl e l e .l " l ' I c l r 't - IIiI -t - IIIIIII d i d il" IIlqlxl' Ill"1' I]=llt":ii Il*i' It" llet:tcE IIIt" Iil*l=l.t)l$ €a ..:dl. I ii l= l = lli' ] ' il i, l - 1: l: ls s e lB TItIttITt (E(LE(Eoo@ dd d i dd d d qq t o ! dd d d dd d d N N EiI dd d d i; ; N ITI dd d B iid ; ET:l ECE I >c i ET E E E E * , r i I ; ,i i . I . : I * I I l l i' I ;:J d$E 5 E i; I' L d: <. i I E 3 6X a 35EC !!:o T Be llsIIIl-l*Ilnlll1i.l' l1t" It-lNIIIIl-t:lJIIlct' Il=Ill,l:ISls ll*IlLldiIIIt" Iit_t" iiIl=lcit.l*IIl_l=II1"l; illi=lll.l::i lt:l"l-l' Iit"IEIIi"l. iiIt. ? iIIi;l'ii(: lei,l"iIlldt"l,lIl"Il' Il.lr -t.t' d-t - II1 , i. -t - IIII =l = Iinhss i: t:1- IIIlnl. iIlrd i 1', i- i - lt|l l- l - 1- l =ll" l " tl,l i" l " t' t ' it It. l,t- IIIi. IIlrix Ito l t- IIIIl. IIF1!ic l=Il*t:t;rB lqIIIi. III I i It. iil"l*it"tdIllt;l" Ii.l" IIIt"ldt' Il' It.i:il_lJIqt-IIIit-l' IIIIIt:1"rtls t' Il"ldli- liIEiil* iiIl. IiIt- IIii1t1o IIi.l; IIi:IIiIlrt-ela .1 . i= 1 = I ii_ i " l* l* il i Ll . r" i " II =l = .l ' lt. l . l" l " t1t. i " l* lx l" l " 11 t- l - l- i - ll l" l . l" l " ltrl:l : i" l " itrl rx ls l. l ' ri i= l= iIt1l= i = rltl:l ! "l : i l ; a re t"ldi-IIIl-l'i-iIt.ldIIit' It"ldlct. ldIt il-l' IlIIJOIIIl"ldt8l3Il"l" l.t' IIll=Ili-I!1. II _t _ -i - IlIIlI *l t : lr -1 - sl s si s _t - -l - III ,1 , . I' III dd 6:itI ON o t ru _ E t qg E3 e E: r l L = x : - r n= {E s O HE T: 3 o YS rS E PE S S5 u d sE tu oE (LEd()t G0-E(!6o=@o)d)o6t @trfEtr(Elr tclj.Ef8- () = c. , c 3-ii 9 E E 9E EH E E E s - ^ E : , ii E f Ei f I T J dd d E dd d d .id d d ;B i i ii J i J; ; d9E E E IE <= i E a o _6 EIEI i! ;; : N E I dIIltt: i$ti dN idi' IIIld *l = " lolII c lc -j - II .1 . iII "t " EI E ' l' iLII -t _al s .i . 'i " IIIII .t - -t - IiIIl q9-l - IIil n l ! -l - sl s st g .!ol i,qIis,t.l. i IIt,loIIl-l-{l-lNIl. l- q IIIldlo - ii IL. ldt- IIIl.l: IIIIi-l.t-lBI!l"t' IllqIIlql. i-i@1I1- l3II dIIIl.iIIi Ii't- IlBliiBl.lgt.isE t:l-iIl3Ii"l't"t' IIt"l*Rli IiIIt.l' IIIl=ll*t-JQIt lqIEia1- lt; Il:l!t.r$is l.I' IIIi=IIIt"l' iIIIl^IElr t.leiIIt: iI,t.ldIllIIlslII1BIIllsl- q IIIl"lildiiIl' IliI1- IIllIrt.ITIl-inii sIiBl eI : t : b; "t " =i -I "l - . l. I aS N!tNoa6 c - 8E &= ' - '3 = f Ai il s o YE FS E 9E : S6 i: E sg o 6E .LEoot III!tITTII!IITTTIIt f Eu ,i g' d IIt!ITIII (!EEooo @d d d N-d ? N d{ d d d d d d d d d d d d d d d d d d o qq . q q \ 9 \ \ q 9 6 NN d N N d N d d d d N N dN d d oo d d d d d d i d d d d dJ d d dd d d o d d d o d d d d o o d d o d d d :a : a a a a i l : : : q q 9 q : r a a r dd @ d 6 6 d @ d d d d d @ @ @ @ o @ d @ E!I ii d i I I 9 q - le .l t q a . q q n 9 : 9 q I q q 99 9 q C 9 q q q q c q q q q q 9 q 9 9 q III No o d * o 6 d d i 6 d d ; i ; - F o o t o 6 r a ! 9 .o q q q I 6 q q q 1 1 6 6 - 1 a r 5l E'c;El s5SE 3 >6 1 o o ; c i E s; ; g E E = " i = I =E E s E E B E E . S rf !i l ! I I ! = I -- - E tl t t t s E E E ; E i: Q I I F d eO {i { E s E o! !ciE 88 8 t t t E 8 8 8 8 8 8 8 8 8 8 8 8 8 8 .96 pl 6A c t ;b b a ; i a i a a i ; ; ; ; b i i ; ; b ilb b a ; a b ; ; e b l b ; ; b a l a b ort?@oINoN rA N^ 5 * 3g E ?. , '9 = r JE O L '( L = r : - o> € 8 t r i t 6 ts : 6 F E O g6 98 5 o oG i n t 9t= c N tr (E h- Ao L = NOAEoIEoeot -- - 3 NN d d dd d d ;; ; E J d6 J i ji; d (E(LE(Uoo=oO)o)o(oN (oEl!,c(Ud=cfncl8- l. ( ) v (') . E v-i; , Et E E E E s E r i ,n 8 9 6 . . 9 6 Y t = d, ' j l r r l r r l l E EE r J 6 l r r l> - dd d e dd d d dd d d PN P A $E ! f t E iE II It-t- iIl-I'1: lsl! diI dl.l:lq IiI r? lr l -l - III ts!!tsotNo NS N- 5* tE T1 , EE r JE O L 'I l v E - * h= sE E o 91 95 5 or d 6 Fi . E ED ! E HE (t r h- ; o L = NO 9* BE5(LEa(,u ITTIIIttIttIIITIIIT t_ldt-iIIlsl"Il' ll' IIil.l*It"t8I.l=ii"Ii' it' ini=Iit-;IIlr iIlIIl5l' llt.*IIlel=iIle . i"iIIli IIIld ilnl=IIIl_l3IIIIIi* IIil;idiiildIll8iIIil-Ill*lr l- :;iEt- IlxllIl- li"IIII:IIIIt-IIIIit: le . IIIll-t"IIIt-l]=lIieIililais .1ea l^In l= l = rlrl il1_ l _ i' ] ' !.t - li :l- - ls s lc lt Itlit"iu lu rliilit- l - l" l . ilIIl. l " i" i " IIiiII'l"IIil-iIIt"lB l. l . I il i. l . l- r - It"tn N i* - ta e t; la 5iB IIIIi* It"ld IIIlcl-IIl=l"IIlIIl-IIIBil=IiII]-ts1S Il=iIl=iIiii-l-ilsis ll*l-IIlIl*It"ld .i " i " ii Ii _l ^ t - =i = l * llri -t - l - '1 " 1 " iIIi-lrii iiIitlr- l - l' i ' irtirirlrl l- l - -l - ; rl i i!littal e .1 . r; l ; el ; R i -i _ iiI!I -t - d ld 8t 8 J; I .t " r l' IIII .i . IIIIi r l' BsB NdIIIl-l' IiIt-i;ie o9I E C a E= c IIIttIIIT (E(LEooo=o dd d d dN d d N N d d d N N N N d d d d d o d d 66 0 0 do d d d d d o o o o d d d d o d o o o o dd d d 6 d @ d o d d @ d d @ d d d o d @ dd d d : i I : q q : n . t n q q n n ! q 9 I I q I dd d d N N d d d d d o d d o d d Nd d d \! q q q a o q 9 q \ N q q n n n I P I I EiT TIIET5l E nE I Ec . i =t t ; E = , , E : I * 59 * € E E A E F 5 ; 'l i l r I i I I r l i' I dd d d do d d o o o d o d o d d d d d d d d o o -;- - ; j ; - ; J J - J J - - dd d i r d d d - d N d q d d r @ i N - q d d d d N N d d d d d d d 'd d N d d d N N ;;J d ris + d q ! q i r q q d e ! i i i r ? { ! q I a Y { 1 a .1 .1 rt N . . ! . 1 N f : c I - : q o gE E = 9 d E' E E ; 5! IE 9 F {> S E e i o!EC!E iF F F F I o95 ! r 6e c 6oFo$No co S N^ L @v :f F og 81 . , q= . J= O L '( ! = r : - o >€ 8 t r r E B- - , 3 E o ?E 95 5 o o5 i { . t 9r u c N c (t r k - ;o L = NO O * EE 'Eoo-ooot "i- d ; d;d d 88 6 9 d- d d dd d d &8 8 8 ;;d d soE(E6o=@O)o,oro6l (oc:)Ecodcft5 8" ; la ) = c. , c v- (\ , t - >n i s s E 25 EH E E E S - ^ E : EE E E f ! BE E . S i ; 8 8 ; ? 6 ; n . i d. l u n r r l n r l l S Es ( J 6 2 r r f >c dd d d ;; ; N ild d drE E E s E ". ; E E; 6! !E!E 8 Llnl=Ii-ldiiil=1i1l8ll*ldIIl.lEt.l*t"iIi-IIIIq l^irIri IIirl- IIIIIldIiil=l' Itqi- IirI" lt"l-]"Ii"l"t,t-l"ldt"isis rl ^t - o ld -t - IIII *l o . i"ilIIIllIlII 81 8 II -t ^ * l*IiIII -t " t. IIr Iit.l*il-1= Ilt_l!l"lsl: drie!t n ln lIit* l * " l" i Ilil. i " ; l; i. l- r - l8 ir t' l ' l1rl l: lr IIil, l , t" ' li it"l- iil-l' ii- l l' Il8l" il= Ilal"it"lNIIit.ld.II1"ldlIIt-;IilqIlxt; I11Nl"ls; l. IIIl-It_liIIt.t' IIIIl: iIirl-te ! d i.l-iiIi:IIIlslfrl"IIl=t"!I1IIlIl: iIIt: I1.l- IIl^dIli=t. ? iIIii;l"!bs IIt"diIt.l" iIIIt. iII dd.?q lq1- IlI1" l"diL. IEiII.llt_l* iIldl- liIll8l" It"t" Il5l.IIl=IIIIlql-IIlIl"ls; Ng! it-iIIl-Ilildl.l:l=lnitss I q i. t IIIIIIIiIIit.t" IIl_li IIIiIIl_t' iIl*Ig lcl'l=t" IIl"lrIiIl=Ii-lEIIt dci ItT Ne@onNoN !t b N^ i- 8E \4 e 3= 'O - = ! ! r * H= #i E o ei 98 3 ar d 6 FE . E O) ! E HE (E h- bo L = NO 9- EE '5o-Eaot ITITTII ss T "!g EE s $' ITTIITIII (EEEa!oo=@ dd d d -- - J dd N i d. i d D i; i l i&& R t dd d d ;J ; d IET TITET5l En; l Ec . i , Et E t e E * r F i l ; ,L I , l I i I I l s "I dd d i l - aJ + d NN N S $E 5E i € I I I E d! <. + E ! o -d ! 5 6! !'!E F T l. t" iP Ii=IFIil"lel*IIIi-i-ii*ll.]' Il. I3l:ts;S l-1- lIIi5l-IIIiIl l"l- IIt-l=III Id Il"l- IIl*l" IIi"l' ilIl"IlsIE lsl- It.lxl" llI'l*;bs lxl" IIldIII, iIt-lEt.tsts ddqQ iIl"lIl-l1iiIIl" lIiIIi-ld llleiiiI I is is it l. i " l. l ' il l- 1 , l. i . l3 lB i' l ' il l. l . t: l" l . l- l - l" l ' 1l l" i " l' i l. l . , ii i- i - fl : is ls is s i l^Iit. lIIEt"t"ldt.dIlcII1tdIl3iiI' tdIIIr1- lllI:Ilal8ae dI lql-II]-dIrlI:iIEdIIi. ' IIiIinIIIIIl*iId:s! inl-lrl- IdIIl"l-l. Iii^l. Ilil"lEllI'iul"Il-IIil=IiIIi3r8r$ lIiIIIlaItl=Ilet.isl$ l -t - -i - i*Ill-ilBt^l-IIIrt.is$ ib IIlst:lss l-l1It-l* iIIIi.ldIIIIIEl"!1l-E3 dd {oo,oiNo ro S N^ 5* tE Il e FE 'o - J ! E - G >E -E E . c iu H- 6 t. U O Pr 98 5 ar oS F N E ED ! E HE (s k- ts o L _ N O 9- BE6oEoot - r l o . ? l{ E E: t l3 5 F f I o F -t * ; t ; (E(LE(u6o=@ dd d d dd d d dd d d fi ; [ f , && i+ d d ;J ; d q)O)ot-N @trf,EIc(E'r tcl*5 8. . ; EE s-S" r 9 gE 9_ E EH E E E S . ^ E : !I # E E E + E F s i .T ? Y ? . : l i ? ; E Es ( J 6 2 r r l> c d; d d q . ' ! . 1 .t iE E E te _6 Bi !c4t F ilql=IIl-i-I1lt"l"iIt.IEl"Ii'l"t-l' iI1: lsti ql- i{iIl-l- IiIil"lNiIIl-IEl"l,IIIIi.iFIIiIIiIIltIIiIi.l' IIIIlIl-l"ixtbta dId::t;E qt-t-ldII q I l=ItIIlqiIIir( !a Iit"t; lIt;it-iEt.I( ! ldiIiiIIl=IIislsls t"1- I1-I' it-idIIldILit-l-I!8t"Iicl*iIt-l*iIIIi' IIt"IJI 8dc.lis lei.lsls Ll;Ii"lit.ts qIIIldIIldiIl.l* iIt-leldllt"Il*II'3lIl:ls: lile i, i - litl l" l . lll' i 'Il= l = l- l - ll l' l *Ils le l' l ' lr lil I t lt l- l - li l= l = li l. i, l- i - i1i= [ llr" l . l" i " Ir tN -l - III "1 . 'l - Nooo$NoN (o b N^ L OY I L O g &? " EE . J= O L ' O- = r ! - o> € 8 t r i t E 3= a: E O gE 98 5 o o6 t r & . 8 ED TE HE (E h - bo L = NOE. E .Eoo-E6qot ITTtTTITTITTtTItttI -l - Eq Il.l8IBts $ i" t 5 qf oe sE ITIITIITI g(L5(Eooo dd d s dd d d -- - r dd d N ER E $ NN JJ J : Bfi I tIT=l il En; l =6 i , ET E E E E * r + i I ; ,l i . l I I i I I r E " t dd d d ;; ; N di; d dd d d iid JiE ; i ;E <I : E ! O _ d EiTE !'!E F I l. ! IIIl-l-I 5!a "1 " =l = -l - 't - l:t; Eb Id It"l:ldIIIl= it- IIIIl-Il"l"i' iIIIIlsi" i16 . t* liIt; 1It; Il_t6 iisls l! IIl.lnIi"l*l"t9l-isl$ 1q Iisiii, IIi=ldIIIil: IIIt. it"l*l.t8Il, IIIli= qiltdIi*IiiIIl-ldIt-IElel-t;t$l"l8t; i q lrl-iiiIi*IIIIIi"let.l-I' iqt*IIIilqi-:Il*IIIi-l5l"Il.l"IIldlNiIIIlBl"l,lN l8 i8 li: ln It"ils IIIl8l' l!b r. l i-iIiiIqlIIi-]"Il,lpll"IIl_IiIIi"iIIll,l"Il;IIIt; iII1Itltai IIlal't"INI let"rils It-lsIlsls iiI sr s sl s l,l-l- li-l' IIIIIl' IIIlIt"In IItl-l.l-IIl-I' II1l"Il-l"ts]E l-i-l=IInIIIt.l' II;l" Il* "!g EE ,i g' d oIP{NoN l' - AN^ L 6V - L o g E? " 's = ' dE - 9i o >E 8 t r i ; 6 B= 6 3 E o gE 98 5 o oG F i E O) r E HE (E h - bo L = NO -Eo(LEoqoE. E.E(LE(Uoo2oO)o)oo)(\ t (ocfEc.Edcf{cl8; b!rr ' E v- (\ t -=c . i 9 gE 9E .= o - ! E = EH E g H S - . 8 ; ii E i t E fi T J dd d d d;N d d; d E iid dE8 8 E dd d B -- - x ii6 dFE IE f i 9: l I E o: <> i I E : 6X a at Ic,E t"t- IiIIIIl*IiIIt:l.rSti d Ii-ldl-iIiIt- IIlIl"t"1I1_lcllI1.l' ii- IIiII'5rb lat; Ilil"l-IiIt-l=t.t; It-lsls EN t. It^l=IIIl=l8l;te qlal; -t " -t - III :ItNo @S N_ L 6Y f F oE wz E^ e :5 E ;E '( L E x E - (E >< EF i d H9 = 6 E E o #r sP E o dG F i i O) ! E HE (o k - bo L = NO 9* BE .Eoo-Eoqot ItTITTITItITTTtTItI IqI -- l d s t= !l g t $= * ]. ;a: I ; oo Il" ! t-ii1l*rr l II lIIIIt" ?t- I l' It-leIl:I' Il-t'tsls ldIIIt"l. Iil"lRI8lJIIIrtst"l- iit"l=iIil: IIl1";iirsls l"IIIli IIIIt.ial' IIlt-1"" IIiIIt- IIl*t; iIIi-i' I:I,: iIi,.1qx;i t-lslsl"l"1-Nls II "! lnIII Il-leI' Iil. lIt"]- Itl"It- IIIi' iItsI1: l$ Ii-iIlIiI,lla i Illt"dIIt. IIIt.lil" II ilqIl*t; IIIIt-l' iIl It^I1^ i=It5ldIl" Iillrlql" l-lsl"l" IIl,i' IIIIl- iIl"l-i${s Il_l"l-lr IIIt-lsl$ l- t":ti { ItIItTtIT EET TTIET !,c5l EH= T EG i ss s e E E " . ; = l , ir t f E t f f l F j II (UEE(sU'o=o qq q P = = 88 8 8 E i iE ! E Ei dx o €Id! dd d dR& & 3 -- - N dd d d Nd N * liIE IiI' iIi,t81qt' Ii_l"l; i IIIIi-I'i li*t- iIIrI' IIIl" IIl-ldIIl8iel" It"l' iIi-l' iIt"l' Ii.l=sIQI l" ' iieiIil-Itl"It5ls ilnIIIIiildIIIi,l"l"IIIt.l"IIlil8ls ' lr -l't' la]' ll-l" IIl=ilIl:IsE qqd8d il-ldIl=l* iIt-laldl6l"I; IIt.l=ITiE IIIIl"5IIl" Il-Il-l-lqt' It.t-t-li I -l ^ -t - II .l * - l' II "t " n l"IIII "t " Et 5 II "t " .l ' i n In Ei *Ii "t " '1 " lI d ld E. IE "t ' III "t " IIIiI ' l' II a :ib IIirIIl.l.ldl" Il* IiIIIqlF q it"d IIt.l" iIl" t- IIiIl-lsl6l-l"IIl=iIllit.ss Iiol-l-lr IIIi=l" It"l8iIt"l6d IIIlxl' II:IIi:a$ Pl e Il-l' Il' IIIEt-Bta iqiIIl"l=Ii" It-l'i"l' IIl=iIl=srE rl * III ol * " i-II ,t " .1 . Ii .i . EI E IIl=IIl:lss d s E= : ; E, sE oTtNo o) S N^ 5 * tE t ?. , =s = r J= O L '( L i x ! - o >€ 8t r i ; 6 E: 6 8 E o 9t g: 5 o dG F E . E O) ! E HE (5 k - bo L = NO 9- BE E(LEootr dd d d so-E(Eoo=oO)o)o(') (ocfE'c(E1r ,=cl.f.Ef8- l( ) - rr . E Y-= c' i 9 gE 9E '= o - E c : EH E E 5 5 - ^ E ; 5I # E E E B E F s i .l t Y ? . n Y ? ; E Es ( J 6 l F r l> c q\ q a dd d * .? F idd d g i; i d ;; ; N . EE E. ! f f; TT ! E ! ; -, i 3iEE lc!! i:it-t"l=Ii=IIt.l=tsti l*l.l' ldldIl,t"i' IIl=IIIITl:l.tgl$ t; ldl"IIl,l=IIi.tsrs I l"r9 iIl=l" Ill"l' it. IiIIIIiIIIi!llIl' l]. Ii:ix,bi - l" i " i= l = l- l = idisIIIIrqlIdIlll:ldll_d:iel"iBiqiIiIl-iH . i;IiI::llqI$s iiIIl"t; iIIiIldIIiiIl3iiIlql=iIIli IIt" IIiIitI' lIll=lIIl. lIt.=tsts t-i-IiiniiLit"IEl"IIt' IFIi"l=IIi=IIIt- ii1.t:IS1a It-t-IIIIt-lqIiIIIlNIIIi-l5l"It: IiIt.l' Illll:isB txi IiIIil9i' IItql=IiIII,l;tc Il.l-IIt.ldIIIIt-l't"l.l*lBt:l{t' IIIl9l- IIIl=iIII1"1" tea il" rt- ii1Ilst.i-c IIl=IiI1:1. lsIE 1.1 iIIlgldiIIIIiirIlEl"lllt"]. Iiqlfr ii18 . t8lNl. I d 3d&I ogC EE 5 F l od o Iz, ,f ; )Eia!tjt Zt_!=jtr3!Eqt iEl-!d2$ )<Z a -IIiEO ,t : ,Gro54D= (F,g!r iEl{tJ: )isItrtIt t-5t i:J g3No oe Eo E - IE E? s -3 E t O - l Y ! - * E= #E E O HE T: ? o YE FS E EE = H? b* EE AE (LEooG tTTtTItTTtIITITtTIT IIIIITIIT oo-E(Eoo=o dd d d N N -- - t dd d d dd d d dd d d ET T II ;J d i -- - N iii d EI Ecir EHs I >c . i se ; i E E " ^ 6 = l ii E i E E i E F i r il E t $ E <= i E ! o -, t ! 5 !c!3 I i-lll"iiit-idiIIIldiiIIt.INIIiIIt-ldlRIIIIl.l8l'1"..i l;IIIlql- IIIiiIIIIlpIi*ts LIi! iIlii-ldIIIIIl"iIIlxIIl-IIIt-l'I' It" i- a IIIIIii=llIIl.istb it- IIli IIIIIIIIIt-t.l. IlFIIIt"l']" ihl-lIl.l\lIlIlIl-l'I-lIl.lft Ill' IIl' It-lcl-i1l.l'l=lct-t.tsls eQI l"1- lIieI IIl-dIl*IIl 1^ IIIt-t-l-IIl" dIl=IIIl=IIlulsls t- IiII1Nl:1SIQ l*IIIIt Ill.l' IIIl: IIIIiIt- l E t8t; IIi"li llrIIIsl: Ii=IjIl=i;IisIE L. ldIi l= dil.t:tats lt^ldII,l' il-IEldIii;l- Il"l' iIt"iNIt-l-L, IIIIil=1Il-ists l. lIiIt,ldiniI5l" lt"dIl"ldIiIl8t' IIIl!t" It. lIl"l=IIl' l :L:dlsi t^ldl"1"t; lIlJ18 . l^Il=IiIIiel' Ii!IIt.ri Itsl$ idIIIIldIldI' IlliqIlIlslIic:Iiiixl' 11l-l' illIil:IIIIINl-iars l=ldIileIIIlel;ts "!e eE ,i g' d l. l . i= l = l- l - l" i . ll i' = l ' i" l " IE IE li t" i " l. l . ilt" i . ld l d l- l * ii lc iq lE lf l' l - liLr , Ir t8 l* 1 " ll l= l= ll l- 1 , t- t - lrlr l= i - ill. l . l- 1 - ll i. i " 1l li t ; ls ls F9!PttNo rE o ' Qa E '- tE &i * ' 3 E t (L I s F- - >€ 8t r a fr fr : TH . ? 6E Ei E E, E E SE !v = No ;E g oF o-EEt EdPoI=@o)o)b(')(, (ocl!tc(gdcl+'=f 8" ; EE t-s; 9 gE 9E EH E E E 5 - ^ E : 5E # E E E iE F s ,r E 9 O . . 9 O v ' ; d. ' j u r r l r r r r b Eq 9 6 > F r D> E ;d d i dd d B ;; i t i ;J d g Jd ; N i;d diE i E E: -a Et rE !E!! t-t_t; IIIt-ldIIIIi:t. INB i_ 1 . t- - Ib l-l' IIt.ld IIt"t: IIIIi. d t"l-lrIt"lut.l!ts oIFoiNoN r; s6 L Ov - L o g & i, o EE '( L = v > F e: 5 - E i F iu i i - E o Y E o Ht r g8 5 o dC F E E ED ! E HE (U h - do L - NO 9* BE 'coo-EoaoE. TTIIIITITIttTTTTTTt IieliIlln1" ll.l" IIIIit"Il. !t" lluIil=I;Iiitl*IE Il. lIIIIl=Il"l- ll"l-l=iiri:r$ lqIIIt.lr iIIirt- iIIil.i- iIIi$lsIE;i iuIi.1' It.t- ldl- qIQ ddIdi!IIIIl!tet;te i-i' l- ' IiIl;INItr ILIlr ; l_ q d ilPIIIIii.tnjlIII: q'l lIll^l"IIIll-l"ilrl' IIIt' Il. iNIIiqlullt-j';lIl= II It_IlsIIil*It, IIII=lEsta ll Iltl_ t - lr t ! l8 l8 t- t " It le ls !s Il-ldt- iNts II rl r II nl , t J' llII .1 - *1 " IIIII -1 . . i' IiiI -t - xl x "t " II Ei E -i - 1=]"1"I' Iil:Ii5l8t. iC E5s; I i* ,i g' r Tt d6 d 6 d6 6 d L dd 6 d d d 6 d d d IIIIITTTI =6L6(ooo=o dd d d d d d d d d d o o d o o o ?? J N dd d N d d d N d N dd d i 99 9 9 9 9 9 0 9 iid 6 @ d t s t s 6 6 d d d d i d d d q d ! Nd N N N d N d N N d d 6d 6 d O)ot(') oo d d o d o d d o o d o d o o d d o d o TI I 9 C q q 9 q <? 9 9 q q I 9 I 9 q C 9 9 C C9 9 6 : = 9 P r. I q I 9 I q q 9 I ! ,q n A I i q I \ rr ! a r 1 * n 1 ! r r NN d d d N N N Y EE 6 F l qF rlc l c c l N e { l e Q l l e c c N e t ! ;T EC5I E== I Y-s" l ss ; e E s " " 6 = l ii f fi ! E F [ f f r od d d d d o o o d d d d o d d d d o d d gE E : Ei I e ! E a: <> : E ! o o! !.i! I @$Fo$No NS N^ 5 * tg t1 , , gE I J= 6 L ' O- I x !- o >€ 8t r i r E ts : c o - t E o Hr s5 5 oo G F i E O, ! E HE (5 h- ; i o L = NOAE 't rodEoqot s(LEGoo=@o)ct )olo(r , 88 8 P dd d d id d d did J dd N d ;; ; N (ocfEaodcltcf(' )cl(\ iclJcl H!tN o oE ci €* s e E s - ^ ; ii E f i E E f l [ f J;; d dd d d $ E E E T E! i I I E d 3d <I : E ! O -d !5a! !ciE F II q!s EN .i . i .l = l Il.l" IIIt.lFt-tc J t qIaa Il_ls lln1- lII: IlaIl,lr lIll";LIlIIIit; Il-l- lIIldlli.I1: tas lsl" iIl* iit-lsI1a13 . iil" Il"ldt"il,l-Iii"l' IiIl' IIliI:1! 1S l.Init:iIIIl^l=lsIt.t!q t"i' iIIt-li !IIji= dcI!i Ii-lEt.t!ie E t" 3 F5 6a o n It, iIIIt: IIIIl-IIIi:iiii_t8i"l"t-is IlaicIiIIl" i lIIlItJ IdIII5l e i l-IIl=iIIil. IlINRr; lIl-l,l' IIil. ' r iIlIiIIIiBI! \!s l-l-ii=lNIIl= -t - Il : t : iII 81 8 "t ' iI d l d IIiI TTTITTT NoFo*No (o S N- 5 * tE t 1. , =g = . J= O L '( ! i r ! - o >€ 8t r i'r 63 : r - h E o tr 95 5 o dG F X . E O) ! E HE (E h - Ho L = NO 9* EEE(LEa{,t TtIITITIII ITtIITtII go-E(Eoo=@ dd d d Nd d B ;; d g 88 8 P .i d d i dd d ; dd d N ;i; ddd d d (t)<t)ET ITIEI EIc5r EHs I i- ss s i E E - ;= l ii f f EE F f f f r ;; - t i dd o FS5 5 E i e I! ! E te -d , ! 6 EE !ciE-; I E "l _ -l - Il.t8l" i 8didd l"IIIEt; i8!i q Illel"l-t"lB dN IIt"l*tNlgIlIl]- ll*ji:l*]Rl8IINE Il*3dE IIi"lJlligl1l" lIr- i- l "1 " IIEl' I EdE l' IIl3ldiIIIiFIIil< : l-lI1IqlllIlei'laB l-t"IIIIt-t: 1Ii]' ii.t"iIt:l3t.,eis IIleI-iIIl"lEIt!is IIiat' IIIIi.I-itt- iIlt' lilBl.1s INQNc l_l-Iiiet' IIilsi.iIt.i"iIl. .l-iIIjt. lo ,t' lt"ldlnIi: Iiil' It. lEl*ia l:t!t; i- , - i - l= 1 . 1 . I' l* l* li l l' r ' i ' l- l - i - l' l ' l ' l. l . l . l, l , l , ll l I8 E1 3 l' l ' l ' l" i " l " i" l " t " l. i " t " l- l - l - l- i - i - lr lr lr ii l il l l' i ' l ' l. l . l . l' 1 " i . li l lli" l - i " l5 l8 l3 IN ! N E lE $r g IdI.! fl t= E .r $' si c N1 , oE3e !:3t 2a- !:3t zEE3)zttc!Ef<2 a -IIEEE9: r rE5AD= (F,El=?d i1l1EJ)-ri5t ) =t iJlaiE Ns!6otNo $S N_ 5 - tE t ?, , =g = ' aL = v : F * H= .. ! E g o -r 98 5 o oG F & . t O) r E RE (E h- ti o L = NO 9* EE6(LEad,t (EEE(!ooo dd d i J; ; N dd d d NN N f r 88 8 P dd d $ o)o)ot-(r , @c:) !,c(sdcft58; 6€rr ' E v-s; E E E 9E Eg 5 E E 5 - ^ ; : 5E + E E E $E F 5 i .l t Y ? . : l ? ? i i E EE r ' l 6 l r r f >a do ; o iEE E E TE rr ! E !i , 6'EI iz Il*t- IIl-l'l=It.t8l"lct.-t" IIIiI IIt.lel' Il"IBld t-t isl.le,a l"!stb II.a lr l l=i" iIi= *l * -t - IIII n le "t " III 'l ' !II il= II , l. IIII r lq -t - II i, 3 @6ddo!tNo ro S N4 5 r tE t ?, =g i ' d= - 9: rU >€ 8t r it E ts : 6 E E o er st 8 o d6 F X . e O) ! E HE (E h- ; i o L = NO 9* EEE(LEa{)t tTITITItTtIIIITtItI EdiIl,ldl"lt"iu l IIIIIi^l"lt"dIii-l8,$ie t. IIlIl"I:luti it_l' iII IdqE sl e dd I "l _ Nd IIII I ea r i= 3 6 r l o- EE Ilot- iB l-IIIi.l-IlIt; IIi.leIi.if ,lrt"Il-l=iii. ,i-Ill. it-l-IIIii-ldIiIlIlII' llIIl-l8;IEIIiIt-ict- iii: lll"loIIIl-it,e llli. l;l-8Iil- lI1" IldiIl- IIIi- lini- lll*ia rgls irSl.cis t"l=IIt^l* III,t- II IiI "inl s "t " II Il-l" iIIt ii*l'e 8 l.loliIrl' IIiiI1" lliJNt; t-l' IIIIt"l' IiiIii' lll-li8INls d!rIiIIIt: IIilII1l ioI(! IN t. !I=I des IIIITIItI (ELE(Eoo=o dd d d d;d ; 88 E g dd d d dd d d ;d ; H q)ct)ET ItI .; ; N dd d ; ;; ; s ;l !,c5r EH= T i" i It g i E E * u f f t i rl ! ! l ! r I ! " tI iE E t fi E "r ; I E;EI ir i* l * il l* i , l" l " l. l . ii t.ldIIl.lBl! lBl.tas i " i" II ol * *l * a tN It' Iii,l.IIi*It.tct-t: t\t' iiIl"i3t; IIi-lxl-Iirl*IIl*l' I ldt' lldIIlIiriiIl.l5II 3l-t-i=iIIii, lrldIldieIIl-dIl"18l;lil- ilqiIIi: llIi:IIIt-t; ioeie t-IiIIl"i;rNt; IIIt"t"I Il.IIIIiIluiI I1Ii3IIIlst-l"l-I lil=it"It.l' II It.i-i:Ilit' IIt-t;l*iN N"1 " "l * Il=IIIIl"l8l.tets IIt-l.l"lale dIQs Il" r1- IIIllsl" IlIi-e II t-t8ldiIIIi*dIl= "r " 1 " 9 l o l r li ; r a a Il_it- ilslsl.ists IiIt"lnIIIIII Ei E IIII si s " l"I1Il "i " IIII r l' IIiiIIIIIII "t . r l' l -; 88 I E r I I 5 E=ON N EA 6NoiotNo (o S N^ 5 r 8E E ?, , 'g E 'O - = ! : F o> * 8 t r i t E ts = 6E E o 9a S8 5 o o 6 F'N . t O) ! E Hc - (E lB - ;r o L = NO 9- BE5o-Eqot (E0-E(Eoo=oO)cnoO) (') @clEc(EdEf$cl 8" ; lo = c. ) t r v-i; . 9 gE 9E Eg E E E s - ^ E : 5g # E E E l E F s i .l t Y ? . : l Y ? ; , r s EE ( J o l p r 3> a 88 8 P did d jid d dd d i CE E E B E i! ! I E i EI IE d Il-IIIl"t: II ai IllllIIlIiLI "l ' III d l d II -1 . ei e "1 " III el s -l - III q lc JI E i "t " "1 " I -] * '] ' II :L : IiII =l = IiI1 al o oY?oo{No F- S N^ 5r tP E ?, " '9 E . J = O L '( L = Y : - o >E 8t r i i 6 ts : 6 3 E o et ge 5 o o6 F N H o) ! E 3E (E h - ;o L = NO 9* EE .Eo(LEoood tTtIIIIItIITIIITIII IIIIt^ lllIlcIIl-ld It- IlqiLi3IIIIIl-t8Il*t"IIl=Ilel-Il-t- iIIIl8!rg It_tFit" iIIiel.tIi"lBl' Il=t*i-t; iIt"lEl-la 1.i"li Il=llxIIt"l"Il. IIIIlqt- IIIIl" se I.l I1IIl.t:l;t"tdIIl. i iiILt-i- ;IIl. lli-i8,eIB IidiIIIIIln ? lIllt: lt,ial'{It.tdiIIt*t; ll-: IIIi"dIiII*;a ilnIIIIt-ldIIIIit. iIIIdl' IIl. *l"IIt-tNIIit-l, t IlIIIl=Iis Pl e iIIlI ! tc iIIIII 3 !;e l ENnl s "l ' iII Ei 3 -t - IIIl "1 " jII 'l - IIIIiIIii .r l:!I1IlIII "1 " I l i 3, 4 i N t ! i tB IIIgd igi' IIt- IlsI l _t _ -l - IiI -l -"l ' III -l - I Bt 8 .1 . II _t _ d ldIII -l - IIIIri"LNt$ 1*Nts I Er E 5 F l oe de q IIItIIIII .go-EG6o@EiT dd d d d; d ; oo ? o .i . i d d did d JJ J N Sd d d tIT:l5r E tg I L. , Et s ; E E * u f f I i rl t l l ! r ! ! = t ;; ; N f EE E sE <r + E ! 6 -a _! e EI !I F I -t - iiIiI 58 dd li:IIIIIi" IiIl. lI 8aatRd i ^l ' IIIIIIIIIIIIII .! n !Nsi s lt, II!I I : iI]" ljIIIIidIiiRist; liitd IIt.l- I18i"IIt.l. lIl.t"t"IIIl-I' II]=iIt.l" ll,1- lea(! ilnl"ldIIIIl"l"i"IIIIIl=Il-l- lIIl"i*iII't"IIIIt. It.l-EIE r'l l1ldIIldIiIi8l"Ii^ . ieIIIilst; IIlsIIl"l" II1"I li- I1d i* ]* i* l- i - l - il tii i l: l: l: i: iii t ii l ]" ' ' ll i ll l iu 'a iu l' i " 1 " lr i l. t _ 1 " l" l " l " li l l. l' l. lB lg i r i" t " l " il i l" i " i " l' l ' l ' !l l" i " ] " ll l l- l - l - li r l- l - 1 , l- - . - ll ril i l' l ' l ' ll r 1. 1 , 1 . l' t ' t " l, l ii . l l- l . - l- i - - iq ]a ! is i s ts dI l Nln lllIIIt"IIIId IiIt' IIiicIIIl_l!iIt-l' IIIIl.qIIll"J:Il ilqIIILI]"ii;Il. i I1Ill- IFioIl- III1I1;t' IIt"1- IidIIIt"Inl- I ll: IIIll"]" IllcidI1- i=t;tdI i;IIIIEt" IIt-i. IldiIIl- IIIIl"i1Ii"IEl't"l"l"Il' dId Io i - t- - Il! c I!a l.el$ d i" Il, ii EI InPttNo @S N^ 5 * tE t 3, " =9 E I J= O L ' (! = r E - o >E 8 t r i r 6 E: 6 E E o 9i i gP E o d6 F i . f CD ! E HE (s h - ;o L = NO 9* EEo(LEootr l=t! tt -9 - c g EE = 6 r l oe x;E dd d ; (!EEooo=@ dd N ; o,o)ot (of!,co,r icf+cl 8" ; 6P(f , ES-= .. i 60 6 9 - Ee s e e s - ;= =E E E E E *E F E JX _ Q 5 > 2 J - ! i 5 ig 9 6 . . 9 O v r ' ; .lr r r l r r l l b EE u 6 > F r >> d --d d88 8 P dN d d ;6 d i dd d 6 dd d d ;; ; N dd d 6 r I E E i Ei <- i E t o -d t E Ei !E I 3cs i_l-ta l"IIl"I n II -t - o lo cs ! IIl-ldl-i diEi"I ld ieII qIIl=IIIIi=i"ItIt t. lIt' Lt.t"IIIi!l"ts1S lqIEt" II1l:l=IIeIIIi:i.t!e i" i " i " t- L * t - il l ri i i" l " l " IIII lt-li1q;i IIIlc l;IIIlc t,l' IIt_IN t,l' IIl.]' it-l.t!rNl8 l' Iil"l-IQt! t" iIll"laIlIIt9t- Ila,s i_l=il-ldII iiI 81 8 IIIII N l d IIII .t . sl E l_t"INIE iirt- IlIl= i_ldIIIl*i=ts Tt el s ' l"II ,i . 'i " Ii TITTII t-t: ld s {6P*No Or S N6 L6 Y= F og t4 " 'c E r JE O L 't L jv E - o >€ 8t r i r Et s = 6 3 6 o gr gP 5 od G F N t O) ! E HE (5 h - do L = NO 9* BEELEa(,t q TIT t.i E Er e 5 F l OE B tTIIIIITI (5(LEooo(c ) dd 6 d dd N N N N d N d d d d N d N d d NN N H did i dd d d qq l a ^N d - J d d d N d d N N d N d N N N d N 88 5 9 dd d d o d d o o d o o o d d d d o o d o od d d 6 d d o d d d d o d d d 6 d d @ d dd N d N N d N N N d d d d d N d N d N d I I q ^1 I C q C q : r rq q q \ c i q q ', q r q qq q q 9 9 q q q q c q 9 q q 9 q 9 q q q 1 i E!I tII5l5l E sE I Ec i rt l ; E E * u $ ; l : rl S i l ! r u ! " t N d d N N ,N d N n c d d N d d N N od d d o o d o o o d d d o o d o o d d d CE E E * g !E F ; : ! IE E E O : <> i E ! 6 TC I oTxo oq o r N^ c RE Tt : - i E - >E 8t r it; fr fr - _e I E ? EE EE i PE : S6 \v - No b * BE o.Eoqot Appendix H - Galibration and Response Time Data Project No. M243506 Unit t, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 cllent: Pacificorp Feclllty: Gadsby Powor Plant Proroct #: M243506 Tolt Locltlon: Unit 1 o.toi 8t26t2024 Opsr.tor: C.Eldndg€ Box Truck: Probe Longth: Prcbe Typa: Srmplo Plrno: Port Longth: Port Slzo (dlametor): Port Type: Ouct Shlpo: Lcngth (tr.Ysrua lldo ot duct): wdth: Loc.tlon of Tost Porta: Duct Araa: Equlv!lont Dl.motor Rectangular Duct: Uprtraam OlemetorE: Downrtroam Dlrmolorr: Number ot Ports Samplod: Numbor of Polnts por Port: Totrl Numbea of TravoBo Polntr: Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 BT13 '14 0 Extracliv6 Horizontal 7 4.5 Nippl€ Redangular 14.75 13.33333333 Side of ducl 196.67 14.006 1.5 1.5 t I I I T T I I I t I I I I I T t I T 1 22.75ln. 2 54.24ln. 3 85.74 1 3 It Polnt Msr|(lng3 (lncludlng port longth): Polnt I lnchoa ft ft Sq. Ft. Minimum Upstroam Distanm Minimum Domstroam Oistan€ ld€al Upstream Distane ld€al Downstream Distance 7.0 Feet 28.0 Feet 28.0 Feet 1 12.0 F€6t v5.0 144 of 1 99 RATA Extractive 4/1 6/20 OMostardi Platt Typ.Sottlng Cyllnd., lD Cyllnder Vrlua Analyzsr ReaDonSe Dlltorcnc., % of Sprn Date lild cyllndsr % of hlgh cvllnder NOx ppmvd t6 I I 59610 o o 1c -0 100i 1D9t)na) d co 32 O ()lOA uraDoa)49.27o/. 143 3 ta3 60 {t 160l'N)aDOr9 o2./" (dryl zorc TBU I{2T'4J o o05 -{)41 illd 1t59610 9.891 9.90 -{}.0406 1t29t2032 43 A2o/o Hldh 22.57 22.56 o.o40h 412212032 CO2 % (dry) trc o -0 33%Llr3t oS) l,o 1t il tflruBa90u 1a 45 1a 51 -o 3306 4t22J2032 I T T T T T I T I t T I T I t I T I t clLnt: PsdfiCorp Frclltty: G.dsby Prycr Planl Fual Typa: Natural Gas Futl F.ctor: 1040 Dllu.nt: CO2 % Trtl Locrtion: Unil 1D.t , u8n1 Oprntor: C.Eldridgc Pror.ct *: M243506 02 % Codcllon: 3 02% Comctlon Drir Cma = Conccnb-ation = Avm! value ot tcst Cm=Arcra€c Pre and Post Span C{as = ConEtad gas valuc of test Mostardl Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 RATA Enr.ctive 4/16/20 OMostardi Platt PleI 9.34 9.3 o.22 o.21 12 3 9.891 -0.53 .0.04 q 9.71 9 a ,ol 1.95 -t tl 0.1s 6 9.891 {l(t.20 9.97 c ol .o na t o21 U 971 5.7 -n tt n o { u 666 U,$-o.43 -0.76 0.20 0 9.912 n U 0.33 -o t E 9.912 1 o 9a/-u 562 5.5 -0.92 9.89 n o Run I Run Data Sun Tlm.End Tlm. NOx ppmvd NOx ppmvd @3%02 CO2 % (dry)02%ldryl NOr {ral lnpui MMBtdhr Nox lb,hr u.l$ 6]JY q 3 6 9.3 0.1 39 175 66.0{ 10:24 U.I J6 1)O lr6./9.3 1/174 n1 IU al26,121 1a v5.0 145 of 199 Client: PacifiCorp Facility: Gadsby Power Plant Test Location: Unit 1 Date:8126124 Project #: M243506 I T t T T t I T T t I T T T I t I T T Linearity Cal/Pre 1 Cal Time 7:42 7:43 7:44 7:45 7:46 7:47 7:48 7:49 7:50 7:51 7:52 7:56 7:57 7:58 7:59 NOx ppmvd -0.01 21.47 179.31 183.58 183.60 151.94 0.58 0.19 7.94 85.03 90.25 0.41 14.14 86.07 89.86 02% (drvl 22.56 9.25 0.02 0.02 0.07 6.95 9.90 9.90 4.17 0.05 0.05 9.89 3.99 0.34 0.33 CO2o/o (dryl 18.51 7,91 0.11 0.09 0.08 6.59 9.74 9.77 4.28 0.07 0.06 9.76 4.05 0.21 0.19 Mostardi Platt Pro.iect No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 v5.0 146 of 199 RATA Extractive 4116120 @Mostardi Platt m z m 2 m z m z m z m z I T T I I T I T t T I I t I I T T T T Client: PacifiCorp Facillty: Gadsby Power Plant Project#: M243506 Test Location: Unit 1 Dale: El26l24 Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Time NOx oomvd 8:33 O.2'l E:34 47.62 8:35 89.88 Timo NOx ppmvd 9:30 0.409:31 50.28 9'.32 88.76 9:33 89.86 Post 1/Pre 2 O2oh Gwlz 9.85 0.37m O.21 Poet 3/Pre 4 O2olo 6.\lz 9.85 o.21 0. 16m O.17 CO2 % (drv) 9.72 0.32 0.21 CO2 % (drv) 9.70 0.31 0.22 0.20 Time NOx oomvd9:02 0.409:03 49.399:04 E9.36 Time NOx oomvd9:59 0.5010:00 46.0410:01 88.00 Poot ZPre 3 O2o/o Gwl2 9.78 0.24m 0.18 Poet {Pre 5 02 % (drv)z 9.74 0.56m 0.17 CO2oh Hwl 9.78 0.35 o.21 CO2 % (drv) 9.84 0.80 0.21 RATA Extractive 4/1 5/20 @Mostardi Platt v5.0 147 oI'199 Client PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 1 Oatei 8126124 T I I I t I I T T I t I I I I T I I T Time 10:28 10:29 1 0:30 Time 11.27 11:28 11.29 '1't:30 NOx oomvd 040 52.36 89.37 NOx oomvd 0.41 'l 1.30 85.58 90.51 Post s/Pre 6 02o/o (drvlz 9.71 030m 0.18 Post 7/Pre 8 02%(dI1,lz 9.82 4.00 0.1 1m -0.07 CO2 % (drv) 9.85 0.48 0.22 COZo/o (dotl 9.77 4.58 0.46 0.41 Time NOx pomvd 10:56 0 35 10 57 53.9610:58 89.36 Time NOx oomvd 1 1:59 0.34 12:00 4.86 12:01 83.021202 89.17 Post 6/Pre 7 02%Gwl z 9.46 0.23m 0.19 Post 8/Pre 9 O2o/o (drvl z 10.05 5.92 0.20m 0.20 CO2o/o (drul 9.71 0.31 o.22 CO2o/o (dntl 9.96 5.31 o.24 0.21 RATA Extractive 4/16/20 @Mostardi Platt m z m z m z m z Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unil 6 v5.0 148 of 199 T I t T Client: PacifiCorp Facility: Gadsby Power Plant Projoct#: M243506 Test Location: Unit I Oalet 8126124 Post 9/Pre '10Time NOx oomvd 02 % (drv) 12:28 0.39 z 9.8612:29 0.23 9.1012:30 60.26 0.23'12:31 89.80 m 0.22 CO2 % (drv)m 9.94 9.02 0.26z 0.22 Post l0Time NOx oomvd 02% /d,rvl12:57 0.39 z 9.9712:58 43.58 0.3112:59 89.40 m 0.13 CO2 % (drv) m 9.89 m 0.35z 0.22 z t T I t Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 v5.0 149 of 199 RATA Extraclive 4/1 6/20 @Mostardi Platt I ICllent: PacifiCorp F.clllty: Gadsby Power PIant Pro.lsct #: M243506 Tost Locrtlon: Unit 2 O.$i 8n612O24 Oporator: C.EIdridge Box Truck: Probe Longth:probo Typo: Srmple Pl.no: Port Longth: Port Slzo (dlam.tor): Port Typ.: Duct Sh.pe: Diamotcr: Duct Arer: Upstrerm DllmetaB: Domstroam Dlematan: Numbsr of Portt Sampl6d: Number of Polnt! por Port: Total Number of TruvaBo Polntr: T BT13 10.0 Extractive Horizontal 4 Nipple Circular 7.5 44.18 o7 '1 1 ,1 J Calibration It ln. ln. Polnt M.rtlngs (lncludlng port longth): Polnt , 1 2 3 lnchsg 19.03 49.00 78.97 I It sq. Ft. Minimum Upstream Distane Minimum Oomstream Oistan€ ldeal Upstream Oistanco ld€al Downstroam Distance t3 8 Feet 15.0 Feet 15 0 Feot 60.0 Feet t I I I I I t I T I I t TMostardi Platt Project No. M243506 Unit 'l , Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 v50 150 of 199 RATA Extractivs 4/16/20 OMostardi Platt I Tvpo SettlnO Cyllndor lD Cyllndor V.luc Anrlyzer Rotoongo Ollrorcnco, % of Sprn EXprra(on D.to Mld cyllndor r of hlgh cvllndor Zero 11596'10 0 0.29 -{J.16%1t2912tJ32 NOx ppmYd Mtd FBT} I 4 90.32 90 30 0.010/6 4n!2032 49 2704 Hloh cc25734t la3 3 143 0a o 1)oa 4t23t2029 02 % (dry) 26rc EtsUlqzt}lJ 0 u03 { 13%4t2312032 Mtd il 9.891 9.88 0.050/6 1t29t2032 43.820h Hldh ?57 22.55 0.090/6 4t22t2032 CO2 % (dry) z.erc o02 4 1104 u?3D03? Mtd LL59btO I 912 990 o.otoh 1t29t2032 53 T20h Hloh E80088900 14.45 16 41 o 22%4t22t2r-]32 Tvoe RM Anrlvzer rrh Anrlwer Sorn RM Grr SDrn NOr oomvd Ihermo 42C 42CHL5 l 1 69330 143 oz !a 11140 Gas Analvzsr 01440D114326 5 22 5t co2%1440 Gas Analvzer 01440D 1/4326 20 '1u.45 Siart 96% RosDon3e Tlm. lmlnl llorcrla I Domtc!lo I Cll.nt: PacifiCorp Frcllhy: Gadsby Pflcr Planl Full Typ.: Nalural Ga3 Fu.l Frclor: 1040 Dllu.nt: co2 o/o Lma = wnccnrdutr or ur s5 Cm=Awragc PG and Post Span Cqas = corKted gas valuc of test Mostardi Pl.tt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 TGri Locrtlon: Unit 2 O.L: 816121op.nton c.Eldridg. PrcJ.cr ,: M24350602 % Comcllon: 3 v5.0 151 of 199 RATA E{rac1iv.,U16/20 OMostardi Platt (Cnas qGn Biasta o3t .o 11 o3 lu 40 {E o22 9.8 ln 9.83 1n u.uu 1.O2 -0.18 -0.1 3 83 I 0.07 -o.17 -n05 I oxq I 3J o.27 o.71 .o.27 o.'t2 -0.01 I tt -o 03 1A 0 -oM Client: Facility: Test Location: Date: Project #: Time 7..42 7:43 7:44 7:45 7:46 7:47 7:48 7:49 7:50 7:51 7.,52 7:56 7:57 7:58 7:59 NOx ppmvd 0.00 9.51 174.61 180.59183.08 ih 150.69 7.84 0.29 iz 3.07 76.1590.30 im 0.29 z 4.65 79.3790.60 m 02% (drvl 22.55 10.31 0.13 0.'11 0.10 7.32 9.88 9.88 4.37 0.04 0.03 9.81 5.40 0.15 0.12 CO2 % (drv) 18.41 8.79 0.24 0.18 0.02 6.23 9.08 9.90 4.65 0.03 0.02 9.83 5.73 0.18 0.09 PacifiCorp Gadsby Power Plant Unit 2 8t26t24 M243506 Linearity Cal/Pre 1 Cal I I T I t T T I T I I I t t T I I t t MostardiPlatt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 v5.0 152 of 199 RATA Extractive 4 I 1 6 120 @Mostardi Platt m z Time 8:33 8:34 8:35 t I T T t I I T T T I t I I I I I I I Client: PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 2 Datei 8126124 Time 9:30 9:31 9:32 9:33 NOx oomvd o.47 34.1 3 90.32 NOx oomvd 0.47 28.99 88.94 89.96 Post l/Pre 2 O?oh ldrul z 9.88 1.55 m 0.19 Po3t 3/Pre 4 O2'/o Gtvlz 9.83 1.93 0.33 m 0.26 CO2 % (drvl 9.94 1.90 0. 19 CO2 % (drvt 9.80 1.88 0.27 0.24 Time NOx oomvd9:O2 0.559:03 36.02 Time NOx oomvd 9:59 0.E5 10:00 28.38'10:01 89.01 Post ?Pre 3 02%ldlvlz 9.87 1.64 m 0.17 Poot 4/Pre 5 O2o/o (drul z 9.65 1.38m 0.10 CO2 % (drv) 9.97 2.O5 0.23 CO2 % (drv) 9.89 1.E3 0.31 RATA Enractive 4/16/20 @Mostardi Platt m z m 2 m z m 2 m z Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 v5.0 'I 53 of 199 Client: PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 2 Oetei 8126124 I I I I T t T I T t I t I t T I T I T Time NOx opmvd10:28 0.4310:29 30.9510:30 89 78 Post 5/Pre 6 O2oh /dwl z 9.88 0.60 m 0.07 Post 7/Pre 8 O2o/o {drvlz 9.82 4.00 011m -007 CO2 % (drv) 9.72 0.86 0.35 CO2 % (drv) 9.77 458 0.46 041 m z m z m z Time 1 0:56 10:57 10:58 Post 6/Pre 7 NOx pomvd O2o/o ldryl CO2 oi (drv) 0.4229.89m10.0434.74 0.04 0.9190.38 m -0 17 2 0.39 Time 11:27 11:28 11:29'l'l:30 NOx oomvd 0.41 'l '1.30 85.58 90.5'l Time NOx oomvd11:59 0.4112:00 1.2912.01 70.0012.02 89.74 Post 8/Pre 9 02 % (drv) z 9.88 6.89 -0.09m -0.13 CO2 % (drv) 9.8'l 6.83 0.55 0.46 RATA Extraclive 4/16/20 @Mostardi Platt Mostardi Platt Project No. M243506 Unit '1. Unit 2. Unit 3. Unit 4. Unit 5. and Unit 6 v50 1 54 of '199 I I Client PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 2 Datet 8126124 Post 9/Pre 10 NOx oomvd O2oh 1dwl0.48 z 9.78 0.39 9.72 90.04 Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 COz% ldryl9.28 m 9.1 0 0.750.35 z Post 10Time NOx pomvd O2oh (drul CO2 % (drv) 12:57 0.54 z 9.92 m 9.2112.58 24.15 'l .05 1.77 12:59 90.22 m -0.03 z O.34 m 2 v5.0,l55 of 199 RATA Extractive 4/16/20 @Mostardi Platt Cllont: PacifiCorp Faclllty: Gadsby Pow€r Plant Proloct #: M243506 T6rt Locrtlon: Unit 3 Dtlo2 812712024 Oporator; C.Eldridgs Box Truck: Probe L.ngth: Prob6 Typc: Sampls Plano: Port L€ngth: Port Slza (dlrmotor): Port Typo: Ducl Shrpe: Dlamet6r: Duct Arot: Uprtroam DlrmeterE: DownEtrorm Olrmotsr!: Numbar ot Ports Samplod: Numbar ot Polnts par Port: Totrl Numb€r of Trave6o Polnts: Mostardi Platt Project No. M243506 Unit 'l , Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 BT1 3 15.0 EXractive Horizontal 4 4 Nipple Cirelar 17.4666667 239.61 2.7 9.1 1 I J lnchos '19.75 51.24 82.74 I I I I I I T I T I I I I I I t T I T ln. ln. Polnt M!rtlngr (lncludlng port longth): ft Sq. Ft. Polnt; 1 J l\,linimum Upstream 0istance Minimum Domstream Oistane ld6al Upstream Distanc€ ldaal Oownstream Distance 8.7 Foet 34.9 Feet 34.9 Feet 139 7 Feet v5.0 156 of 199 RATA ExtractivB 4/16/20 @Mostardi Platt t I I T t T I I T I I T T t t t I I I Clllnt Pacilicorp F.clltty Gadsby Powor Plant Fual Typa: Nalural Gag Fucl Frctor: 1040 Ollu.nt: CO2 % T.!t Loc.llon: Unil 3DtLi El27l24 Opontor: C.Eldridgo PE .cl li M243506 02 % Comctlon: 3 Cma = Ctr@batioo of cal Gas Cm=Arcrage Prc and Post Span = Avq4c valuc of t6t Cgas -- CoGted gas valuc of test Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 RATA Extractive 4/1 6/20 @Mostardi Platt I o l:t u3J u 16 ,0.70 ul/om o2) 5 E.87 o ll .1 UU ut6 -1 6 8.904 6au -t 6J US 896 6.12 ti U 897 8.96 n 11 a 041 -o.27 lo 8.99 o Run a Run D.la $rn Tlm.Endl'lm.NOx p9mvd NOr ppmvd @r*02 :o2 ./t (dry 02 % (dry)NOx Lat lnpulM[&ffit NOr lbrhr 75.,138 53.2 9.8 0.1 10 763.( 83.683 8:12 55.0 6 76.64 v5.0 'l 57 of 199 I TClient: PacifiCorp Facility: Gadsby Power Plant Test Location: Unit 3 Date:8127124 Project #: M243506 I t I I I I T T Linearity Cal/Pre 1 Cal Time 5:44 5:45 5:46 5:47 5:48 5:49 5:50 5:51 5:52 5:53 5:54 5:58 5:59 6:00 6:01 NOx oomvd 0.00 22.96 175.34 183.46 179.62 33.35 0.45 3.97 63.72 86.77 91.70 0.22 '15.43 85.95 87.90 02% (dwl 22.52 9.72 -0.20 0.01 6.80 10.68 10.57 6.81 0.00 0.05 0.07 10.70 3.24 0.00 0.01 CO2 % (drv) 18.54 8.75 0.21 0.05 4.89 8.92 8.93 5.36 0.06 0.04 0.04 8.84 2.95 -0.03 0.09 t I I T I T Mostardi Platt Project No. M243506 Unit '1, Unit 2, Unit 3, Unil 4, Unit 5, and Unit 6 v5.0 158 of 199 RATA Extracliv e 4 I 1 6 120 @Mostardi Platt I T I I Glient: PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 3 Oatei El27l24 Time 6:57 6:58 6:59 Time 7:50 7:51 7:52 Post 1/Pre 2 NOx oomvd 02% Grrtl0.95 z 10.3813.65 2.6587.89 m -0.05 Post 3/Pro 4 NOx oomvd 02 % (drv) 1 .10 z 10.4120.46 2.3690.73 m -0.05 CO2 % (drv) 8.87 2.54 0.17 CO2 % (drv) 8.89 2.36 0.24 Post ZPre 3Time NOx oomvd O2o/" (dtvl CO2 % (drv) 7:24 0.93 z 10.42 m 8.877:25 18.28 2.47 2.417:26 92.75 m -0.03 z 0.21IPost 4/Pre 5Timo NOx pomvd O2ch ldrul8:17 0.93 z 10.428:18 21.49 2.138:'19 92.34 m -0.03 CO2 % (drv) m 8.92 2.20z 0.28 T Mostardi Platt Project No. M243506 Unit '1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 v5.0 159 of 199 RATA Extractive 4/16/20 @Mostardi Platt Client: PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 3 Oetet 8127124 t T I I T I I I T I I I I I I T T I t m z m z m z m z m z m a m z m z Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Time NOx pomvd 8:44 0.988:45 22.578:46 91.61 Time NOx oomvd 9:37 1.01 9:38 25.889:39 90.51 Post 5/Pre 6 O2o/o ldrulz 10.43 2.40m -0.05 Post 7/Pre E OZoh ldrulz 10.38 2.15m -0.05 GO2 % (drv) 8.91 2.44 0.3'l CO2o/o (dtvl 8.97 2.32 0.37 Time NOx ppmvd 9:1 1 0.959:12 25.939:13 92.34 Time NOx oomvd '10;04 27.86 10:05 90.86 Post 6/Pre 7 02 % (drv)z 10.40 1.70m -0.06 Post 8/Pre I O?oh Hwlz 10.42 1.81m -0.05 CO2 % (drv) 8.95 1.96 0.34 CO2 % (drvl 8.96 2.04 0.39 RATA Extractive 4/16/20 @Mostardi Platt v5.0 160 of 199 Client: PacifiCorp Faclllty: Gadsby Power Plant Proiect#: M243506 Test Locatlon: Unit 3 Datoi 8127124 Post g/Pre l0 NOx oomvd O2olc (dwl 1.08 z 10.3729.76 1.7692.48 m -0.07 Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 CO2 % (drv)m 8.91 m 2.09z 0.42 z Time 10:55 10:56 10:57 Poct l0 NOx pomvd 02 % (drv) CO2 % (drv) 1.23 z 10.42 m 8.99 m30.54 1.67 2.0192.41 m -0.06 z 0.44 z v5.0 161 of 199 RATA Extractive 4/16/20 @Mostardi Platt Cllont: PacifiCorp Faclllty: Gsdsby Power Plant Projcd f: M243506 To3t Locatlon: Unit 4 Dtlot U2812024 Oporrtor: C.Eldndge Box Truck: Probe Longth: Probe Typo: Ssmplo Plano: Port Longth: Port Slzs (diamoter): Port Typo: Duct Shape: Diemeter: Ouct Araa: Upatream Dlam€to6: Oomltream Dlamoterc: Numbor ol Ports Sempled: Numbsr of Polnts par Port: Total Numbor of Traverce Polnts: Mostardi Platt Project No. M243506 Unit I, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 BT,I3 12.0 Enractive Horizontal 8 4 FIange Circular 12 1 13.10 04 63 1 3 3 lncho3 23.75 86.74 t I I I I T I I I I T I I I I I T T I in. ln. n Sq. Ft. Polnt Mrrklngr (lncludlng port length): Polnt # 1 2 3 Minimum Upstream Distance Minimum Downstream Oislan@ ldeal Upstream Distanc€ ldeal Downstream Distance 6.0 Feet 24.0 Feet 24.0 Feel 96.0 Feet v5.0 162 of 199 RATA Extraclive 4/1 6/20 @Mostardi Platt Calibration Gases Typo Sonlng Cyllndor lD Cyllndor Value Analyzar Rssoonso Oltrsronce, % ot Span Drto qyilnqer a or rugrl cYllndsr NOr ppmvd tlo FBOO91 1 a8 o {.01 o 1104 21512029 d cc262396 5 00d 495 o Aoor StaDi)6 55 500* Hlqn LLt t5ZE I 9.01/9.02 4 030li'5t1512026 02 % (dry) 2etd 0 010 444%215t2029 10 51 to 53 r ogo*419t2032 6.570/a rh TBUUAA9OU 22 57 2? 55 O 090/6 419) DOa) CO ppmvd zafo IBUI4U992 0 ooa { aoo6 419t2032 Mtd E80091 188 4 aga 5.U0 2t5t2029 4a aa% Hldh FBOOO7f35 10 0)10.04 4.20%10t2t2031 T.rt Loquon: Unil ,a O,nai 8ngn1 Op.nton C.EldridgoPFI.ct ,: M2,t3506 02 % Comctlon: l5 ClLrt: PacifCorp Faclllty: Gad3by Powcr Plant Furl TtD.: Nalural Gas Full Frcton 8710 Dllu.nt: 02 % c.llbntlon comd.d D.l. Run I Run D.to 31.il Tlfr.End Tlm. NOr Ppmvd NOr ppmvd e 15% 02 O2'h ldryl CO ppmvd CO ppmvd @1s%02 oz btxd NOx Hart lnput,NOx lblhr co tbrhr at2al21 o9 11 Its 16 J lu t.539 7:59 1.7 1 Ug tl 16 3 IJ Ulu t.B6 3.1 it I I 7 U,6 t.u 2.305 0.59 lu:zl 10r,11 I t'03 123 oa l.u U,U 1 ]U U,O t.l 0.011 = avrdge value of test Cm=Avcrage Prc and Post Span C{as = CotrKted gas value of test Moslardi Plstt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 RATA Extractivo 4/16/20 @Mostardi Platt v50 163 of 199 Client: PacifiCorp Facility: Gadsby Power Plant Test Location: Unit 4 Date: 8128124 Project #: M243506 Linearity Cal/Pre I Cal 02% ldrvl 0.04 14.04 22.40 22.51 22.55 8.34 0.01 0.01ah 0.00 0.04 0.10iz 0.10 8.24 10.54 10.53 3.18 o.14 0.14 0.13im 0.13 z 0.15 8.34 10.40 '10.43 5.64 0.18 0.18m 0.16 5:49 5:50 5:51 5:52 5:53 5:54 5:55 5:56 5:57 5:58 5:59 6:00 6:01 6:02 6:03 6:04 6:05 6:06 6:16 6:17 6:18 6:19 6:20 6:21 6:22 6:23 I T t T t t I I T I I I I T I I I I t 0.37m 0.11 z 0.08 0.18 0.17 0.19 Time 5:47 5:48 NOx ppmvd -0.01 -0.01 -0.01 -0.01 -0.01 2.84 '11.65 9.58 9.02 7.36 -0.01 -0.01 -0.01 -0.01 -0.01 2.80 1 0.55 7.84 6.27 4.95 -0.01 -0.01 -0.01 -0.01 0.69 4.03 4.53 4.99 CO ppmvd 10.04 8.66 1.14 0.02 0.00 0.02 0.11 0.17 0.17 0.48 3.27 5.00 3.90 0.45 0.08 0.09 0.18 0.19 0.20 0.20 4.93 3.72 Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 v5.0 1&4 of 199 RATA Extractiv e 4 I 1 6 120 @Mostardi Platt I T I t I I I T I t I I I T t T T I T Client: PacifCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 4 Oale2 8128124 Time 6:58 6:59 7:00 7:O1 7:02 7:O3 7:04 Time 8:02 8:03 8:04 8:05 8:06 8:07 8:08 Post l/Pro 2 NOx oomvd O2o/o (dwl -0.01 z 0.09-0.01 9.13-0.01 '10.55 -0.01 10.55 2.44 1.49 4.96 0.09 4.98 m 0.22 Post 3/Pre 4 NOx opmvd O2o/o (dwl -0.01 z 0.08-0.01 8.82-0.01 10.52-0.01 10.53 1.35 1.93 4.79 0.21 4.79 m 0 22 Time NOx oomvd7:30 -0.017:31 -0.01 7.32 -0.01 7:33 -0.01 7:34 1.337:35 4.807:36 4 80 Time NOr pomvd 8:35 -0 01 8:36 -0.0'l 8:37 -0.018:38 -0.018:39 1.518:40 4.758:41 4.89 Post ZPre 3 O2o/o (drul z 0.09 8.5'l 10.54 10.55 2.O2 0.tIm O.22 Post 4/Pre 5 02 % (drv) z 0.08 9.1 5 10.50 10.51 1.89 0.19m 0.21 CO oomvd 5.09 3.59 0.30 0.1 1 0.'l 1 0.20 0.24 CO oomvd 5.08 3.63 034 0.1 1 0.1 3 0.21 0.26 CO oomvd 5.07 3.84 0.40 0.12 0.1 1 0.21 0.29 CO oomvd 5.02 3.58 0.33 0.09 0.11 o.20 0.25 Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 v5.0 165 of 199 RATA Extractive 4/16/20 @Mostardi Platt Client: PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 4 Dale: 8128124 I T I I I I I T I I I I I I I I I I t Time 9:07 9:08 9:09 9: l0 9:1 'l 9:12 9:13 Time 1O:12 10: 13 1 0:14 10: 15 1 0:16 1O:17 10: 18 CO pomvd 5.12 3.57 0.32 0.t0 0.13 0.20 0.25 CO oomvd 5.04 3.56 0.35 0.1 'l 0.1 5 0.21 025 CO oomvd 5.06 3.70 0.39 0.1 1 0.12 0.22 0.28 CO oomvd 5.11 3.76 0.35 0.'10 0.'13 0.20 0.26 Post s/Pre 6 NOx oomvd O2o/o (drvl -0.01 z 0.06-0.01 9.17 -0 01 10 47 -0 01 10 481.54 1.334.59 0.054.90 m 0.05 Post 7/Pre 8 NOx oomvd O2o/o (dw\ -0.01 z O.O4 -0 01 9.08-0.01 10 44-0.01 10.451.74 0.984.60 0. 10 4.91 m 0.18 Time NOx oomvd9:40 -0.01 9:41 -0.01 9.42 -0.01 9:43 -0.01 9:44 2.069:45 4.609:46 4.93 Time NOx oomvd10:44 -0,01 10:45 -0.01 10:46 -0.01 10:47 -0 0110:48 I .89 10:49 4.60 10:50 4.90 Post 6/Pre 7 02% 1drulz 0.05 8.72 10.46 10.46 0.61 0.04m 0.04 Post 8/Pre 9 O2o/o Gwlz 0.04 8.63 10.43 '10.43 0.86 016m 0.18 v5.0 166 of '199 RATA Extractive 4/16/20 @Mostardi Plaft Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 T T t I T T T T I I I I I I T T T I I Cll.nl: P.ciicoe Fellky: G.drby Pw.r Pl.nt Pnold t: M243ffi Tdl.dlo: Unn4 Ofri 8n8n4 Pod e/PE 10lgl-crE:d 92.!UCu){01 t 002 ! Pd lmm 1l IiEr MlrrrEIC 02 T ldnr lglloxt1158 -001 . 002 z 495 m1159 401 8S 35S12:00 0 00 10 39 0 341201 { 01 10 40 m 0.00 {01{010m 205 4.60 905 10 40 CO omvd5.02 m 347o32000 t 014 023 026 Pd il 02 r ldNr glrr@tl r 007 : 488 m10.21 2.46 10 39 0211039 m 010 r266 014015 022m 015 026 12:02 2.og12:03 4.60 1.15 o171204 4m m 017 0.1 3 0.23o2a v5.0 167 of 199 RATA E*r.tu.4/16120 @Mostardi PlaftProject No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Cllent: PacifiCorp Faclllty: Gadsby Power Plant Proloct #: M243506 Test Loc.tlon: Unit 5 Dtlot 812812024 Oporator: C Eldridge Box Truck: Probe Longth: Prob€ Typo: S.mple Plano: Port Lsngth: Port Slze (dlrmetor): Port Typo: Duct Sh.p€: Dlrmster: Duct Are!: Upstroam Dlamoto6: Domstrorm DlamotoB: Numbor ot Port3 Sampled: Numbor ot Polnts psr Port: Total Numbsr of TravoEo Polnt3: Mostardi Platt Project No. M243506 Unit 'l , Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 BTl 3 14.0 Extractivo Horizontal 4 Flang6 Circular 12 113 10 04 6.3 lnchoa 23.75 55 24 86.74 I T I I I I I T t T I T I t I T T I T in. ln. 1 3 3 Polnt Mlrklngs (lncludlng port longth): ft Sq. Ft. Polnt I ,| 2 3 Minimum Upstream Distance Minamum Domstr€am Distane ldoal Upstr€am Distane ldoal Downstream Distanc€ 6.0 Feet 24.0 Feel 24.0 Foet 96.0 Feet v5.0 168 of 199 RATA Extractive 4/1 6/20 @Mostardi Platt I T t I I I I T t T I I I T T T T I I Cll.nl: PacifiCorp Frclllty: Gadlby Powcr Plant Fu.l Typ.: Natural Gas Fu.l Frcton E710 Ollucil: 02 % Tlrt Locrllon: Unil 5ott , 8128124 Op.nton C.Eldridg6 Prel.c-t ,: M2,13506 02 % Comctlor: 15 cma = ffismMorGr@s Cm=Avcrage Prc and Post Span C = Avgaqe valuc of test Cgas = ConEtrd gas value of tcst Moslardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 v5.0 169 of 199 RATA Extractivc 4/1 6/20 @Mostardi Platt PE Po* zem I 5 0(x ,4.99 -l I I 0.00 ia 89 0.00 a I U o 0.o0 0.00 a9 000 4.89 U 00 JI 078 0.00 n om 4.89 o rl uw u.w 90 4.90 2.42 11 0.c m o UU Plel 1 t6 0.37 t6.08 15.,( ]U 0.l6 1 3 U4U 0.o0 t0 5t l0.l tn /-ug 5 l3 IU 048 t6 08 16.2 0.09 0.13 11 ts t0 5l 10 ln tt UU UJ5 054 t6 16. 10 55 0 t .U ll 11 10.51 t l3 l6 004 -0.os -0.58 0.00 Run #n U'S Sdn as Soan Drift a Eca 016 i -tm o 2 4.898 o2u -0 80 0.10 a u 14 499 -o ln 500 0.14 17 oao o20 0 a ,0.70 0.15 o60 l@ -u.ru 016 1,8 i|.93 4.S 020 U l0 120 0.t0 -0.50 a a u 16 016 0 crllbntlon coftctad Data Run I Run D.la Sun llm.End Tlm. NOr ppmvd NOx ppmvd e 15% 02 02%(d.yl CO ppmvd cO ppmvd e 1516 02 02 baaad NOx lbrmmBtu H.rt lnput,NOx lbrhr co tb,hr I 6:J5 6155 2 l5 a la I u1l J lll t.l u I lc t.9 0.012 1L 6:J2 I l6 u ulJ 02 3.0 't6 I I ta l0 al 1,J 013 t3 t:J5 16 lb U UI2 Client: PacifiCorp Facility: Gadsby Power Plant Test Location: Unit 5 Date: 8128124 Project#: M243506 Linearity Cal/Pre 1 Cal I T T T T I t t I T t I I I T T I T I ih Time 5:47 5:48 5:49 5:50 5:51 5:52 5:53 5:54 5:55 5:56 5:57 5:58 5:59 6:00 6:01 6:02 6:03 6:04 6:05 6:06 6:16 6:17 6:18 6:19 6:20 6:21 6:22 6:23 02% (dll 0.06 13.53 22.57 22.60 22.61 9.04 0.08 0.07 0.06 0.10 0.05 0.06 9.76 10.55 10.54 3.47 0.06 0.05 0.05 0.04 0.08 3.75 10.38 10.42 10.39 0.53 0.34 0.32 NOx ppmvd 0.01 0.01 0.00 0.00 0.01 1.20 12.73 9.288.88 ih 6.88 0.210.00 iz 0.00 0.00 0.00 22.94 17.86 8.09 5.204.96 im 0.00 0.00 0.00 0.00 0.00 1.80 4.56 4.99 CO pomvd 10.07 8.63 1.12 -0.14 -0.06 0.03 0.31 0.39 0.39 1.43 5.05 5.08 3.8s 0.31 0.'11 0.17 0.35 0.38 0.37 0.37 5.07 4.91 1.18 0.16 0.28 0.25 0.40 0.41 MostardiPlatt Projecl No. M243506 Unit 1. Unit 2. Unit 3. Unit 4, Unit 5. and Unit 6 v5.0 170 of 199 RATA Extraclive 4 I 1 6120 OMostardi Platt Time 6:58 6:59 7:00 7:01 7:O2 7:03 7:04 Time 8:02 8:03 8:04 8:05 8:06 8:07 8:08 I T I t T I t T I I I I I I I T T T T Client PacifCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 5 Datet 8128124 Post 1/Pre 2 NOx opmvd O2o/o (drvl 0.00 z 0.160.00 5.260.00 10.300.00 10.320.35 5.784.42 0.104.89 m 0.06 Post 3/Pre 4 NOx oomvd 02 % (drvl 0.00 z 0.090.00 5.94-0.01 10 41-0.01 10.450.46 4.6'l4.35 0.084.89 m 0.05 Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 CO oomvd 4.97 4.60 0.78 0. 18 0.17 0.34 0.42 CO oomvd 4.98 4.42 0.63 0.14 0.17 0.35 0.40 Time NOx opmvd7:30 0.00 7 31 -0.01 7.32 0.007:33 -0.0'l 7:34 0.317:35 4.02 7:36 4,89 Time NOx pomvd 8:35 0.008:36 0.008:37 0.00 8:38 0.00 8:39 0.45 8:40 4.12 8:41 4.89 Post 2/Pre 3 02olo ldrtlz O.17 3.85 10.43 10.45 5.78 0.1 1 m 0.07 Post 4/Pre 5 O2oh (dwl z 0.09 5.99 10.42 10.45 4.84 0.07 m 0.05 CO oomvd 4.99 4.86 1.20 0. 19 0.16 0.33 0.41 CO oomvd 5.00 4.41 0.62 0. 16 0. 17 0.36 0.40 v5.0 171 of 199 RATA Extractive 4/1 6/20 OMostardi Plaft t TClient: PacifiCorp Facility: Gadsby Power Planl Project#: M243506 ITest Location: Unit 5 Datoi 8128124 Time 9:07 9:08 9:09 9:10 9:1 | 9:12 9:1 3 Time 10:12 10:13 10:14 10:15 10:16 10:17 10:18 Post s/Pro 6 NOx oomvd 02%/druI0.00 z O.O70.00 4.570.00 10.390.00 10.43o.12 5.743.76 0.094.89 m 0.05 Post 7/Pre 8 NOx ppmvd O2 % (drvl0.00 z O.110.00 6.370.00 10.550.00 10.57 0.1 3 5.293.75 0.194.89 m 0.13 Time NOx oomvd9:40 0.009:41 0.009:42 0.009:43 0.00 9:44 0.36 9:45 4.03 9:46 4.89 Time NOx oomvd10.44 0.00 10.45 0.00 10:46 0.00 10 47 0.0010:48 0.0910:49 3.9010:50 4.89 Post G/Pre 7 02% ldw\z 0.13 6.0'l 10.49 10.52 4.89 0.13 m 0.12 Post 8/Pre 9 O2o/o (dw\ z 0.19 5.46 10.55 10.57 5.17 0.16 m 0.11 CO oomvd 4.93 4.71 0.93 0.17 0. 16 0.34 0.40 CO opmvd 4.98 4.39 0.63 0.14 0.16 0.34 0.41 CO oomvd 4.99 4.47 0.67 0. 15 0. 't6 0.33 0.41 CO oomvd 4.93 4.62 0.85 0. 16 0, 16 0.33 0.40 I I T t I T t T T I T I T T I I v5.0 172 ol 199 RATA Extractive 4/1 6/20 OMostardi Platt Mostardi Platt Project No. M243506 Unit 'l, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 T I Client: PacifiCorp Facility: Gadsby Power Plant I Project#: M243506I t""t t'"11",1, u',1'1,10 I rime !.9.rrrrc'*tt&"Ji* co oomvd rime Nox pomvd '""tlf.rii;'J, co oomvd I 11.26 o.oo z 0.12 z 4.9s m 't I:58 0.00 z 0.19 z 4.96 m11:27 0.00 5.17 4.65 11:59 0.00 4.91 4.73 11:28 0.00 10.56 0.9'l 12:00 0.00 10.52 0.97 - 1i:29 0.00 10.59 m 0.16 z 1201 0.00 10.55 m 0.16 zI lir? ilB r ?? B I 13',zz ilt, i?l z:lt, 11 .32 4.90 m 0. 1 1 O.41 12:04 4.89 m 0.15 0.40 I p- ry'o'!ir,-"*' , ry m12:31 0.00 6.35 4.37 - 12.32 0.00 '10.53 0.65I ',i;21 BB? ::,T m Bl3 z 12:35 3.32 0.19 0.31 I 12:36 48e m 001 040 I t T I T T I T t I Mostardi Platt Proiect No. M243506 I unii t, unit 2, unit 3, unit 4, unit 5, and Unit 6 v5.0 173 of 199 RATA Extractive 4/1 6/20 @Mostardi Platt Cllent: PaotlCorp Faclllty: Gadsby Pow€r Plant Proloct #: M243506 T6rt Locrtlon: Unit 6 Delc 812912024 Oparator: C.Eldridge Bor Truck: Probo Longth: Probe Typo: Sample Plrne: Pori Length: Port Slze (dlamcter): Port Typs: Duct Sh.ps: Dlamotor: Duct Aror: Upstroam Dlametero: Dom3troam DlametoE: Number of Ports Sampl6d: Numbor of PolnE per Port: Total Number ol Trlver3o Polnts: Mostardi Platt Project No. M243506 Unit 'l , Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 BT1 3 80 Extractive Horizontal 12 4 Flange Ciralar 12 '1 13 10 04 63 lncho3 27.75 59.24 90.74 tt ln. ln. Polnt Merklngs (lncludlng port longth): I I I T T T T t I T T T I I t T I T T Polnt il '1 2 3 1 3 3 ft Sq. Ft. Minimum UpstrBam Distance Minimum Domslream Distan@ ldeal Upstream Distane ldeal Downstream Distanco 6.0 Feel 24 0 Feel 24 0 Feel 96.0 Feel v5.0 174 of 199 RATA Extractive 4/16/20 @Mostardi Platt Calibration Gases Tvp6 Settlng Cyllndor lD Cyllndsr Valu6 Andyzar Rcsoonse Dlflercnco, % of Sptn ErPtaa(0n Date Mld cyllnder % or hrgh cvllnder NOx ppmvd Zoro ccl 16370 0 000 0 00%at2at2031 Mtd 2396 5.004 5.15 1 620A 31312026 55.50% Hldh D5)47 I Ot7 495 o Tloa 5t15t20?6 02 % (dry) zorc LLI I6J/U o o.o3 -o 13%at2at2031 Mtd 140992 '10.51 '10.58 -0.3'l %4t9t2lJ32 46.570h Hloh 8900 22.57 22.59 4.09%412A2032 CO ppmvd Ze?o o o09 {) 9004 nED03) Mtd t 16370 4 974 495 o 2404 at2at2031 4S Hlon EbUUU/JJ6 10.02 9.9 /o.50sa 1rJt2t2031 I I crhnt: Pacincorp Flclllty: GEdsby Powsr Plant T.rt Locdlon: Unit 6Drr: 8/29/2/tOp.ntor: C.EldridgrPol.ci t: M243506 02 % Coreciloni t5 Fual TEr: Natural GasI Fu.l F.don 8710I Dilu.il: oz%t NOr oomvd Comdlon Datr I I 02 % lddl Comdlon D.h t T CO oofrvd Cotffilon O& ! T T I I T = CorcntratM of Cal Gas C = Avraoe valuc ot tcst Cm=Avcraqe Pr€ and Post Span Cgas = ConKted gas value of test I I T T T Mosl.rdi Plat Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 MTA ExtEciive,l/1€i/20 @Mostardi Platt T PE zErc t ,o o1 -0 01 1a a 01t 5UU -0 0t -0.01 I ooo J 5 fi)a t -o ot tt U 1 t ,0 0l t8 -0.33 It -0 0'l .0.01 -0.01 I 6 5 0(x t -u ll lt t 0 .U 17 0.1 m n ll 5U6 0.00 -0.01 o7a o33 { 11 9 -oo -o ol .o I u tl to .U UI .U UI "0.01 o11 noo PE zm rrc I <En Eir( I h^ I o t u 16 10 4t 't5.34 15.6 0.66 o I u43 10.12 o a 4 i l6 U.I J 10 I tu.{t u.rJ 0 6 at uw U IJ t ll 10.37 14.24 't6.6 111 lo I 0.33 t0.o I t6 u4 0 to 1 0 t5 0.18 i )t tMt Potul c I 12U -0 to -0.80 0.90 o17 o.12 0.'t 5 i 1.971 I o !1 I I .U ]U ll u11 ol 179 1.05 1.0 2.69 om 4.71 11 n tt !i I ?o om 6 4 a o 10 I ,U IU .u 7 a IU U ]U 162 1.04 1.0 3.69 oa -o 458 4.€o a la ll IU 'u.s4580.11 n il n ll om crllbntloh comdad orta Run a R!n orta $.d nm End nna NOx ppmvd NOr ppmvd e rs% 02 02 ?{ (dryl CO ppnvd CO ppmvd (,15%02 t{Ox lbrmmBtu tL.t lnput, MMBturhr NOr lbrhr co tbrhr 6:40 7 2 103 7.OA IJ U UU5 l.o 16.6 13 l6 I,U I,J 2 lq o 1 7 lb IU uw9 U-ET a 1U:g t.E 16.3tnta 10 !1 1 1',23 l.u I,J 2.255 0.76 v5.0 175 of 199 T IClient: PacifiCorp Facility: Gadsby Power Plant Test Location: Unit6? I vwer I rqrr( IDate:8129124 Project #: M243506 Linearity Cal/Pre 1 Cal Time 5:45 5:46 5:47 5:48 5:49 5:50 5:51 5:52 5:53 5:54 5:55 5:56 5:57 5:58 5:59 6:00 6:01 6:04 6:05 6:06 6:07 6:08 6:09 NOx oomvd 0.00 0.00 0.00 0.00 3.15 9.22 8.95 6.38 0.00 0.00 0.00 0.00 0.00 0.00 0.98 3.73 5.15 -0.01 -0.01 0.00 -0.01 1.54 5.20 02% Grvl 0.07 17.74 22.64 22.59 6.21 -0.01 -0.02 0.04 0.01 -0.05 0.03 8.90 10.58 10.58 2.89 0.17 0.16 -0.03 9.79 10.41 10.42 1.90 -0.05 CO ppmvd 9.97 7.75 0.71 0.02 0.03 0.10 0.17 0.44 3.19 4.05 4.95 3.79 0.34 0.09 0.09 0.18 0.24 4.92 3.10 0.21 0.08 0.10 0.21 lm I T T T I T T I I I T I I T T T Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 v5.0 176 of 199 RATA Extraclive 4116120 @Mostardi Platt m 2 T T T t T T T I t ! I I T I T I I T T Client: PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Test Location: Unit 6 Date: 8129124 Time NOx ppmvd 7:02 -0.017:03 -0.017.04 -0.017:05 2.977:06 5.08 Post l/Pre 2 O2olo (drvl z 0.12 10.39 10.38 0. 17m O.12 Post 3/Pre 4 02% |dwlz 0.10 9.86 10.42 10.42 0.80m 0.11 Time NOx oomvd7:30 -0.017:31 -0.017:32 -0.017:33 -0.0'l7:34 1.867:35 5.08 Time NOx oomvd8:29 -0.018:30 -0.018:31 -0.018:32 -0.018:33 1.988:34 5.03 Post ZPre 3 02olo (drvlz 0.24 9.73 10.42 '10.43 0.76m 0.10 Post 4/Pre 5 O2o/o {drulz 0.13 10.08 1 0.52 10.52 0.79m 0.12 Time 8:00 8:01 6:02 6:03 8:04 8:05 NOx oomvd -0.01 -0.01 -0.01 -0.01 1.93 5.05 CO pomvd 4.83 2.58 o.17 0.1 5 0.24 CO oomvd 4.89 3.29 0.27 0.1 1 0.14 0.22 CO oomvd 4.71 3.29 0.26 0.12 0.12 o.24 CO ppmvd 4.68 3. 15 o.22 0.1 1 0. 15 o.22 Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 v5.0 177 ot 199 RATA Extractive 4/1 6/20 @Mostardi Platt I TClient: PacifiCorp Facility: Gadsby Power Plant Project#: M243506 ITost Location: Unit 6 Date: 8129124 Post S/Pre 6 NOx opmvd O2olo (drvl-0.01 z 0.10-0.0'l 8.33-0.01 10.41-0.01 10.412.20 0.715.05 m 0.08 Post 7/Pre I NOx oomvd O2o/o (dryl0.00 z O.O7-0.01 9.71-0.01 10.33-0.01 10.332.38 0.715.05 m -0.02 Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 I T T I T T T T I T T I T T T t Time 8:58 8:59 9:00 9:01 9:02 9:03 Time 9:57 9:58 9:59 1 0:00 10:01 10:02 CO oomvd 4.71 3.83 0.35 0.1 1 0.1 0 0.22 CO ppmvd 4.58 321 026 0.09 0. 13 0.22 Time NOx pomvd9:27 -0.019.28 0.009:29 -0.019:30 -0.019:31 2.299.32 5.04 Time NOx pomvd10:27 -0.0110:28 -0.0110:29 0.0010:30 -0.0110:31 2.5810:32 5.08 Post 6/Pre 7 O2o/o (dsylz 0.13 9.87 10.42 10.41 0.8'lm 0.09 Post 8/Pre 9 02 % (drv)z 0.09 3.99 10.45 10.47 0.55m 0.28 CO oomvd 4.65 3.14 0.23 0. 10 0.1 1 o.22 CO oomvd 4.68 4.80 1.22 0.14 0. 13 0. 19 v5.0 178 of 199 RATA Extractive 4/16/20 @Mostardi Platt T I T I I I t T I T I T Client: PacifiCorp Facility: Gadsby Power Plant Project#: M243506 Tost Location: Unit 6 Da|c:8129124 Post g/Pre 10Time NOr oomvd O2o/o (dryl 10:56 -0.01 z 0.1910:57 0.00 9.5210:58 0.00 10.4610:59 -0.01 10.45I'l:00 2.78 0.63 1 'l:01 5.02 m -0.32 Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 CO opmvd 4.55 3.12 0.24 0.1 1 o.12 0.18 Time NOx pomvd 11:25 -0.0111:26 -0.0111:27 -0.0111:28 0.0311:29 2.86 1 1:30 5.09 Po3t 10 02 % (drvlz 0.16 9.77 10.48 10.47 0.76m -0.29 CO oomvd 4.58 3.t1 o.23 0.1 I 0.13 0.20 RATA Extractive 4/1 6/20 @Mostardi Platt T I t T T t v5.0 179 of '199 Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Appendix I - Calibration Gas Cylinder Data 180 of 199 @Mostardi Platt t T I I I I t T T I I T Airgas an Air Liquide company Airgas Specialty Gases Airgas USA LLC 12722 S. Wentworth Ave. Chicago, IL 6o628 Airgas.com Part Number: Cylinder Number: Laboratory: PGVP Number: Gas Code: 54402672299-1 144.0 CF 2015 PS|G 660 Mar 03, 2023 I Certification performed in accordance with 'EPA Traceability Prolocol for Assay and Certitication of Gaseous Calibration Standards (May 20121" document EPA 600/R-12/531, using the assay procedures listed. Analytical Methodology does not require correction for analytical interference. This cylinder has a total analytical uncertainty as stated below with a conlidence level of 95%. There are no significant impurities which affect the use of this calibration mixture. All concentrations are on a mole/mole basis unless otherwise noled. The results relate only to the items tested. The report shall not be reproduced except in full without approval of the laboratory. Do This Cylinder Triad Data Available Upon Reguest Sionalure on file I I t T I I Project No. tvtlPscved for Release Unit 'l , Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 CERTIFICATE OF ANALYSIS Grade of Product: EPA PROTOCOL STANDARI) E02Nt99E15A0088 cc262396 124 - Chicago (SAP) - lL 812023 NO,NOX,BALN Expiration Date: Reference Number: Cylinder Volume: Cylinder Pressure: Valve Outlet: Certification Date: Mar 03, 2026 Nol USe lnlS Uyllnoer Delow lUU pslg, l.e. U.// megapascalls. ANALYTICAL RESULTS Component Requested Concentration Actual Concentration Protoco! Total RelativeMethod Uncertainty Assay Dates NOX NITRIC OXIDE NITROGEN 5.000 PPM s.000 PPM Balance 5.010 PPM 5.004 PPM G1 G1 +l- 1.0o/o NIST Traceable +l- 1.1o/o NIST Traceable 021 24 I 2023, 03 t 03t 2023 02t 24t 2023, 03 t 03t 2023 CALIBRATION STANDARDS Type Lot lD Cylinder No Goncentration Uncertainty Expiration Date GM|S 080121328 KA1004296 APEX 1324267 5.07 PPM NITRIC OXIDSNITROGEN 5.OO PPM NITRIC OXIDE/NITROGEN +l- 0.9o/o +l- 0.9o/o +l- 0.9o/o P\pt 27,2024 Dec23,2022 Apr 27,2024 PRM 12401 GM|S 08012138 KA1004296 NOX 5.07 PPM NOX/NITROGEN The SRM. NTRM. PRM. or RGM noted above is only in reference to the GMIS used in the assay and not part of the analysis lnstrumenUMake/Mode! ANALYTICAL EQUIPMENT Analytical Principle Last Multipoint Calibration EC-1 Eco Physics nCLD 8445 844n0131 NO EC-l Eco Phvsics nCLD 8445 844n0131 NOX Chemilluminescence Chemilluminescence Feb 09, 2023 Feb 09. 2023 181 of '199 @Mostardi Phlge ,t of I Airgas an Air Liquide company Airgas Specialty Gases Airgas USA LLC 525 North Industrial Loop Road Tooele, UT 84o74 Airgas.com I I t T I I I T I T T t T T t I I T t CERTIFICATE OF AI\IALYSIS Grade of Product: EPA PROTOCOL STAIYDARI) Part Number: E02N199E15A0131 Cylinder Number: CC725287Laboratory: 124 -Tooele (SAP) - UT PGVP Number: 872023 Gas Code: NO,NOX,BALN Reference Number: 153402735087-1 Cylinder Volume: 144.0 CF Cylinder Pressure: 2015 PSIG Valve Outlet: 660 Certification Date: May 15,2023 Expiration Date: Mav 15.2026 Certification performed in accordance with 'EPA Traceability Proiocol for Assay and Certiflcation of Gaseous Calibration Standards (May 20121' document EPA 600/R-12/531, using the assay procedures listed. Analytical Methodology does not require correclion for analytical interference. This cylinder has a total analytical uncerlainty as slated below with a conlidence level of 95%. There are no significant impurities which affecl lhe use of this calibration mixlure. All concenlrations are on a mole/mole basis unlass othenvise noted. The results relate only to the items tested. The report shall not be reproduced except in full without approval of the laboratory. Do Triad Data Available Upon Request Sionature on file Project No. tvt&pfooved for Release Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Not use Ihts below 100 osto. t.e ANALYTICAL RESULTS Component Requested Concentration Actual Concentration Protocol Tota! RelativeMethod Uncertainty Assay Dates NOX NITRIC OXIDE NITROGEN 9.000 PPM 9.000 PPM Balance 9.077 PPM 9.017 PPM G1 G1 +l- 1.Oo/o NIST Traceable +l- 1.1o/o NIST Traceable 0 5 t 08 I 2023. 0 5 I 1 5 t 2023 0 5 I 08 t 2023. 0 5 t I 5 t 2023 CALIBRATION STANDARDS Type Lot lD Cylinder No Concentration Uncertainty Expiration Date NTRM NTRM 160't0122 16010122 ND48023 ND48023-NOX 9.95 PPM NITRIC OXIDE/NITROGEN 9.95 PPM NOx/NITROGEN 1.0o/o 1.0o/o Jun 07, 2026 Jun 07, 2026 lnstrumenUMake/Model ANALYTICAL EQUIPMENT Analytical Principle Last Multipoint Calibration Thermo 42i-LS 1123749327 NO Thermo 42i-LS 1123749327 NOx Chemiluminescence (Mason) Chemiluminescence (Mason) May 03, 2023 May 03, 2023 182 of 199 @Mostardi Phlge 1 of I I T I Airgas Airgas Specialty Gases Airgas USA LLC 525 North Industrial toop Road Tooele, UT 84o74 Airgas.com an Air Liquido company CERTIFICATE OF ANALYSIS Grade of Product: EPA PROTOCOL STANDARI)I Part Number: Cylinder Number: Laboratory: PGVP Number: Gas Code: E02Nt99E15A3576 EB0142043 124 -Tooele (SAP) - UT 872024 NO,NOX,BALN Reference Number: Cylinder Volume: Cylinder Pressure: Valve Outlet: Certification Date: 1 53-40301 5445-1 144.0 CF 2015 PS|G 660 Apr 23,2024t I I T I Expiration Date: Apr 23,2032 Certification performed in accordance with 'EPA Traceability Protocol for Assay and Certification of Gaseous Calibration Standards (May 2012)' documenl EPA 600/R-1 2/531 , using the assay procedures listed. Analytical Methodology does not require correction for analytical interference. This cylinder has a total analytical uncertainty as stated below with a conlidence level of 95%. There are no significant impurities which affect the use of this calibration mixture. All concentrations are on a mole/mole basis unless otheMise noted. The results relate only to the items tested. The report shall not be reproduced except in full without approval of the laboratory. Do Not Use This Cylinder below 100 psig, i.e. 0.7 T t T Triad Data Available Upon RequestI T I T I T I Sianafrrre on file Project No. MABFOved for Release Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 ANALYTICAL RESULTS Actual Protoco! Total Relative NOX NITRIC OXIDE NITROGEN 90.00 PPM 90.00 PPM Balance 90.32 PPM 90.32 PPM G1 G1 +l- 0.5o/o NIST Traceable +l- 0,5o/o NIST Traceable 04t 1 6t2024, 04t23t2024 04t 1 6t2024, 04t23t2024 CALIBRATI ON STAIYDARDS No Concentration 0.4o/o 0.3% 1.60/0 1.5% Apr 25, 2031 Feb 28,2025 Feb 17,2026 Feb '17,2023 GM|S 2023c/'25I PRM 12414 GM|S 1s31022022103PRM 12409 98.40 PPM NITRIC OXIDE/NITROGEN 100.19 PPM NITRIC OXIDE/NITROGEN 4.914 PPM NITROGEN DIOXIDE/NITROGEN 15.01 PPM NITROGEN DIOXIDE/AIR cc754372 APE1514048 cc51 7868 D91 3660 The SRM, NTRM, PRM, or RGM noted above is only in reference to the GMIS used in the assay and not parl of lhe ANALYTICAL EQUIPMENT lnstrumenUMake/Model Analytical Principle Last Multipoint Calibration Nicolet iS50 AUP2010228 NO LNO Apr 10,2024 Apr 10,2024Nicolet iS50 AUP2010228 NO2 i FTIR FTIR NO2 183 of 199 @Mostardi PFlge 1 of f CERTIFICATE OF ANIALYSIS Grade of Product: EPA PROTOCOL STANDARI) E02Nt99E15A0076 cc257347 124 - Tooele (SAP)- UT 872021 NO,NOX,BALN Airgas an Air Liquide company Airgas Specialty Gases Airgas USA LLC 525 North Industrial t oop Road Tooele, UT 84o74 Airgas.com I T I T I I T T T I T I t I I T T T I Part Number: Cylinder Number: Laboratory: PGVP Number: Gas Code: Reference Number: Cylinder Volume: Cylinder Pressure: Valve Outlet: Certification Date: 153402189195-1 144.4 CF 2015 PS|G 660 Aug 23,2021 Expiration Date: Auq 23.2029 Certification performed in accordance wiih "EPA Traceability Protocol for Assay and Certification of Gaseous Calibration Standards (May 20121" document EPA 600/R-1 2/531 , using the assay procedures listed. Analytical Methodology does nol require correction for analytical interference. This cylinder has a total analytical uncertainty as stated below with a conlidence level of 95%. There are no significant impurities which affect the use of this calibration mixlure. All concentrations are on a Triad Data Available Upon Request Sionature on file Project No. ruApFoved for Release Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 mole/mole basis unless otherwise noted ANALYTICAL RESULTS Actual Protocol Total Relative Concentration Method Uncertainty Assay Dates Component Requested Concentration NOX NITRIC OXIDE NITROGEN 180.0 PPM 180.0 PPM Balance 183.3 PPM 183.2 PPM G1 G1 +l- 0.9o/o NIST Traceable +l- 0.9o/o NIST Traceable 08t 1 6t2021, 08t23t 2021 08t 1 6t2021. 08t23t2021 CALIBRATION STANDARDS Type Lot lD Cylinder No Concentration Uncertainty Expiration Date 0.8olo 2.0o/o 2.1o/o Oct 19,2026 Feb 20,2020 Feb 01, 2023 NTRM 20060332PRM 12386GMIS 401648675'102 EBO1 13126 250.3 PPM NITRIC OXIDE/NITROGEN D685025 9.91 PPM NITROGEN DIOXIDE/AIR CC5OO959 5.074 PPM NITROGEN DIOXIDE/NITROGEN The SRM, PRM or RGM noted above is only in reference to the GMIS used in the assay and not part of the analysis. ANALYTICAL EQUIPMENT lnstrumenUMake/Model Analytical Principle Last Multipoint Calibration Jul29,2021 Jul 29, 2021 Nicolet iS50 AUP2'l'10269 NO MNO Nicolet iS50 AUP2110269 NO2 impuritv FTIR FTIR NO2 impuritv 184 of "199 OMostardi Phlge 1 of 1 I t I I t ! t T I t T I I T I I t Airgas an Air Liquido company Part Number: Cylinder Number: Laboratory: PGVP Number: Gas Code: Airgas Specialty Gases Airgas USA LLC 52S North Industrial Loop Road Tooele, UT 84o74 Airgas.com Reference Number: Cylinder Volume: Cylinder Pressure: Valve Outlet: Certification Date: 1s3402949569-1 87.0 CF 2214PSIG 590 Jan 29,2024 Expiration Date: Jan 29,2032 Certification performed in acc,ordance with 'EPA Traceability Protocol for Assay and Certification of Gaseous Calibration Standards (May 2012)'document EPA 600/R-12/531, using the assay procedures listed. Analytical Methodology does nol require correclion for analytical interferenc,e. This cylinder has a total analytical uncerlainty as stated below with a confidence level of 95%. There are no significanl impurities which affect the use of this calibralion mixture. All concentrations are on a mole/mole basis unless otheMise noted. The resulls relate only to the ilems tested. The report shall not be reproduced except in full without approval of the laboratory. Do Not Use This Cylinder below 100 psig, i.e. 0.7 Triad Data Available Upon Request Sionaiure on fileT I Project No. naApfuoved for Release Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 CERTIFICATE OF ANALYSIS Grade of Product: EPA PROTOCOL STANDARD E03Nt80E8047767 115961 0 124 - Tooele (SAP) - UT 872024 c02,02,BALN ANALYTICAL RESULTS Component Requested Actual Protocol Total Relative CARBON DIOXIDE OXYGEN NITROGEN +l- 0.7o/o NIST Traceable +l- 0.5o/o NIST Traceable '10.00 % 10.00 % Balance 9.912 o/o 9.891 o/o G1 G1 01t29t2024 01t29t2024 CALIBRATION STANDARDS Lot lD Cylinder No Concentration 1306041 1 I 1 060604 7.489 O/O CARBON DIOXIDE/NITROGEN 1 4.93 O/O OXYGEN/N ITROGEN 0.6olo 0.20/o NTRM NTRM cc41 3s37 cc338173 May'14,2025 Nov 02, 2028 ANALYTICAL EQUIPMENT Analytical Principle Horiba VIA-S10 SV4MEUTJ CO2 Horiba MPA-5'10 W603MM58 02 Jan 10,2024 Jan '10,2024 185 of '199 @Mostardi PFlge 1 of t Aitgas an Air Liquide company Airgas Specialty Gases Airgas USA LLC S2S North Industrial Loop Road Tooele, UT 84o74 Airgas.com I I I T I I I T T T I T T I t T T T T CERTIFICATE OF AIVALYSIS Grade of Product: EPA PROTOCOL STANDARD Part Number: E03N159E15A3452 Cylinder Number: E80088900Laboratory: 124 -Tooele (SAP) - UT PGVP Number: 872024 Gas Code: CO2,O2,BALN Expiration Date: Reference Number: 153-403021556-1 Cylinder Volume: 159.0 CF Cylinder Pressure: 2015 PSIG Valve Outlet: 590 Certification Date: Apr 22,2024 Aor 22.2032 Certirication performed in accordance with "EPA Traceability Protocol for Assay and Certification of Gaseous Calibration Standards (May 20 12)' document EPA 600/R-'l 2/531 , using the assay procedures listed. Analylical Methodology does not require correction for analytical interference. This cylinder has a total analytical uncertainty as stated below with a confidence level of 95%. There are no significant impurities which affect the use of this calibration mixture. All concenlrations are on a mole/mole basis unless otheMise noted. The resulls relate only to the items tested. The report shall not be reproduced except in full without approval of the laboratory. Do Not Use This Cylinder Triad Data Available Upon Request Sianalrrra an file Project No. MABF@ved for Release Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 ANALYTICAL RESULTS Component Requested Concentration Actua! Concentration Protocol Total RelativeMethod Uncertainty Assay Dates CARBON DIOXIDE OXYGEN NITROGEN 19.00 % 22.0Q o/o Balance 18.45 o/o 22.57 o/o G1 G1 +l- 1.0o/o NIST Traceable +l- 0.5o/o NIST Traceable 04t22t2024 04t22t2024 CALIBRATION STANDARDS Type Lot lD Cylinder No Concentration Uncertainty Expiration Date NTRM NTRM 1 3060802 09061434 cc41 5397 cc282492 24.04 O/O CARBON DIOXIDE/NITROGEN 22.53 o/o OXYGEN/NITROGEN 0.6olo o.404 Dec 1 1, 2025 Mav 13,2025 lnstrumenUMake/Model ANALYTICAL EQUIPMENT Analytical Principle Last Multipoint Calibration Horiba VIA-S10 SV4MEUTJ CO2 Horiba MPA-510 W603MM58 02 CO2 NDIR (Dixon) 02 Paramagnetic (OIXON) Apr 03,2024 Apt 03,2024 186 of 199 OMostardi Phtge 1 of t I T I I t I I t t T t t I I I t Airgas an Air Liquide company Airgas Specialty Gases Airgas USA LLC 525 North Industrial loop Road Tooele, UT 84o74 Airgas.com Part Number: Cylinder Number: Laboratory: PGVP Number: Gas Code: Reference Number: Cylinder Volume: Cylinder Pressure: Valve Outlet: Certification Date: 153403015455-1 150.0 cF 201s PS|G 590 Apr 09,2024 I T I Expiration Date: Apr 09, 2032 Certification performed in accordance with "EPA Traceabilily Protocol for Assay and Certification of Gaseous Calibration Standards (May 2012)'docum6nt EPA 600/R-1 2/531 , using the assay procedures listed. Analytical Methodology does not require correclion for analytical interference. This cylinder has a total analytical uncertainty as stated below with a confidence level of 957o. There are no significant impurities which affect the use of this calibration mixture. All concentrations are on a mole/mole basis unless otherwise noted. The results relate only to the rtems tesled. The report shall not be reproduced excepl in full without approval of the laboratory. Do Triad Data Available Upon Request Sionature on file Project No. u*Bpoved for Release Unit 1. Unit 2. Unit 3. Unit 4. Unit 5. and Unit 6 CERTIFICATE OF ANALYSIS Grade of Product: EPA PROTOCOL STANDARI) E03Nt80E15A0015 EB0140992 124 - Tooele (SAP) - UT 872024 co2,02,BALN Not Use This Cylrnder below 100 r.e. 0. Component Requested Concentration ANALYTICAL RESULTS Actual ProtocolConcentration Method Total Relative Uncertainty Assay Dates CARBON DIOXIDE OXYGEN NITROGEN 9.000 o/o 10.50 % Balance 8.904 o/o 10.51 o/o G1 G1 +l- 0.7o/o NIST Traceable +l- 0.4o/o NIST Traceable 04t0912024 04t09t2024 CALIBRATION STANDARDS Type Lot lD Gylinder No Concentration Uncertainty Expiration Date NTRM 130604'l 1 'I 1060604 cc41 3537 cc3381 73 7.489 O/O CARBON DIOXIDE/NITROGEN 1 4.93 O/O OXYGEN/N ITROGEN 0.6olo 0.2o/o May 14,2025 Nov 02. 2028NTRM lnstrumenUMake/Model ANALYIICAL EQUIPMENT Analytica! Principle Last Multipoint Calibration Horiba VIA-S10 SV4MEUTJ CO2 Horiba MPA-510 W603MM58 02 CO2 NDIR (Dixon) 02 Paramaqnetic (DIXON) Apr 03,2024 Aot 03.2024 187 of 199 OMostardi Ph8ge { of I CERTIFICATE OF AI\IALYSIS Grade of Product: EPA PROTOCOL STANDARI) E02Nt99E15A3166 E80091 188 124 - Tooele (SAP) - UT 872021 CO,BALN Aitgas an Air Liquide company Part Number: Cylinder Number: Laboratory: PGVP Number: Gas Code: Airgas Specialty Gases Airgas USA LLC 525 North Industrial toop Road Tooele, UT 84074 Airgas.com t I T T t I I T T T I t T I t T T T I Reference Number: Cylinder Volume: Cylinder Pressure: Valve Outlet: Certification Date: 153402022557-1 144.3 CF 2015 PS|G 350 Feb 05,2021 Expiration Date: Feb 05. 2029 Certification performed in accordance with 'EPA Traceability Protocol for Assay and Cerlificalion of Gaseous Calibration Standards (May 2012)' document EPA 600/R-1 2/531 , using the assay procedures listed. Analytical Methodology does not require correclion for analytical interference. This cylinder has a total analytical uncertainty as stated below with a confidence level of 950/o. There are no signiflcant impurities which affect the use of this calibration mixture. All concentralions are on a mole/mole basis unless othenrvise noted. The resulis relate only to the items tested. The report shall not be reproduced except in full without approval of the laboratory. Do Triad Data Available Upon Request Sionature on file Proiect No. lvtApsoved for Release Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Not Use I hrs Cylrnder below '100 t.e Component ANALYTICAL RESULTS Actual Concentration Protocol Total RelativeMethod Uncertainty Requested Concentration Assay Dates CARBON MONOXIDE 5.000 PPM 4.898 PPM G1 +l- 0.8o/o NIST Traceable 0210512021 NITROGEN Balance CALIBRATION STANDARDS Type Lot lD Cylinder No Concentration Uncertainty Expiration Date NTRM 0801 1 130 KA1004049 9.855 PPM CARBON MONOXIDE/NITROGEN 0.5o/o Jun 05, 2024 lnstrumenUMake/Model Last Multipoint Calibration ANALYTICAL EQUIPMENT Analytical Principle Thermo 48|-TLE 1'163640031 CO Feb 0'1. 2021CO NDIR (Mason) 188 of 199 OMostardi PFlge 1 of 1 t I T I t t I T I T I I I I t I T T I Airgas an Air Liquide company Airgas Specialty Gases Airgas USA LLC 525 North Industrial toop Road Tooele, UT 84o74 Airgas.com Part Number: Cylinder Number: Laboratory: PGVP Number: Gas Code: 153402826198-1 144.0 CF 2015 PS|G 350 Aug 28,2023 Certification performed in accordance with "EPA Traceability Protocol for Assay and Cerlilication of Gaseous Calibration Standards (May 2012)" document EPA 600/R-1 2/531 , using the assay procedures listed. Analytical Methodology does not require correclion for analytical interference. This cylinder has a total analytical uncertainiy as staled below with a confidence level of 95%. There are no significant impurilies which affec't the use of lhis calibration mixture. All concentrations are on a mole/mole basis unless otheMise noted. The results relate only to the ilems tested. The report shall not be reproduced except in full without approval of the laboratory. Do Nol Use This below 100 osio. i.e. 0.7 Triad Data Available Upon Request Sianahrra on fila Project No. tuAppcved for Release Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 CERTIFICATE OF AIYALYSIS Grade of Product: EPA PROTOCOL STANDARI) E02Nt99E15A3166 cc116370 124 - Tooele (SAP) - UT 872023 CO,BALN Expiration Date: Reference Number: Cylinder Volume: Cylinder Pressure: Valve Outlet: Certification Date: Auq 28.2031 Protocol Total RelativeMethod Uncertainty CARBON MONOXIDE 5.000 PPM 4.974 PPM G1 +l- 1.2o/o NIST Traceable 0812812023 NITROGEN Balance CALIBRATION STANDARDS No Concentration NTRM 12062802 CC365313 9.82 PPM CARBON MONOXIDE/NITROGEN 1.0o/o Feb 12,2024 ANALYTICAL EQUIPMENT Thermo 48I-TLE 1'163640031 CO CO NDIR (Mason) Aus 23,2023 189 of 199 @Mostardi PFlge I of t Airgas an Air Liquide company Airgas Specialty Gases Airgas USA LLC 525 North Industrial Loop Road Tooele, UT 84o74 Airgas.com CERTIFICATE OF AI\IALYSIS Grade of Product: EPA PROTOCOL STANDARI) I T I T T T I T I T T T I I I I t T I Part Number: E02N199E15A0310 Cylinder Number: E80007336Laboratory: 124 -Tooele (SAP) - UT PGVP Number: 872023 Gas Code: CO,BALN Expiration Date: Reference Number: 153402856708-1 Cylinder Volume: 144.0 CF Cylinder Pressure: 2015 PSIG Valve Outlet: 350 CertificationDate: Oct02,2023 Oct 02, 2031 Certification performed in accordance with "EPA Traceability Protocol for Assay and Certification of Gaseous Calibration Standards (May 2012)" document EPA 600/R-12/531. using the assay procedures listed. Analytical Methodology does not require correction for analytical interference. This cylinder has a lotal analytical uncerlainty as stated below with a conlidence level of 95%. There are no significant impurities which affect the use of this calibration mixture. All concentralions are on a mole/mole basis unless otheMise noted. The resulis relate only to the items tested. The report shall not be reproduced except in full without approval of the laboratory. Do Not Use This Cylinder below Triad Data Available Upon Request Sianafurra on fila Project No. tvtApsoved for Release Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 ANALYTICAL RESULTS Component Requested Concentration Actual Concentration Protocol Total RelativeMethod Uncertainty Assay Dates CARBON MONOXIDE 10.00 PPM 10.02 PPM Gl +l- 1.1o/o NIST Traceable '1010212023 NITROGEN Balance CALIBRATION STANDARDS Type Lot lD Cylinder No Concentration Uncertainty Expiration Date NTRM 12062802 CC365313 9.82 PPM CARBON MONOXIDE/NITROGEN 1.0o/o Feb'12,2024 lnstrumenUMake/Model ANALYTICAL EQUIPMENT Analytical Principle Last Multipoint Calibration Thermo 48|-TLE 1 16364003'l CO CO NDIR (Mason)Sep 21, 2023 '190 of 199 @Mostardi PFlge 1 of 1 I I t I I I I T t t t t I I I I I T I Airgas an Air Liquide company Airgas Specialty Gases Airgas USA LLC S2S North Industrial loop Road Tooele, UT 84o74 Airgas.com Part Number: Cylinder Number: Laboratory: PGVP Number: Gas Code: Reference Number: Cylinder Volume: Cylinder Pressure: Valve Outlet: Certification Date: 153403086239-1 146.0 CF 2015 PSIG 660 Jul 16,2024 Expiration Date: Jul 16,2027 Certification performed in accordance with "EPA Traceability Protocol for Assay and Certification of Gaseous Calibration Standards (May 2012\" document EPA 600/R-1 2/531 , using the assay procedures listed. Analytical Methodology does not require correction for analytical interference. This cylinder has a total analylical uncerlainty as stated below with a confidence level of 95%. There are no significant impurities which affect the use of this calibration mixture. All concentrations are on a mole/mole basis unless olherwise noted. The results relate only to the items tested. The report shall nol be reproduced except in full withoul approval of the laboralory. Do Triad Data Available Upon Request Sionature on file Project No. u&Foved for Release Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 CERTIFICATE OF ANALYSIS Grade of Product: EPA PROTOCOL STAI\DARD E02A199E15W0021 cc509499 124 - Tooele (SAP) - UT 872024 NO2,BALA Not Use This Cylinder below 100 psig, i.e. 0.7 megapascals. Component Requested Concentration ANALYTICAL RESIILTS Actual Protocol Total RelativeConcentration Method Uncertainty Assay Dates NITROGEN DIOXIDE 50.00 PPM 50.29 PPM G1 +l- 2.0o/o NIST Traceable 0710912024,0711612024 AIR Balance CALIBRATION STANDARDS Type Lot !D Cylinder No Concentration Uncertainty Expiration Date GMIS 1534022022406 CC517972 30.86 PPM NITROGEN DIOXIDUNITROGEN PRM 12409 D913660 15.01 PPM NITROGEN DIOXIDE/AIR The SRM, NTRM, PRM, or RGM noted above is only in reference to the GMIS used in the assay and not part of the analysis. 1.60/o 1.50/o Feb 17,2026 Feb 17,2023 ANALYTICAL EQUIPMENT Analytical Principle Last Multipoint CalibrationlnstrumenUMake/Model Jul 12,2024MKS FT|R NO2 018143349 FTIR 191 of '199 OMostardi Phlge 1 of I Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Appendix J - NOz to NO Converter Efficiency Test 192 of 199 @Mostardi Platt t t NO2 to NO Converter Test t Client: PacifCorp Conv. Temp: 323 oC I Facility: Gadsby Power Plant Test Type NO2 Direct I Test Location: Unit 1 Max: 50.4 ppm Date:812612024 Conversion: 100.24 %Requiremsnt: 90.00 % I ;-""- rest Post-caribration i Time NO, Cal Flaq Time NO, Time !9, Cal FlaoI il? 13?31 ' 13,?3 !3i l:.l; 33 z 7:48 0.58 13:1 1 50.3 13:19 80.4 I iii\ *:,i . lll3 i31 Max 3:20 so1 m PRE.CALRESULT POST-CALRESULT t zero 0.10%mid -O.O4o/o high 0.160/o zero O.14"/omid -A.12o/o I I T I T T T t I I t v5.0 193 of 199 RATA Extractive 4/16/20 @Mostardi Platt T Mostardi Platt Poect No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 TYpe RM Analvzer s/n Analvzer SDan RM Gas Soan NOx oomvd Thermo 42C 427404465 200 I E3.3 Type Setting Cylinder lD Cylinder Value Analyzer Response Difference, % of Spar EXPrrauon Date NOx ppmvd Zeto LL596't O 0 0. 19 -0.10%1t29t2032 Mid EBO142043 90 32 90.25 O.O4o/o 4t23t2032 Hioh cc257347 1 83.3 '183.60 -O 16o/d 4t23t2029 NO2 ppmvd CEG cc509499 50 29 7t16t2027 Tvoe RM Analvzer Make/Model FIM Analvzer s/n Analvzer Soan RM Gas Soan NOx DDmvd Thermo 42C 42CHL61 16S330 200 1 83.3 Type Setting Cylinder lD Cylinder Value Analyzer Responee Difference, % of Spar EXprrauon Date NOx ppmvd Zero 115961 0 0 o.29 -0. 160/.1t29t2032 Mid E8O142043 90 32 90.30 O O1o/a 4t2312032 Hioh cc257347 1 83.3 183 08 O.12o/o 8t23t2029 NO2 ppmvd CEG cc509499 50.29 711612027 NO2 to NO Converter Test T I I I I t I T I t I I I T t T t T T Max Max Client: PacifiCorp Facility: Gadsby Power Plant Test Location: Unit 2 Oalet 812612024 Project#: M243506 Pre-Calibration Conv. Temp: 327 oC Test Typ€ NO2 DirectMax: 50.4 ppm Conversion: 100.12 o/o Requirement: 90.00 % Post-Galibration Time 7:46 Time 13:09 13:10 13:1 1 13 12 '13:13 NO. 50.3 50.3 50.3 50.4 50.4 Time 13:17 13:18 'l 3: 19 13.20 No- Cal Flao 183.08 h NO- Cal Flaq 0.1 z 13.5 87.590.1 m 7:47 150.697:48 7.847:49 0.29 z7:50 3.077:51 76.1 5 7:52 90.30 m PRE-CAL RESULT ze?o 0.16%mid -0.01% high -0j2% Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unil 4, Unit 5, and Unit 6 POST.CAL RESULT zeto 0.05%mid -0.15o/o v5.0 194 of 199 RATA Extractive 4/16/20 @Mostardi Platt T t I I t I t I I T T I I I I I I I I Client: PacifiCorp Facility: Gadsby Power Plant Test Location: Unit 3 Oatei 812712024 Project #: M243506 Pre-Calibration Time NO, Cal Flaq 5:47 183.46 h 5:48 179.62 5:49 33.35 5:50 0.45 z 5:51 3.975.52 63.725:53 86.775:54 91.70 m PRE.CAL RESULT NO2 to NO Converter Test Tsst Time IO. 1 1:10 50.311:11 50.311:12 50.3 'l 1:'13 50.4 Max11:14 50.4 Max v5.0 195 of 199 Conv. Temp: 325 oC TestType NO2 Direct Max: 50.4 ppm Conversion: 100.12 o/o Requirement: 90.00 % Post-Calibration Time Nq Cal Flaq 11.20 0.1 z11:21 14.811:22 87.5 11:23 88.6 m POST.CAL RESULT zeto 0.05% mid -0.94o/o zero O.25o/omid O.75o/ohigh 0.09% Mostardi Platt Project No. M243506 Unit '1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 RATA Extractive 4/16/20 @Mostardi Platt Tvoe RM Analyzer Make/Model RM Analvzer s/n Analvzer Soan RM Gas Soan NOx oomvd Thermo 42C 42CHL61 169330 200 183 3 Type Setting Cylinder lD Cylinder Value Analyzer Response Difterence, % of Span EXprrauon Date NOx ppmvd Zero EB0 140992 0 0.45 -o.250h 4t9t2032 Mid E80142043 90.32 91.70 -o.750/a 4t23t2032 Hioh cc257347 183.3 183.46 -o o90/"4123t2029 NO2 ppmvd CEG cc509499 50.29 7t16t2027 Typ€RM Analyzer Make/Model RM Analvzer s/n Analvzer Soan RM Gas Soan NOx oomvd Thermo 42C 427408865 20 I 017 Type Setting Cylinder lD Cylinder Value Analyzer Response Difference, % of Spar EXptrauon Date NOx ppmvd z.ero E8009't 188 0 -0.01 0.11o/o 21512029 Mid cc262396 5.004 4.95 0.60%3t3t2026 Hioh cc725287 9.017 9.02 -0 03%5t15t2026 NO2 ppmvd CEG cc509499 50.29 7116t2027 Cli€nt PacifiCorp Facility: Gadsby Power Plant Test Location: Unit 4 Datei 812812024 Project#: M243506 NO2 to NO Converter Test Test Conv. Temp: 320 oC Test Type NO2 DirectMax: 51.0 ppm Convercion: 101.41 o/o Requirement: 90.00 % Post-Calibration Time NO, Cal Flaq 13:06 0.0 z13:07 L713:08 3.913:09 4.8'13:10 5.1 m POST.CAL RESULT zeio -O.11Yo mid 1.060/o Pre-Calibration Time NO.5:55 9.025:56 7.365:57 -0.01 5:58 -0.01 5:59 -0.01 6:00 -0.016:01 -0.01 6:02 2.806:03 10 556:04 7.86:05 6.3 No. 50.4 50.4 50.4 50.951.0 Max Cal Flaq h z Time 12 57 12:58 '12:59 '13:00 13:01 t t I T I I I T I T I t I I I I T T T 6:06 5.0 m PRE-CAL RESULT zerc -0.11Yomid -0.60%high 0.03% Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 v5.0 196 of '199 RATA Extractive 4/16/20 OMostardi Platt I I NO2 to NO Converter Test t Client: PacifiCorp Conv. Temp: 327 oC I Facility: Gadsby Power Plant Test Type NO2 Direct f Test Location: Unit 5 Max: 50.4 ppm Oalei 812812024 Conversion: 100.14 a/o Requirement: 90.00 % I ,::,:::'- res, Po3,.ca,ibra,ion a Time NO, Cal Flao Time NO, Time NO, Cal Flaq I s:s5 B.gB h 12:s7 50.3 13:06 o.o zt 5:56 6.88 12:sa 50.3 13:07 2.15:57 O.21 12:59 50.3 13:08 4.85:58 0.00 13:00 50.4 13:09 5.0 mf 5:59 o.oo 13:01 50.4 Maxr :.B? BBB z 6:02 22.94I :,:: ':i' 6:06 5.0 m I I I T I I t t I I I I PRE.CAL RESULT -iE?6-6-.lo"z"- mid -O.49o/ohigh -1.52o/o Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 POST-CAL RESULT -;ro o--o-6ilmid -0.160/o v5.0 197 of 199 RATA Extractive 4/16/20 OMostardi Plaft Tvoe RM Analvzer Make/Model RM Analvzer s/n Analvzer SDan RM Gas Soan NOx oomvd Thermo 42C 42CHL61 169330 20 s 017 Type Setting Cylinder lD Cylinder Value Analyzer Response Difference, o/o of Span EXprratlon Oate NOx ppmvd Zero E80091 't88 o 0.00 0.000/o 2t5t2029 Mid cc262396 5.004 4.96 O 49o/a 31312026 Hioh cc725287 9.017 8.88 1.52o/o 5t15t2026 NO2 ppmvd CEG cc509499 50 29 7116t2027 TvDe RM Analvzer Make/Model RM Analvzer s/n Analvzer SDan RM Gas Soan NOx oomvd Thermo 42C 427404465 20 9.O t Type Setting Cylinder lD Cylinder Value Analyzer Response Difference, % of Span Expiration Date NOx ppmvd Zero cc1 16370 0 0.00 0.00%812812031 Mid cc262396 5.004 5.'15 1.620k 313t2026 Hioh cc725247 9.O l 8.95 o.74Vd 5t15t2026 NO2 ppmvd CEG cc509499 50.29 7t1612027 NO2 to NO Converter Test t T I I t t I T I t t I I I I t I t I Client: PacifiCorp Facility: Gadsby Power Plant Test Location: Unit 6 Datet 812912024 Project#: M243506 Pre-Calibration Conv. Temp: 320 oC Test Type NO2 DirectMax: 50.4 ppm Convercion: 1OO.2O o/o Requirement: 90.00 o/o Post-Calibration 5:52 6.38 0.00 0.00 0.00 0.00 0.00 0.00 0.98 3.7 5.2 PRE-CAL RESULT zeto 0.00o/omid 1.620/ohigh -0.74% Mostardi Platt Project No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 Time 5:51 Time 11:40 1 1:41 11:42 11:43 11:44 Time 11:49 11:50 11:51 11:52 No, 0.0 2.6 5.1 Cal Flao z m N9. Cal Flao 8.95 h No, 50.4 50.4 50.4 50.450.4 Max 5:53 5:54 5:55 5:56 5:57 5:58 5:59 6:00 6:01 POST.CAL RESULT zero -0.11o/omid 1.29o/o v5.0 198 of '199 RATA Eltractive 4/16/20 @Mostardi Platt DTVISION OF AIR QUALITY END OF THE REPORT Poect No. M243506 Unit 1, Unit 2, Unit 3, Unit 4, Unit 5, and Unit 6 '199 of 199 OMostardi Platt Gadsby Unit 1 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Reference Methods 2, 3A, 6C, 7E, 10, & 19 Source Information Company Name PacifiCorp Gadsby Company Contact:Joseph Betenton Contact Phone No.(801) 220-7708 Stack Designation:Unit 1 Test & Review Dates Test Date:8/26/2024 Review Date: 3/31/2025 Observer:Not Observed Reviewer:Rob Leishman Emission Limits Emission Rates SO2 NOX CO SO2 NOX CO lbs./MMBtu lbs./hr. 179.0 66.745 ppm 336.0 116.484 %O2 Correction as a whole #3.00 Test Information Stack I.D. inches As ft^2 Y Dl H @ Cp Pbar Pq (static) Ps Stack Pressure 174.00 165.130 0 Contractor Information Contact:Andrew Bruning Contracting Company: Montrose Air Quality Services Address: 990 W 43rd Avenue, Denver, CO 80211 Phone No.: 303-810-2168 Project No.: 1040 Division of Air Quality Instrumental Reference Methods - Gaseous Measurements Round Method 19 - F factors for Coal, Oil, and Gas Fd Fw Fc dscf/MMBtu wscf/MMBtu scf/MMBtu Diluent F factor used O2 CO2 Anthracite 2 Bituminous 2 Lignite Natural Propane Butane 10100 COAL OIL GAS 9780 9860 9190 8710 8710 8710 10540 10640 11950 320 10610 10200 10390 1970 1800 1910 1420 1040 1190 1250 Wet CEM Correct For O2 CO2 Interference w/CO Yes Yes Yes Gadsby Unit 1 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Company PacifiCorp Gadsby Point Source Unit 1 Test Date 8/26/24 Start Time End Time Run CO2 % Gas Flow HSCFH Gas Flow Btu/SCF Gas Heat MMBtu/hr NOx lb/hr NOx lb/MMBtu NOx PPM NOx PPM @3% O2 Unit Load MW Headers Here Headers Here Headers Here 8:09 8:30 1 6.9 4511.9 1050 473.8 66.7 0.141 77.6 115.85 29 8:39 9:00 2 6.9 4512.2 1050 473.8 65.7 0.139 76.9 114.23 29 9:07 9:28 3 6.8 4515.5 1050 474.1 67.5 0.142 78.3 117.1 29 9:36 9:57 4 6.8 4525.5 1050 475.2 69.1 0.146 79.5 120.07 29 10:04 10:25 5 6.8 1529.8 1050 475.6 69.2 0.145 79.6 119.72 29 10:33 10:54 6 6.8 4513 1050 473.9 68.7 0.145 79.7 119.35 29 11:04 11:25 7 6.8 4530.6 1050 475.7 71.9 0.151 82.4 124.59 29 11:33 11:54 8 6.7 4516.8 1050 474.3 73 0.154 83 126.41 29 12:05 12:26 9 6.8 4514.9 1050 474.1 72.7 0.153 86.5 126.5 29 12:34 12:55 10 6.7 4518.2 1050 474.4 74 0.156 84.5 128.44 29 11 12 13 14 15 16 Gadsby Unit 1 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 1 SO2 Analyzer:Serial No.: CO2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System: Serial No.: Equivalent Emission Limit: Test Date SO2 Dry SO2 Dry SO2 Test Date % CO2 Dry 8/26/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 8/26/2024 RM CEMS Diff Run#Start Time End Time ppm @ % O2 lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 8:09 8:30 1 8:09 8:30 Y 6.7 6.9 -0.24 2 8:39 9:00 2 8:39 9:00 Y 6.8 6.9 -0.15 3 9:07 9:28 3 9:07 9:28 Y 6.7 6.8 -0.07 4 9:36 9:57 4 9:36 9:57 Y 6.7 6.8 -0.11 5 10:04 10:25 5 10:04 10:25 Y 6.6 6.8 -0.18 6 10:33 10:54 6 10:33 10:54 Y 6.7 6.8 -0.11 7 11:04 11:25 7 11:04 11:25 Y 6.6 6.8 -0.19 8 11:33 11:54 8 11:33 11:54 Y 6.5 6.7 -0.15 9 12:05 12:26 9 12:05 12:26 6.5 6.8 10 12:34 12:55 10 12:34 12:55 Y 6.5 6.7 -0.18 11 11 12 12 13 13 14 14 15 15 16 16 Average = Average = 6.640 6.800 0.153 Sd Standard Deviation = Sd Standard Deviation = Sd Standard Deviation = Sd Standard Deviation = 0.05 Confidence Coefficient = Confidence Coefficient = Confidence Coefficient = Confidence Coefficient = 0.039 RA - Relative Accuracy = RA RA RA - Relative Accuracy =2.89% n = 0 0 0 n = 9 or RA of 1%0.16% t0.975 = t0.975 = 2.306 E.L. Relative Accuracy = a For steam generators;b Average of three samples;9 c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 2 For SO2 and NOx Continuous Emission Monitoring Systems 13.2 Relative accuracy Performance Specification. The RA of the CEMSS must be not greater than 20 percent when RM is used in the denominator of Eq. 2-6 (average emissions during test are greater than 50 percent of the emission standard)or 10 percent when the applicable emission standard is used in the denominator of Eq. 2-6 (average emissions during test are less than 50 percent of the emission standard). Up dated January 17, 2006 40 CFR 60 Performance Specification 3 For O2 and CO2 Continuous Emission Monitoring Systems 13.2 CEMS Relative Accuracy Perfromance Specification. The RA of the CEMS must be no grater than 20 percent of the mean value of the reference method (RM) data. 1 percent O2 or CO2. The results are also acceptable if the absolute value of the difference between the mean RM value and the mean CEMS value is less than or equal to 1.0 percent O2 (or CO2). Up dated September 14, 2016 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 Passed Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? 111Servomex 1440D Ac t i v a t e R u n ? Gadsby Unit 1 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Division of Air Quality Relative Accuracy Test Audit of PacifiCorp Gadsby Unit 1 NOX Analyzer:Serial No.: O2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System: Serial No.: Equivalent Emission Limit:336.00 179.00 Date NOx Dry NOx Dry NOx Test Date % O2 Dry 8/26/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 9/30/2014 RM CEMS Diff Run#Start Time End Time ppm @ 3% O2 lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 8:09 8:30 Y 113.9 115.85 -1.9 Y 0.137 0.141 -0.004 Y 64.99 66.7 -1.72 1 8:09 8:30 9.3 2 8:39 9:00 Y 111.1 114.23 -3.2 Y 0.134 0.139 -0.005 Y 63.37 65.7 -2.33 2 8:39 9:00 9.2 3 9:07 9:28 Y 113.5 117.1 -3.7 Y 0.136 0.142 -0.006 Y 64.43 67.5 -3.07 3 9:07 9:28 9.3 4 9:36 9:57 Y 116.0 120.07 -4.1 Y 0.139 0.146 -0.007 Y 66.10 69.1 -3.01 4 9:36 9:57 9.3 5 10:04 10:25 Y 116.7 119.72 -3.1 Y 0.140 0.145 -0.005 Y 66.74 69.2 -2.46 5 10:04 10:25 9.4 6 10:33 10:54 Y 116.8 119.35 -2.5 Y 0.138 0.145 -0.007 Y 65.33 68.7 -3.37 6 10:33 10:54 9.5 7 11:04 11:25 Y 120.2 124.59 -4.4 Y 0.143 0.151 -0.008 Y 67.96 71.9 -3.94 7 11:04 11:25 9.6 8 11:33 11:54 117.6 126.41 0.145 0.154 68.73 73 8 11:33 11:54 9.3 9 12:05 12:26 Y 118.7 126.5 -7.8 Y 0.147 0.153 -0.006 Y 69.60 72.7 -3.10 9 12:05 12:26 9.3 10 12:34 12:55 Y 120.3 128.44 -8.1 Y 0.148 0.156 -0.008 Y 70.21 74 -3.79 10 12:34 12:55 9.3 11 11 12 12 13 13 14 14 15 15 16 16 Average = 116.4 120.7 4.292 0.14 0.146 0.006 66.52 69.50 2.98 Average = Sd Standard Deviation = 2.20 Sd Standard Deviation = 0.001 Sd Standard Deviation = 0.712 Sd Standard Deviation = Confidence Coefficient = 1.692 Confidence Coefficient = 0.001 Confidence Coefficient = 0.548 Confidence Coefficient = RA - Relative Accuracy = Relative Accuracy =5.00%Relative Accuracy = RA - Relative Accuracy = n = 9 9 9 n = 0 or RA of 1% t0.975 = 2.306 t0.975 = 2.306 t0.975 = 2.306 t0.975 = E.L. Relative Accuracy = 35% 1.78% EMRA EMRA 37% 1.97% a For steam generators;b Average of three samples; c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 2 For SO2 and NOx Continuous Emission Monitoring Systems 4. Performance and Equipment Specifications 4.3 Relative accuracy. The RA of the CEMSS shall be no grater than 20 percent of the mean value of the RM test data in terms of the units of the emission standard or 10 percent of the applicable standard, whichever is greater For SO2 emission standards between 0.30 and 0.20 lbs./MMBtu use 15 Percent of the applicable standard; For SO2 emission standards below 0.20 lbs./MMBtu use 20 Percent of the emission standard; 40 CFR 60 Performance Specification 3 For O2 and CO2 Continuous Emission Monitoring Systems 12. Calculate the arithmetic difference between the RM and the CEMSS output for each run. The average of the nine (of more) data sets constitute the RA. 13.2 Relative accuracy. The RA of the CEMSS must be no grater than 1 percent O2 or CO2. 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? PassedPassedPassed 112Thermo 42C Gadsby Unit 1 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Division of Air Quality Relative Accuracy Test Audit of PacifiCorp Gadsby Unit 1 CO Analyzer:Serial No.: Acquisition System: Acquisition System: Serial No.: Equivalent Emission Limit: Date CO Dry CO Dry CO 8/26/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff Run#Start Time End Time ppm @ % O2 lbs./MMBtu lbs./hr. 1 8:09 8:30 2 8:39 9:00 3 9:07 9:28 4 9:36 9:57 5 10:04 10:25 6 10:33 10:54 7 11:04 11:25 8 11:33 11:54 9 12:05 12:26 10 12:34 12:55 11 12 13 14 15 16 Average = Sd Standard Deviation = Confidence Coefficient = RA - Relative Accuracy = n = 0 0 0 t0.975 = E.L. Relative Accuracy = a For steam generators;b Average of three samples; c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 4 For Carbon Monoxide (CO) Continuous Emission Monitoring Systems applicable emission standard is used to calculate RA. 40 CFR 60 Performance Specification 4A For Carbon Monoxide (CO) Continuous Emission Monitoring Systems 13.2 Relative accuracy. The RA of the CEMSS must be no greater than 10 percent when the average RM value is used to calculate RA, 5 percent when the applicable emission standard is used to calculate RA, or within 5 ppmv when the RA is calculated as the absolute average difference between the RM and CEMSS plus the 2.5 percent confidence coefficient. 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 13.2 Relative accuracy. The RA of the CEMSS must be no grater than 10 percent when the average of the RM value is used to calculate RA or 5 percent when the Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Gadsby Unit 1 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 1 SO2 Analyzer:Serial No.: CO2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System:Serial No.: Equivalent Emission Limit: Test Date SO2 Dry SO2 Dry SO2 Test Date % CO2 Dry 8/26/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 8/26/2024 RM CEMS Diff Run#Start Time End Time ppm @ % O2 lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 8:09 8:30 1 8:09 8:30 Y 6.7 6.9 -0.24 2 8:39 9:00 2 8:39 9:00 Y 6.8 6.9 -0.15 3 9:07 9:28 3 9:07 9:28 Y 6.7 6.8 -0.07 4 9:36 9:57 4 9:36 9:57 Y 6.7 6.8 -0.11 5 10:04 10:25 5 10:04 10:25 Y 6.6 6.8 -0.18 6 10:33 10:54 6 10:33 10:54 Y 6.7 6.8 -0.11 7 11:04 11:25 7 11:04 11:25 Y 6.6 6.8 -0.19 8 11:33 11:54 8 11:33 11:54 Y 6.5 6.7 -0.15 9 12:05 12:26 9 12:05 12:26 6.5 6.8 10 12:34 12:55 10 12:34 12:55 Y 6.5 6.7 -0.18 11 11 12 12 13 13 14 14 15 15 16 16 Average = Average = 6.647 6.800 0.15 Sd Standard Deviation =Sd Standard Deviation =0.05 Confidence Coefficient =Confidence Coefficient =0.039 RA - Relative Accuracy =RA - Relative Accuracy =2.89% n =0 n =0 n =0 n =9 or RA of 1%0.15% t0.975 =t0.975 =t0.975 =t0.975 =2.306 BAF =No Bias a For steam generators;b Average of three samples;Alterative RAc Make sure that RM and M data are on a consistent basis either wet or dry. RATA Semiannual Test Annual SO2 RA < 10% RA < 7.5% OR < 12ppm ppm CO2 - The relative accuracy for CO2 monitors shall not exceed 10 percent. See Alternative Below Pt. 75, App. A 3.3.3 The relative accuracy for CO2 monitors shall not exceed 10 percent. Alternative - If the mean difference of the CO2 monitor measurements and the corresponding reference method measurement, calculated using Equation A7 Up dated September 25, 2017 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which ever is greater. Up dated January 17, 2006 Passed Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Servomex 1440D 111 Gadsby Unit 1 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Division of Air Quality Relative Accuracy Test Audit of PacifiCorp Gadsby Unit 1 NOX Analyzer:Serial No.: O2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System:Serial No.: Equivalent Emission Limit:336.00 179.00 Date NOx Dry NOx Dry NOx Test Date % O2 Dry 8/26/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 8/26/2024 RM CEMS Diff Run#Start Time End Time ppm @ 3% O2 lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 8:09 8:30 113.9 Y 0.137 0.141 -0.00383 64.99 1 8:09 8:30 9.3 2 8:39 9:00 111.1 Y 0.134 0.139 -0.00524 63.37 2 8:39 9:00 9.2 3 9:07 9:28 113.5 Y 0.136 0.142 -0.00612 64.43 3 9:07 9:28 9.3 4 9:36 9:57 116.0 Y 0.139 0.146 -0.00690 66.10 4 9:36 9:57 9.3 5 10:04 10:25 116.7 Y 0.140 0.145 -0.00468 66.74 5 10:04 10:25 9.4 6 10:33 10:54 116.8 Y 0.138 0.145 -0.00714 65.33 6 10:33 10:54 9.5 7 11:04 11:25 120.2 Y 0.143 0.151 -0.00814 67.96 7 11:04 11:25 9.6 8 11:33 11:54 117.6 0.145 0.154 68.73 8 11:33 11:54 9.3 9 12:05 12:26 118.7 Y 0.147 0.153 -0.00618 69.60 9 12:05 12:26 9.3 10 12:34 12:55 120.3 Y 0.148 0.156 -0.00801 70.21 10 12:34 12:55 9.3 11 11 12 12 13 13 14 14 15 15 16 16 Average = 0.140 0.146 0.00625 Average = Sd Standard Deviation =Sd Standard Deviation =0.001 Sd Standard Deviation =Sd Standard Deviation = Confidence Coefficient =Confidence Coefficient =0.001 Confidence Coefficient =Confidence Coefficient = RA - Relative Accuracy =RA =5.20%RA =RA - Relative Accuracy = n =0 n =9 n =0 n =0 or RA of 1% t0.975 =t0.975 =2.306 t0.975 =t0.975 = No Bias a For steam generators;b Average of three samples; c Make sure that RM and M data are on a consistent basis either wet or dry. RATA Semiannually Annual NOx Multipliers NOX RA < 10% RA < 7.5% Old Multiplier New Multiplier Alternative RA For units where the average of the monitoring system measurements of NOX emission rate during the RATA is less than or equal to 0.20 lb./MMBtu, the mean value of the NOX continuous emission monitoring system For SO2 emission standards between 0.30 and 0.20 lbs./MMBtu use 15 Percent of the applicable standard; specification of 10.0 percent is not achieved. di (Rmi - CEMSi)-0.006 Alterative RA Passed Thermo 42C 112 Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Gadsby Unit 1 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 1 Average Emission Dry SO2 NOX CO lbs./MMBtu 0.141 Average % concentration lbs./hr.66.74 CO2 O2 ppm corrected for %O2 116.48 6.63 9.36 Run 1 Enter O2 or CO2 Dry SO2 NOX CO CO2 O2 CO2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.37E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 8.783E-06 lbs./hr.64.99 6.66 9.35 ppm corrected for %O2 113.93 6.66 9.34 Run 2 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.34E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 8.686E-06 lbs./hr.63.37 6.75 9.18 ppm corrected for %O2 111.06 6.66 9.12 Raw Value Run 3 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.36E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 8.794E-06 lbs./hr.64.43 6.73 9.28 ppm corrected for %O2 113.45 6.68 9.22 Raw Value Run 4 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.39E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 8.946E-06 lbs./hr.66.10 6.69 9.34 ppm corrected for %O2 116.01 6.66 9.26 Raw Value Run 5 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.40E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 8.936E-06 lbs./hr.66.7380 6.62 9.42 ppm corrected for %O2 116.66 6.65 9.27 Raw Value Corrected For Cal. Drift Raw Value Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift O2 CO2 Clear lbs./MMBTU Gadsby Unit 1 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 1 O2 CO2 Clear lbs./MMBTU Run 6 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.38E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 8.864E-06 lbs./hr.65.3268 6.69 9.53 ppm corrected for %O2 116.83 6.67 9.24 Raw Value Run 7 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.43E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 9.080E-06 lbs./hr.67.96 6.61 9.58 ppm corrected for %O2 120.23 6.60 9.34 Raw Value Run 8 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.45E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 9.122E-06 lbs./hr.68.73 6.55 9.28 ppm corrected for %O2 117.62 6.62 9.32 Raw Value Run 9 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.47E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 9.206E-06 lbs./hr.69.60 6.52 9.28 ppm corrected for %O2 118.72 6.62 9.35 Raw Value Run 10 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.48E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 9.282E-06 lbs./hr.70.21 6.52 9.34 ppm corrected for %O2 120.33 6.60 9.37 Raw Value Run 11 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft lbs./hr. ppm corrected for %O2 Raw Value Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Gadsby Unit 1 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Calibration Error Test Test Date August 26, 2024 O2 CS - Cal. Span 22.57 Units % Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level 0.00 0.05 0.05 0.22% Passed Cal. Mid-level 9.89 9.90 0.01 0.04% Passed Cal. High-level 22.57 22.56 0.01 0.04% Passed Cal. % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of CS - Cal. Span Low-Level 0.00% 40 to 60% of Cal. Span Mid-level 43.82% 100% of Cal. Span High-level 100.00% Test Date August 26, 2024 CO2 CS - Cal. Span 18.45 Units % Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level 0.00 0.06 0.06 0.325% Passed Cal. Mid-level 9.91 9.77 0.14 0.770% Passed Cal. High-level 18.45 18.51 0.06 0.325% Passed Cal. % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 0.00% 40 to 60% of Cal. Span Mid-level 53.72% 100% of Cal. Span High-level 100.00% Test Date SO2 CS - Cal. Span Units ppm Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level Mid-level High-level % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 40 to 60% of Cal. Span Mid-level 100% of Cal. Span High-level Test Date August 26, 2024 NOx CS - Cal. Span 183.30 Units ppm Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level 0.00 0.19 0.19 0.104% Passed Cal. Mid-level 90.32 90.25 0.07 0.038% Passed Cal. High-level 183.30 183.60 0.30 0.164% Passed Cal. % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 0.00% 40 to 60% of Cal. Span Mid-level 49.27% 100% of Cal. Span High-level 100.00% Test Date CO CS - Cal. Span Units ppm Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level Mid-level High-level % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 40 to 60% of Cal. Span Mid-level 100% of Cal. Span High-level Gadsby Unit 2 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Reference Methods 2, 3A, 6C, 7E, 10, & 19 Source Information Company Name PacifiCorp Gadsby Company Contact:Joseph Betenton Contact Phone No.(801) 220-7708 Stack Designation:Unit 2 Test & Review Dates Test Date:8/26/2024 Review Date: 4/1/2024 Observer:Not Observed Reviewer:Rob Leishman Emission Limits Emission Rates SO2 NOX CO SO2 NOX CO lbs./MMBtu lbs./hr. 204.0 100.074 ppm 336.0 72.371 %O2 Correction as a whole #3.00 Test Information Stack I.D. inches As ft^2 Y Dl H @ Cp Pbar Pq (static) Ps Stack Pressure 174.00 165.130 0 Contractor Information Contact:Andrew Bruning Contracting Company: Montrose Air Quality Services Address: 990 W 43rd Avenue, Denver, CO 80211 Phone No.: 303-810-2168 Project No.: 1040 Division of Air Quality Instrumental Reference Methods - Gaseous Measurements Round Method 19 - F factors for Coal, Oil, and Gas Fd Fw Fc dscf/MMBtu wscf/MMBtu scf/MMBtu Diluent F factor used O2 CO2 Anthracite 2 Bituminous 2 Lignite Natural Propane Butane 10100 COAL OIL GAS 9780 9860 9190 8710 8710 8710 10540 10640 11950 320 10610 10200 10390 1970 1800 1910 1420 1040 1190 1250 Wet CEM Correct For O2 CO2 Interference w/CO Yes Yes Yes Gadsby Unit 2 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Company PacifiCorp Gadsby Point Source Unit 2 Test Date 8/26/24 Start Time End Time Run CO2 % Gas Flow HSCFH Gas Flow Btu/SCF Gas Heat MMBtu/hr NOx lb/hr NOx lb/MMBtu NOx PPM NOx PPM @3% O2 Unit Load MW Headers Here Headers Here Headers Here 8:09 8:30 1 6.2 6419.2 1050 674 90.1 0.134 66.7 109.91 49.5 8:39 9:00 2 6.2 6441.7 1050 676.4 92.9 0.137 68.5 113.21 49.4 9:07 9:28 3 6.2 6436.1 1050 375.8 94.8 0.14 69.4 115.29 49.5 9:36 9:57 4 6.1 6434.7 1050 675.7 96.6 0.143 70.5 117.91 49.5 10:04 10:25 5 6.1 6424.4 1050 674.6 96 0.142 70.1 117.07 49.4 10:33 10:54 6 6.1 6427.1 1050 674.9 97.2 0.144 71.1 118.49 49.6 11:04 11:25 7 6.2 6431.8 1050 6754 97.6 0.144 71.6 118.92 49.4 11:33 11:54 8 6 6418.5 1050 674 101.5 0.151 73.3 123.91 49.5 12:05 12:26 9 6.1 6421 1050 674.2 101.9 0.151 74.4 124.36 49.6 12:34 12:55 10 6.1 6417.8 1050 673.9 102.4 0.152 74.5 124.9 49.5 11 . 12 13 14 15 16 Gadsby Unit 2 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 2 SO2 Analyzer:Serial No.: CO2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System: Serial No.: Equivalent Emission Limit: Test Date SO2 Dry SO2 Dry SO2 Test Date % CO2 Dry 8/26/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 8/26/2024 RM CEMS Diff Run#Start Time End Time ppm lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 8:09 8:30 1 8:09 8:30 Y 6.0 6.2 -0.16 2 8:39 9:00 2 8:39 9:00 Y 6.1 6.2 -0.08 3 9:07 9:28 3 9:07 9:28 Y 6.0 6.2 -0.22 4 9:36 9:57 4 9:36 9:57 Y 6.0 6.1 -0.09 5 10:04 10:25 5 10:04 10:25 Y 6.0 6.1 -0.10 6 10:33 10:54 6 10:33 10:54 Y 6.0 6.1 -0.12 7 11:04 11:25 7 11:04 11:25 Y 6.0 6.2 -0.24 8 11:33 11:54 8 11:33 11:54 Y 6.0 6 -0.05 9 12:05 12:26 9 12:05 12:26 Y 6.2 6.1 0.08 10 12:34 12:55 10 12:34 12:55 6.4 6.1 11 11 12 12 13 13 14 14 15 15 16 16 Average = Average = 6.020 6.130 0.106 Sd Standard Deviation = Sd Standard Deviation = Sd Standard Deviation = Sd Standard Deviation = 0.09 Confidence Coefficient = Confidence Coefficient = Confidence Coefficient = Confidence Coefficient = 0.072 RA - Relative Accuracy = RA RA RA - Relative Accuracy =2.95% n = 0 0 0 n = 9 or RA of 1%0.11% t0.975 = t0.975 = 2.306 E.L. Relative Accuracy = a For steam generators;b Average of three samples;9 c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 2 For SO2 and NOx Continuous Emission Monitoring Systems 13.2 Relative accuracy Performance Specification. The RA of the CEMSS must be not greater than 20 percent when RM is used in the denominator of Eq. 2-6 (average emissions during test are greater than 50 percent of the emission standard)or 10 percent when the applicable emission standard is used in the denominator of Eq. 2-6 (average emissions during test are less than 50 percent of the emission standard). Up dated January 17, 2006 40 CFR 60 Performance Specification 3 For O2 and CO2 Continuous Emission Monitoring Systems 13.2 CEMS Relative Accuracy Perfromance Specification. The RA of the CEMS must be no grater than 20 percent of the mean value of the reference method (RM) data. 1 percent O2 or CO2. The results are also acceptable if the absolute value of the difference between the mean RM value and the mean CEMS value is less than or equal to 1.0 percent O2 (or CO2). Up dated September 14, 2016 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? 211Servomex 1440D Ac t i v a t e R u n ? Passed Gadsby Unit 2 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Division of Air Quality Relative Accuracy Test Audit of PacifiCorp Gadsby Unit 2 NOX Analyzer:Serial No.: O2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System: Serial No.: Equivalent Emission Limit:336.00 204.00 Date NOx Dry NOx Dry NOx Test Date % O2 Dry 8/26/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 9/30/2014 RM CEMS Diff Run#Start Time End Time ppm lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 8:09 8:30 Y 67.0 66.7 0.3 Y 0.138 0.134 0.004 Y 92.85 90.1 2.75 1 8:09 8:30 7.6 2 8:39 9:00 Y 66.5 68.5 -2.0 Y 0.135 0.137 -0.002 Y 91.29 92.9 -1.61 2 8:39 9:00 10.4 3 9:07 9:28 Y 68.5 69.4 -0.9 Y 0.142 0.14 0.002 Y 96.11 94.8 1.31 3 9:07 9:28 10.2 4 9:36 9:57 Y 70.9 70.5 0.4 Y 0.146 0.143 0.003 Y 98.92 96.6 2.32 4 9:36 9:57 9.8 5 10:04 10:25 Y 71.0 70.1 0.9 Y 0.147 0.142 0.005 Y 99.01 96 3.01 5 10:04 10:25 9.5 6 10:33 10:54 Y 72.5 71.1 1.4 Y 0.150 0.144 0.006 Y 101.53 97.2 4.33 6 10:33 10:54 9.3 7 11:04 11:25 Y 73.7 71.6 2.1 0.154 0.144 Y 103.70 97.6 6.10 7 11:04 11:25 9.2 8 11:33 11:54 Y 76.8 73.3 3.5 Y 0.160 0.151 0.009 108.03 101.5 8 11:33 11:54 9.4 9 12:05 12:26 Y 78.2 74.4 3.8 Y 0.157 0.151 0.006 Y 105.95 101.9 4.05 9 12:05 12:26 9.5 10 12:34 12:55 78.7 74.5 Y 0.153 0.152 0.001 Y 103.37 102.4 0.97 10 12:34 12:55 9.5 11 11 12 12 13 13 14 14 15 15 16 16 Average = 71.7 70.6 1.042 0.15 0.144 0.004 99.19 96.61 2.58 Average = Sd Standard Deviation = 1.90 Sd Standard Deviation = 0.003 Sd Standard Deviation = 2.227 Sd Standard Deviation = Confidence Coefficient = 1.459 Confidence Coefficient = 0.002 Confidence Coefficient = 1.712 Confidence Coefficient = RA - Relative Accuracy = Relative Accuracy =4.10%Relative Accuracy = RA - Relative Accuracy = n = 9 9 9 n = 0 or RA of 1% t0.975 = 2.306 t0.975 = 2.306 t0.975 = 2.306 t0.975 = E.L. Relative Accuracy = 21% 0.74% EMRA EMRA 49% 2.10% a For steam generators;b Average of three samples; c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 2 For SO2 and NOx Continuous Emission Monitoring Systems 4. Performance and Equipment Specifications 4.3 Relative accuracy. The RA of the CEMSS shall be no grater than 20 percent of the mean value of the RM test data in terms of the units of the emission standard or 10 percent of the applicable standard, whichever is greater For SO2 emission standards between 0.30 and 0.20 lbs./MMBtu use 15 Percent of the applicable standard; For SO2 emission standards below 0.20 lbs./MMBtu use 20 Percent of the emission standard; 40 CFR 60 Performance Specification 3 For O2 and CO2 Continuous Emission Monitoring Systems 12. Calculate the arithmetic difference between the RM and the CEMSS output for each run. The average of the nine (of more) data sets constitute the RA. 13.2 Relative accuracy. The RA of the CEMSS must be no grater than 1 percent O2 or CO2. 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 212Thermo 42C Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? PassedPassedPassed Gadsby Unit 2 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Division of Air Quality Relative Accuracy Test Audit of PacifiCorp Gadsby Unit 2 CO Analyzer:Serial No.: Acquisition System: Acquisition System: Serial No.: Equivalent Emission Limit: Date CO Dry CO Dry CO 8/26/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff Run#Start Time End Time ppm lbs./MMBtu lbs./hr. 1 8:09 8:30 2 8:39 9:00 3 9:07 9:28 4 9:36 9:57 5 10:04 10:25 6 10:33 10:54 7 11:04 11:25 8 11:33 11:54 9 12:05 12:26 10 12:34 12:55 11 12 13 14 15 16 Average = Sd Standard Deviation = Confidence Coefficient = RA - Relative Accuracy = n = 0 0 0 t0.975 = E.L. Relative Accuracy = a For steam generators;b Average of three samples; c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 4 For Carbon Monoxide (CO) Continuous Emission Monitoring Systems applicable emission standard is used to calculate RA. 40 CFR 60 Performance Specification 4A For Carbon Monoxide (CO) Continuous Emission Monitoring Systems 13.2 Relative accuracy. The RA of the CEMSS must be no greater than 10 percent when the average RM value is used to calculate RA, 5 percent when the applicable emission standard is used to calculate RA, or within 5 ppmv when the RA is calculated as the absolute average difference between the RM and CEMSS plus the 2.5 percent confidence coefficient. 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 13.2 Relative accuracy. The RA of the CEMSS must be no grater than 10 percent when the average of the RM value is used to calculate RA or 5 percent when the Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Gadsby Unit 2 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 2 SO2 Analyzer:Serial No.: CO2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System:Serial No.: Equivalent Emission Limit: Test Date SO2 Dry SO2 Dry SO2 Test Date % CO2 Dry 8/26/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 8/26/2024 RM CEMS Diff Run#Start Time End Time ppm lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 8:09 8:30 1 8:09 8:30 Y 6.0 6.2 -0.16 2 8:39 9:00 2 8:39 9:00 Y 6.1 6.2 -0.08 3 9:07 9:28 3 9:07 9:28 Y 6.0 6.2 -0.22 4 9:36 9:57 4 9:36 9:57 Y 6.0 6.1 -0.09 5 10:04 10:25 5 10:04 10:25 Y 6.0 6.1 -0.10 6 10:33 10:54 6 10:33 10:54 Y 6.0 6.1 -0.12 7 11:04 11:25 7 11:04 11:25 Y 6.0 6.2 -0.24 8 11:33 11:54 8 11:33 11:54 Y 6.0 6 -0.05 9 12:05 12:26 9 12:05 12:26 Y 6.2 6.1 0.08 10 12:34 12:55 10 12:34 12:55 Y 6.4 6.1 0.28 11 11 12 12 13 13 14 14 15 15 16 16 Average = Average = 6.062 6.130 0.07 Sd Standard Deviation =Sd Standard Deviation =0.15 Confidence Coefficient =Confidence Coefficient =0.107 RA - Relative Accuracy =RA - Relative Accuracy =2.89% n =0 n =0 n =0 n =10 or RA of 1%0.07% t0.975 =t0.975 =t0.975 =t0.975 =2.262 BAF =No Bias a For steam generators;b Average of three samples;Alterative RAc Make sure that RM and M data are on a consistent basis either wet or dry. RATA Semiannual Test Annual SO2 RA < 10% RA < 7.5% OR < 12ppm ppm CO2 - The relative accuracy for CO2 monitors shall not exceed 10 percent. See Alternative Below Pt. 75, App. A 3.3.3 The relative accuracy for CO2 monitors shall not exceed 10 percent. Alternative - If the mean difference of the CO2 monitor measurements and the corresponding reference method measurement, calculated using Equation A7 Up dated September 25, 2017 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which ever is greater. Up dated January 17, 2006 Servomex 1440D 211 Passed Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Gadsby Unit 2 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Division of Air Quality Relative Accuracy Test Audit of PacifiCorp Gadsby Unit 2 NOX Analyzer:Serial No.: O2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System:Serial No.: Equivalent Emission Limit:336.00 204.00 Date NOx Dry NOx Dry NOx Test Date % O2 Dry 8/26/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 8/26/2024 RM CEMS Diff Run#Start Time End Time ppm lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 8:09 8:30 67.0 Y 0.138 0.134 0.00375 92.85 1 8:09 8:30 7.6 2 8:39 9:00 66.5 Y 0.135 0.137 -0.00203 91.29 2 8:39 9:00 10.4 3 9:07 9:28 68.5 Y 0.142 0.14 0.00221 96.11 3 9:07 9:28 10.2 4 9:36 9:57 70.9 Y 0.146 0.143 0.00341 98.92 4 9:36 9:57 9.8 5 10:04 10:25 71.0 Y 0.147 0.142 0.00477 99.01 5 10:04 10:25 9.5 6 10:33 10:54 72.5 Y 0.150 0.144 0.00645 101.53 6 10:33 10:54 9.3 7 11:04 11:25 73.7 Y 0.154 0.144 0.00955 103.70 7 11:04 11:25 9.2 8 11:33 11:54 76.8 Y 0.160 0.151 0.00930 108.03 8 11:33 11:54 9.4 9 12:05 12:26 78.2 Y 0.157 0.151 0.00614 105.95 9 12:05 12:26 9.5 10 12:34 12:55 78.7 Y 0.153 0.152 0.00139 103.37 10 12:34 12:55 9.5 11 11 12 12 13 13 14 14 15 15 16 16 Average = 0.148 0.144 0.00450 Average = Sd Standard Deviation =Sd Standard Deviation =0.004 Sd Standard Deviation =Sd Standard Deviation = Confidence Coefficient =Confidence Coefficient =0.003 Confidence Coefficient =Confidence Coefficient = RA - Relative Accuracy =RA =5.10%RA =RA - Relative Accuracy = n =0 n =10 n =0 n =0 or RA of 1% t0.975 =t0.975 =2.262 t0.975 =t0.975 = Use BAF 1.03 a For steam generators;b Average of three samples; c Make sure that RM and M data are on a consistent basis either wet or dry. RATA Semiannually Annual NOx Multipliers NOX RA < 10% RA < 7.5% Old Multiplier New Multiplier Alternative RA For units where the average of the monitoring system measurements of NOX emission rate during the RATA is less than or equal to 0.20 lb./MMBtu, the mean value of the NOX continuous emission monitoring system For SO2 emission standards between 0.30 and 0.20 lbs./MMBtu use 15 Percent of the applicable standard; specification of 10.0 percent is not achieved. di (Rmi - CEMSi)0.004 Alterative RA Passed Thermo 42C 212 Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Gadsby Unit 2 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 2 Average Emission Dry SO2 NOX CO lbs./MMBtu 0.148 Average % concentration lbs./hr.100.07 CO2 O2 ppm or % 72.37 6.06 9.44 Run 1 Enter O2 or CO2 Dry SO2 NOX CO CO2 O2 CO2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.38E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 8.003E-06 lbs./hr.92.85 6.04 7.60 ppm or %67.00 6.08 7.59 Run 2 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.35E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 7.946E-06 lbs./hr.91.29 6.12 10.42 ppm or %66.52 6.08 10.40 Raw Value Run 3 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.42E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 8.181E-06 lbs./hr.96.11 5.98 10.18 ppm or %68.49 6.06 10.13 Raw Value Run 4 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.46E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 8.463E-06 lbs./hr.98.92 6.01 9.77 ppm or %70.85 6.08 9.62 Raw Value Run 5 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.47E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 8.475E-06 lbs./hr.99.0086 6.01 9.49 ppm or %70.95 6.07 9.37 Raw Value Corrected For Cal. Drift Raw Value Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift O2 CO2 Clear lbs./MMBTU Gadsby Unit 2 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 2 O2 CO2 Clear lbs./MMBTU Run 6 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.50E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 8.655E-06 lbs./hr.101.5288 5.98 9.34 ppm or %72.46 6.11 9.33 Raw Value Run 7 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.54E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 8.807E-06 lbs./hr.103.70 5.97 9.21 ppm or %73.73 6.12 9.17 Raw Value Run 8 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.60E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 9.176E-06 lbs./hr.108.03 5.95 9.38 ppm or %76.82 6.05 9.33 Raw Value Run 9 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.57E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 9.336E-06 lbs./hr.105.95 6.18 9.50 ppm or %78.16 6.10 9.44 Raw Value Run 10 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.53E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 9.404E-06 lbs./hr.103.37 6.38 9.47 ppm or %78.73 6.07 9.43 Raw Value Run 11 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft lbs./hr. ppm or %Raw Value Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Gadsby Unit 2 RATA RM 3A, 7E, 10, & 19 - (tested 8-26-2024) Calibration Error Test Test Date August 26, 2024 O2 CS - Cal. Span 22.57 Units % Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level 0.00 0.03 0.03 0.13% Passed Cal. Mid-level 9.89 9.88 0.01 0.05% Passed Cal. High-level 22.57 22.55 0.02 0.09% Passed Cal. % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of CS - Cal. Span Low-Level 0.00% 40 to 60% of Cal. Span Mid-level 43.82% 100% of Cal. Span High-level 100.00% Test Date August 26, 2024 CO2 CS - Cal. Span 18.45 Units % Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level 0.00 0.02 0.02 0.108% Passed Cal. Mid-level 9.91 9.90 0.01 0.065% Passed Cal. High-level 18.45 18.41 0.04 0.217% Passed Cal. % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 0.00% 40 to 60% of Cal. Span Mid-level 53.72% 100% of Cal. Span High-level 100.00% Test Date SO2 CS - Cal. Span Units ppm Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level Mid-level High-level % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 40 to 60% of Cal. Span Mid-level 100% of Cal. Span High-level Test Date August 26, 2024 NOx CS - Cal. Span 183.30 Units ppm Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level 0.00 0.29 0.29 0.158% Passed Cal. Mid-level 90.32 90.30 0.02 0.011% Passed Cal. High-level 183.30 183.08 0.22 0.120% Passed Cal. % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 0.00% 40 to 60% of Cal. Span Mid-level 49.27% 100% of Cal. Span High-level 100.00% Test Date CO CS - Cal. Span Units ppm Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level Mid-level High-level % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 40 to 60% of Cal. Span Mid-level 100% of Cal. Span High-level Gadsby Unit 3 RATA RM 3A, 7E, 10, & 19 - (tested 8-27-2024) Reference Methods 2, 3A, 6C, 7E, 10, & 19 Source Information Company Name PacifiCorp Gadsby Company Contact:Joseph Betenton Contact Phone No.(801) 220-7708 Stack Designation:Unit 3 Test & Review Dates Test Date:8/27/2024 Review Date: 4/1/2025 Observer:Not Observed Reviewer:Rob Leishman Emission Limits Emission Rates SO2 NOX CO SO2 NOX CO lbs./MMBtu lbs./hr. 142.0 26.9 81.010 ppm 168.0 10.00 85.773 %O2 Correction as a whole #3.00 15.00 Test Information Stack I.D. inches As ft^2 Y Dl H @ Cp Pbar Pq (static) Ps Stack Pressure 174.00 165.130 0 Contractor Information Contact:Andrew Bruning Contracting Company: Montrose Air Quality Services Address: 990 W 43rd Avenue, Denver, CO 80211 Phone No.: 303-810-2168 Project No.: 1040 Division of Air Quality Instrumental Reference Methods - Gaseous Measurements Round Method 19 - F factors for Coal, Oil, and Gas Fd Fw Fc dscf/MMBtu wscf/MMBtu scf/MMBtu Diluent F factor used O2 CO2 Anthracite 2 Bituminous 2 Lignite Natural Propane Butane 10100 COAL OIL GAS 9780 9860 9190 8710 8710 8710 10540 10640 11950 320 10610 10200 10390 1970 1800 1910 1420 1040 1190 1250 Wet CEM Correct For O2 CO2 Interference w/CO Yes Yes Yes Gadsby Unit 3 RATA RM 3A, 7E, 10, & 19 - (tested 8-27-2024) Company PacifiCorp Gadsby Point Source Unit 3 Test Date 8/27/24 Start Time End Time Run CO2 % Gas Flow HSCFH Gas Flow Btu/SCF Gas Heat MMBtu/hr NOx lb/hr NOx lb/MMBtu NOx PPM NOx PPM @3% O2 Unit Load MW Headers Here Headers Here Headers Here 6:35 6:56 1 6.5 7415.1 1050 778.9 71.7 0.092 47.8 75.69 68.2 7:02 7:23 2 6.4 7295.2 1050 766 76.1 0.099 51.2 81.52 67.7 7:28 7:49 3 6.4 7259.4 1050 762.2 75.2 0.099 50.8 81.19 67 7:55 8:16 4 6.4 7266.1 1050 763 78.6 0.103 53.1 84.76 67.3 8:22 8:43 5 6.5 7285.3 1050 765 77.6 0.101 52.8 83.73 67.6 8:49 9:10 6 6.5 7298.9 1050 766.4 78.8 0.103 53.6 84.82 67.5 9:15 9:36 7 6.4 7289.2 1050 755.4 78.5 0.103 53.2 84.33 67.7 9:41 10:02 8 6.5 7294.6 1050 766 76 0.099 51.9 87.87 67.5 10:07 10:28 9 6.5 7299.5 1050 766.4 71.3 0.093 48.8 76.59 67.6 10:33 10:54 10 6.5 7350.1 1050 771.8 75.2 0.097 51.1 80.07 67.9 11 12 13 14 15 16 Gadsby Unit 3 RATA RM 3A, 7E, 10, & 19 - (tested 8-27-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 3 SO2 Analyzer:Serial No.: CO2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System: Serial No.: Equivalent Emission Limit: Test Date SO2 Dry SO2 Dry SO2 Test Date % CO2 Dry 8/27/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 8/27/2024 RM CEMS Diff Run#Start Time End Time ppm @ % O2 lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 6:35 6:56 1 6:35 6:56 Y 6.4 6.5 -0.15 2 7:02 7:23 2 7:02 7:23 Y 6.3 6.4 -0.14 3 7:28 7:49 3 7:28 7:49 Y 6.3 6.4 -0.14 4 7:55 8:16 4 7:55 8:16 Y 6.3 6.4 -0.14 5 8:22 8:43 5 8:22 8:43 6.3 6.5 6 8:49 9:10 6 8:49 9:10 Y 6.3 6.5 -0.21 7 9:15 9:36 7 9:15 9:36 Y 6.3 6.4 -0.12 8 9:41 10:02 8 9:41 10:02 Y 6.3 6.5 -0.20 9 10:07 10:28 9 10:07 10:28 Y 6.4 6.5 -0.15 10 10:33 10:54 10 10:33 10:54 Y 6.3 6.5 -0.16 11 11 12 12 13 13 14 14 15 15 16 16 Average = Average = 6.290 6.450 0.157 Sd Standard Deviation = Sd Standard Deviation = Sd Standard Deviation = Sd Standard Deviation = 0.03 Confidence Coefficient = Confidence Coefficient = Confidence Coefficient = Confidence Coefficient = 0.023 RA - Relative Accuracy = RA RA RA - Relative Accuracy =2.86% n = 0 0 0 n = 9 or RA of 1%0.16% t0.975 = t0.975 = 2.306 E.L. Relative Accuracy = a For steam generators;b Average of three samples;9 c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 2 For SO2 and NOx Continuous Emission Monitoring Systems 13.2 Relative accuracy Performance Specification. The RA of the CEMSS must be not greater than 20 percent when RM is used in the denominator of Eq. 2-6 (average emissions during test are greater than 50 percent of the emission standard)or 10 percent when the applicable emission standard is used in the denominator of Eq. 2-6 (average emissions during test are less than 50 percent of the emission standard). Up dated January 17, 2006 40 CFR 60 Performance Specification 3 For O2 and CO2 Continuous Emission Monitoring Systems 13.2 CEMS Relative Accuracy Perfromance Specification. The RA of the CEMS must be no grater than 20 percent of the mean value of the reference method (RM) data. 1 percent O2 or CO2. The results are also acceptable if the absolute value of the difference between the mean RM value and the mean CEMS value is less than or equal to 1.0 percent O2 (or CO2). Up dated September 14, 2016 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? 311Servomex 1440D Ac t i v a t e R u n ? Passed Gadsby Unit 3 RATA RM 3A, 7E, 10, & 19 - (tested 8-27-2024) Division of Air Quality Relative Accuracy Test Audit of PacifiCorp Gadsby Unit 3 NOX Analyzer:Serial No.: O2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System: Serial No.: Equivalent Emission Limit:168.00 142.00 Date NOx Dry NOx Dry NOx Test Date % O2 Dry 8/27/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 9/30/2014 RM CEMS Diff Run#Start Time End Time ppm @ 3% O2 lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 6:35 6:56 Y 79.1 75.69 3.4 Y 0.097 0.092 0.005 Y 75.87 71.7 4.17 1 6:35 6:56 9.6 2 7:02 7:23 Y 85.9 81.52 4.3 Y 0.106 0.099 0.007 Y 81.10 76.1 5.00 2 7:02 7:23 9.8 3 7:28 7:49 Y 84.9 81.19 3.7 Y 0.104 0.099 0.005 Y 79.56 75.2 4.36 3 7:28 7:49 9.8 4 7:55 8:16 Y 89.1 84.76 4.4 Y 0.110 0.103 0.007 Y 83.69 78.6 5.09 4 7:55 8:16 9.8 5 8:22 8:43 Y 88.3 83.73 4.5 Y 0.109 0.101 0.008 Y 83.28 77.6 5.68 5 8:22 8:43 9.7 6 8:49 9:10 Y 87.8 84.82 3.0 Y 0.108 0.103 0.005 Y 82.92 78.8 4.12 6 8:49 9:10 9.7 7 9:15 9:36 Y 88.4 84.33 4.1 Y 0.109 0.103 0.006 Y 83.41 78.5 4.91 7 9:15 9:36 9.8 8 9:41 10:02 Y 88.7 87.87 0.8 0.109 0.099 83.87 76 8 9:41 10:02 9.7 9 10:07 10:28 81.4 76.59 Y 0.100 0.093 0.007 Y 76.61 71.3 5.31 9 10:07 10:28 9.7 10 10:33 10:54 Y 84.2 80.07 4.1 Y 0.103 0.097 0.006 Y 79.81 75.2 4.61 10 10:33 10:54 9.7 11 11 12 12 13 13 14 14 15 15 16 16 Average = 86.3 82.7 3.590 0.11 0.099 0.006 80.69 75.89 4.80 Average = Sd Standard Deviation = 1.15 Sd Standard Deviation = 0.001 Sd Standard Deviation = 0.531 Sd Standard Deviation = Confidence Coefficient = 0.883 Confidence Coefficient = 0.001 Confidence Coefficient = 0.408 Confidence Coefficient = RA - Relative Accuracy =5.20%Relative Accuracy =6.70%Relative Accuracy =6.50%RA - Relative Accuracy = n = 9 9 9 n = 0 or RA of 1% t0.975 = 2.306 t0.975 = 2.306 t0.975 = 2.306 t0.975 = E.L. Relative Accuracy = 51% EMRA EMRA 57% a For steam generators;b Average of three samples; c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 2 For SO2 and NOx Continuous Emission Monitoring Systems 4. Performance and Equipment Specifications 4.3 Relative accuracy. The RA of the CEMSS shall be no grater than 20 percent of the mean value of the RM test data in terms of the units of the emission standard or 10 percent of the applicable standard, whichever is greater For SO2 emission standards between 0.30 and 0.20 lbs./MMBtu use 15 Percent of the applicable standard; For SO2 emission standards below 0.20 lbs./MMBtu use 20 Percent of the emission standard; 40 CFR 60 Performance Specification 3 For O2 and CO2 Continuous Emission Monitoring Systems 12. Calculate the arithmetic difference between the RM and the CEMSS output for each run. The average of the nine (of more) data sets constitute the RA. 13.2 Relative accuracy. The RA of the CEMSS must be no grater than 1 percent O2 or CO2. 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 312Thermo 42C Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? PassedPassedPassed Gadsby Unit 3 RATA RM 3A, 7E, 10, & 19 - (tested 8-27-2024) Division of Air Quality Relative Accuracy Test Audit of PacifiCorp Gadsby Unit 3 CO Analyzer:Serial No.: Acquisition System: Acquisition System: Serial No.: Equivalent Emission Limit:10.00 26.90 Date CO Dry CO Dry CO 8/27/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff Run#Start Time End Time ppm @ 15% O2 lbs./MMBtu lbs./hr. 1 6:35 6:56 2 7:02 7:23 3 7:28 7:49 4 7:55 8:16 5 8:22 8:43 6 8:49 9:10 7 9:15 9:36 8 9:41 10:02 9 10:07 10:28 10 10:33 10:54 11 12 13 14 15 16 Average = Sd Standard Deviation = Confidence Coefficient = RA - Relative Accuracy = n = 0 0 0 t0.975 = E.L. Relative Accuracy = a For steam generators;b Average of three samples; c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 4 For Carbon Monoxide (CO) Continuous Emission Monitoring Systems applicable emission standard is used to calculate RA. 40 CFR 60 Performance Specification 4A For Carbon Monoxide (CO) Continuous Emission Monitoring Systems 13.2 Relative accuracy. The RA of the CEMSS must be no greater than 10 percent when the average RM value is used to calculate RA, 5 percent when the applicable emission standard is used to calculate RA, or within 5 ppmv when the RA is calculated as the absolute average difference between the RM and CEMSS plus the 2.5 percent confidence coefficient. 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 13.2 Relative accuracy. The RA of the CEMSS must be no grater than 10 percent when the average of the RM value is used to calculate RA or 5 percent when the Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Gadsby Unit 3 RATA RM 3A, 7E, 10, & 19 - (tested 8-27-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 3 SO2 Analyzer:Serial No.: CO2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System:Serial No.: Equivalent Emission Limit: Test Date SO2 Dry SO2 Dry SO2 Test Date % CO2 Dry 8/27/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 8/27/2024 RM CEMS Diff Run#Start Time End Time ppm @ % O2 lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 6:35 6:56 1 6:35 6:56 Y 6.4 6.5 -0.15 2 7:02 7:23 2 7:02 7:23 Y 6.3 6.4 -0.14 3 7:28 7:49 3 7:28 7:49 Y 6.3 6.4 -0.14 4 7:55 8:16 4 7:55 8:16 Y 6.3 6.4 -0.14 5 8:22 8:43 5 8:22 8:43 6.3 6.5 6 8:49 9:10 6 8:49 9:10 Y 6.3 6.5 -0.21 7 9:15 9:36 7 9:15 9:36 Y 6.3 6.4 -0.12 8 9:41 10:02 8 9:41 10:02 Y 6.3 6.5 -0.20 9 10:07 10:28 9 10:07 10:28 Y 6.4 6.5 -0.15 10 10:33 10:54 10 10:33 10:54 Y 6.3 6.5 -0.16 11 11 12 12 13 13 14 14 15 15 16 16 Average = Average = 6.299 6.456 0.16 Sd Standard Deviation =Sd Standard Deviation =0.03 Confidence Coefficient =Confidence Coefficient =0.024 RA - Relative Accuracy =RA - Relative Accuracy =2.87% n =0 n =0 n =0 n =9 or RA of 1%0.16% t0.975 =t0.975 =t0.975 =t0.975 =2.306 BAF =No Bias a For steam generators;b Average of three samples;Alterative RAc Make sure that RM and M data are on a consistent basis either wet or dry. RATA Semiannual Test Annual SO2 RA < 10% RA < 7.5% OR < 12ppm ppm CO2 - The relative accuracy for CO2 monitors shall not exceed 10 percent. See Alternative Below Pt. 75, App. A 3.3.3 The relative accuracy for CO2 monitors shall not exceed 10 percent. Alternative - If the mean difference of the CO2 monitor measurements and the corresponding reference method measurement, calculated using Equation A7 Up dated September 25, 2017 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which ever is greater. Up dated January 17, 2006 Servomex 1440D 311 Passed Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Gadsby Unit 3 RATA RM 3A, 7E, 10, & 19 - (tested 8-27-2024) Division of Air Quality Relative Accuracy Test Audit of PacifiCorp Gadsby Unit 3 NOX Analyzer:Serial No.: O2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System:Serial No.: Equivalent Emission Limit:168.00 142.00 Date NOx Dry NOx Dry NOx Test Date % O2 Dry 8/27/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 8/27/2024 RM CEMS Diff Run#Start Time End Time ppm @ 3% O2 lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 6:35 6:56 79.1 Y 0.097 0.092 0.00540 75.87 1 6:35 6:56 9.6 2 7:02 7:23 85.9 Y 0.106 0.099 0.00687 81.10 2 7:02 7:23 9.8 3 7:28 7:49 84.9 Y 0.104 0.099 0.00538 79.56 3 7:28 7:49 9.8 4 7:55 8:16 89.1 Y 0.110 0.103 0.00669 83.69 4 7:55 8:16 9.8 5 8:22 8:43 88.3 Y 0.109 0.101 0.00786 83.28 5 8:22 8:43 9.7 6 8:49 9:10 87.8 Y 0.108 0.103 0.00519 82.92 6 8:49 9:10 9.7 7 9:15 9:36 88.4 Y 0.109 0.103 0.00597 83.41 7 9:15 9:36 9.8 8 9:41 10:02 88.7 0.109 0.099 83.87 8 9:41 10:02 9.7 9 10:07 10:28 81.4 Y 0.100 0.093 0.00696 76.61 9 10:07 10:28 9.7 10 10:33 10:54 84.2 Y 0.103 0.097 0.00641 79.81 10 10:33 10:54 9.7 11 11 12 12 13 13 14 14 15 15 16 16 Average = 0.105 0.099 0.00630 Average = Sd Standard Deviation =Sd Standard Deviation =0.001 Sd Standard Deviation =Sd Standard Deviation = Confidence Coefficient =Confidence Coefficient =0.001 Confidence Coefficient =Confidence Coefficient = RA - Relative Accuracy =RA =6.90%RA =RA - Relative Accuracy = n =0 n =9 n =0 n =0 or RA of 1% t0.975 =t0.975 =2.306 t0.975 =t0.975 = Use BAF 1.06 a For steam generators;b Average of three samples; c Make sure that RM and M data are on a consistent basis either wet or dry. RATA Semiannually Annual NOx Multipliers NOX RA < 10% RA < 7.5% Old Multiplier New Multiplier Alternative RA For units where the average of the monitoring system measurements of NOX emission rate during the RATA is less than or equal to 0.20 lb./MMBtu, the mean value of the NOX continuous emission monitoring system For SO2 emission standards between 0.30 and 0.20 lbs./MMBtu use 15 Percent of the applicable standard; specification of 10.0 percent is not achieved. di (Rmi - CEMSi)0.006 Alterative RA Passed Thermo 42C 312 Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Gadsby Unit 3 RATA RM 3A, 7E, 10, & 19 - (tested 8-27-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 3 Average Emission Dry SO2 NOX CO lbs./MMBtu 0.106 Average % concentration lbs./hr.81.01 CO2 O2 ppm corrected for %O2 85.77 6.30 9.73 Run 1 Enter O2 or CO2 Dry SO2 NOX CO CO2 O2 CO2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)9.74E-02 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 5.948E-06 lbs./hr.75.87 6.35 9.64 ppm corrected for %O2 79.13 6.36 9.67 Run 2 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.06E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 6.373E-06 lbs./hr.81.10 6.26 9.78 ppm corrected for %O2 85.86 6.36 9.68 Raw Value Run 3 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.04E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 6.283E-06 lbs./hr.79.56 6.26 9.81 ppm corrected for %O2 84.88 6.31 9.71 Raw Value Run 4 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.10E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 6.605E-06 lbs./hr.83.69 6.26 9.80 ppm corrected for %O2 89.13 6.34 9.70 Raw Value Run 5 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.09E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 6.569E-06 lbs./hr.83.2769 6.28 9.75 ppm corrected for %O2 88.26 6.37 9.66 Raw Value Corrected For Cal. Drift Raw Value Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift O2 CO2 Clear lbs./MMBTU Gadsby Unit 3 RATA RM 3A, 7E, 10, & 19 - (tested 8-27-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 3 O2 CO2 Clear lbs./MMBTU Run 6 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.08E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 6.540E-06 lbs./hr.82.9183 6.29 9.74 ppm corrected for %O2 87.79 6.40 9.64 Raw Value Run 7 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.09E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 6.576E-06 lbs./hr.83.41 6.28 9.75 ppm corrected for %O2 88.39 6.42 9.63 Raw Value Run 8 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.09E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 6.629E-06 lbs./hr.83.87 6.30 9.70 ppm corrected for %O2 88.70 6.45 9.59 Raw Value Run 9 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.00E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 6.105E-06 lbs./hr.76.61 6.35 9.67 ppm corrected for %O2 81.44 6.49 9.55 Raw Value Run 10 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)1.03E-01 E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 6.308E-06 lbs./hr.79.81 6.34 9.67 ppm corrected for %O2 84.15 6.50 9.55 Raw Value Run 11 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft lbs./hr. ppm corrected for %O2 Raw Value Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Gadsby Unit 3 RATA RM 3A, 7E, 10, & 19 - (tested 8-27-2024) Calibration Error Test Test Date August 27, 2024 O2 CS - Cal. Span 22.57 Units % Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level 0.00 0.07 0.07 0.31% Passed Cal. Mid-level 10.51 10.57 0.06 0.27% Passed Cal. High-level 22.57 22.52 0.05 0.22% Passed Cal. % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of CS - Cal. Span Low-Level 0.00% 40 to 60% of Cal. Span Mid-level 46.57% 100% of Cal. Span High-level 100.00% Test Date August 27, 2024 CO2 CS - Cal. Span 18.45 Units % Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level 0.00 0.04 0.04 0.217% Passed Cal. Mid-level 8.90 8.93 0.03 0.141% Passed Cal. High-level 18.45 18.54 0.09 0.488% Passed Cal. % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 0.00% 40 to 60% of Cal. Span Mid-level 48.26% 100% of Cal. Span High-level 100.00% Test Date SO2 CS - Cal. Span Units ppm Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level Mid-level High-level % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 40 to 60% of Cal. Span Mid-level 100% of Cal. Span High-level Test Date August 27, 2024 NOx CS - Cal. Span 183.30 Units ppm Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level 0.00 0.45 0.45 0.245% Passed Cal. Mid-level 90.32 91.70 1.38 0.753% Passed Cal. High-level 183.30 183.46 0.16 0.087% Passed Cal. % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 0.00% 40 to 60% of Cal. Span Mid-level 49.27% 100% of Cal. Span High-level 100.00% Test Date CO 26.9 CS - Cal. Span 10 Units ppm Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level Mid-level High-level % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 40 to 60% of Cal. Span Mid-level 100% of Cal. Span High-level Gadsby Unit 4 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Reference Methods 2, 3A, 6C, 7E, 10, & 19 Source Information Company Name PacifiCorp Gadsby Company Contact:Joseph Betenton Contact Phone No.(801) 220-7708 Stack Designation:Unit 4 Test & Review Dates Test Date:8/28/2025 Review Date: 4/3/2025 Observer:Not Observed Reviewer:Rob Leishman Emission Limits Emission Rates SO2 NOX CO SO2 NOX CO lbs./MMBtu lbs./hr. 22.2 26.9 2.171 0.623 ppm 5.0 10.00 2.327 1.096 %O2 Correction as a whole #15.00 15.00 Test Information Stack I.D. inches As ft^2 Y Dl H @ Cp Pbar Pq (static) Ps Stack Pressure 132.50 95.754 0 Contractor Information Contact:Andrew Bruning Contracting Company: Montrose Air Quality Services Address: 990 W 43rd Avenue, Denver, CO 80211 Phone No.: 303-810-2168 Project No.: 8710 Division of Air Quality Instrumental Reference Methods - Gaseous Measurements Round Method 19 - F factors for Coal, Oil, and Gas Fd Fw Fc dscf/MMBtu wscf/MMBtu scf/MMBtu Diluent F factor used O2 CO2 Anthracite 2 Bituminous 2 Lignite Natural Propane Butane 10100 COAL OIL GAS 9780 9860 9190 8710 8710 8710 10540 10640 11950 320 10610 10200 10390 1970 1800 1910 1420 1040 1190 1250 Wet CEM Correct For O2 CO2 Interference w/CO Yes Yes Yes Gadsby Unit 4 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Company PacifiCorp Gadsby Point Source Unit 4 Test Date 8/28/25 Start Time End Time Run CO lb/hr CO ppm CO ppm@15 % O2 Unit Load MW Gas Flow HSCFH Heat Btu/SCF Heat Input MMBtu/hr NOx lb/hr NOx lb/MMBtu NOx PPM NOx PPM @15% O2 O2 % 6:35 6:56 1 1.1 1.6 1.97 24 2392.9 1050 251.3 2 0.008 1.7 2.14 16.1 7:07 7:28 2 1.2 1.7 2.15 24.1 2391.8 1050 251.1 2.1 0.008 1.8 2.27 16.1 7:39 8:00 3 1.3 1.8 2.23 24 2385.7 1050 250.5 2.4 0.01 2.1 2.62 16.1 8:12 8:33 4 1.2 1.8 2.14 24.9 2456.2 1050 257.9 1.3 0.005 1.2 1.4 16.1 8:44 9:05 5 1.1 1.6 2 24.1 2405 1050 252.5 3.2 0.013 2.8 3.47 16.1 9:17 9:38 6 1.1 1.6 1.91 24.9 2438.3 1050 256 2.2 0.009 2 2.39 16 9:49 10:10 7 1.1 1.6 1.95 24.5 2419.6 1050 254.1 2.5 0.01 2.2 2.69 16.1 10:21 10:42 8 1.1 1.6 1.94 24.9 2444.4 1050 256.7 2.5 0.01 2.2 2.67 16 11:03 11:24 9 1.1 1.6 1.93 24 2401.4 1050 252.2 3 0.012 2.7 3.25 16.1 11:35 11:56 10 1.1 1.6 1.94 24.4 2411.8 1050 253.2 2.8 0.011 2.5 3.01 16 12:07 12:28 11 1.1 1.6 1.92 24 2395.1 1050 251.5 2.9 0.012 2.6 3.12 16 12 13 14 15 16 Gadsby Unit 4 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 4 SO2 Analyzer:Serial No.: CO2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System: Serial No.: Equivalent Emission Limit: Test Date SO2 Dry SO2 Dry SO2 Test Date % CO2 Dry 8/28/2025 RM CEMS Diff RM CEMS Diff RM CEMS Diff 8/28/2025 RM CEMS Diff Run#Start Time End Time ppm @ % O2 lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 6:35 6:56 1 6:35 6:56 2 7:07 7:28 2 7:07 7:28 3 7:39 8:00 3 7:39 8:00 4 8:12 8:33 4 8:12 8:33 5 8:44 9:05 5 8:44 9:05 6 9:17 9:38 6 9:17 9:38 7 9:49 10:10 7 9:49 10:10 8 10:21 10:42 8 10:21 10:42 9 11:03 11:24 9 11:03 11:24 10 11:35 11:56 10 11:35 11:56 11 12:07 12:28 11 12:07 12:28 12 12 13 13 14 14 15 15 16 16 Average = Average = Sd Standard Deviation = Sd Standard Deviation = Sd Standard Deviation = Sd Standard Deviation = Confidence Coefficient = Confidence Coefficient = Confidence Coefficient = Confidence Coefficient = RA - Relative Accuracy = RA RA RA - Relative Accuracy = n = 0 0 0 n = 0 or RA of 1% t0.975 = t0.975 = E.L. Relative Accuracy = a For steam generators;b Average of three samples;0 c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 2 For SO2 and NOx Continuous Emission Monitoring Systems 13.2 Relative accuracy Performance Specification. The RA of the CEMSS must be not greater than 20 percent when RM is used in the denominator of Eq. 2-6 (average emissions during test are greater than 50 percent of the emission standard)or 10 percent when the applicable emission standard is used in the denominator of Eq. 2-6 (average emissions during test are less than 50 percent of the emission standard). Up dated January 17, 2006 40 CFR 60 Performance Specification 3 For O2 and CO2 Continuous Emission Monitoring Systems 13.2 CEMS Relative Accuracy Perfromance Specification. The RA of the CEMS must be no grater than 20 percent of the mean value of the reference method (RM) data. 1 percent O2 or CO2. The results are also acceptable if the absolute value of the difference between the mean RM value and the mean CEMS value is less than or equal to 1.0 percent O2 (or CO2). Up dated September 14, 2016 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Gadsby Unit 4 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Division of Air Quality Relative Accuracy Test Audit of PacifiCorp Gadsby Unit 4 NOX Analyzer:Serial No.: O2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System: Serial No.: Equivalent Emission Limit:5.00 22.20 Date NOx Dry NOx Dry NOx Test Date % O2 Dry 8/28/2025 RM CEMS Diff RM CEMS Diff RM CEMS Diff 9/30/2014 RM CEMS Diff Run#Start Time End Time ppm @ 15% O2 lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 6:35 6:56 1.5 2.14 0.006 0.008 1.42 2 1 6:35 6:56 Y 16.0 16.1 -0.100 2 7:07 7:28 1.8 2.27 0.006 0.008 1.62 2.1 2 7:07 7:28 Y 16.2 16.1 0.142 3 7:39 8:00 Y 2.2 2.62 -0.4 Y 0.008 0.01 -0.002 Y 2.07 2.4 -0.33 3 7:39 8:00 Y 16.3 16.1 0.195 4 8:12 8:33 Y 1.1 1.4 -0.3 Y 0.004 0.005 -0.001 Y 1.04 1.3 -0.27 4 8:12 8:33 Y 16.2 16.1 0.104 5 8:44 9:05 Y 3.1 3.47 -0.4 Y 0.011 0.013 -0.002 Y 2.85 3.2 -0.35 5 8:44 9:05 Y 16.2 16.1 0.137 6 9:17 9:38 Y 2.4 2.39 0.0 Y 0.009 0.009 0.000 Y 2.29 2.2 0.09 6 9:17 9:38 Y 16.2 16 0.207 7 9:49 10:10 Y 2.4 2.69 -0.3 Y 0.009 0.01 -0.001 Y 2.27 2.5 -0.23 7 9:49 10:10 Y 16.2 16.1 0.115 8 10:21 10:42 Y 2.4 2.67 -0.3 Y 0.009 0.01 -0.001 Y 2.24 2.5 -0.26 8 10:21 10:42 16.2 16 9 11:03 11:24 Y 3.0 3.25 -0.3 Y 0.011 0.012 -0.001 Y 2.74 3 -0.26 9 11:03 11:24 Y 16.2 16.1 0.081 10 11:35 11:56 Y 2.8 3.01 -0.3 Y 0.010 0.011 -0.001 Y 2.58 2.8 -0.23 10 11:35 11:56 Y 16.2 16 0.220 11 12:07 12:28 Y 3.0 3.12 -0.1 Y 0.011 0.012 -0.001 Y 2.77 2.9 -0.13 11 12:07 12:28 16.3 16 12 12 13 13 14 14 15 15 16 16 Average = 2.5 2.7 0.256 0.01 0.010 0.001 2.32 2.53 0.22 Average = 16.200 16.070 0.122 Sd Standard Deviation = 0.14 Sd Standard Deviation = 0.001 Sd Standard Deviation = 0.132 Sd Standard Deviation = 0.10 Confidence Coefficient = 0.105 Confidence Coefficient = 0.000 Confidence Coefficient = 0.101 Confidence Coefficient = 0.074 RA - Relative Accuracy = Relative Accuracy =11.10%Relative Accuracy = RA - Relative Accuracy =1.20% n = 9 9 9 n = 9 or RA of 1%0.13% t0.975 = 2.306 t0.975 = 2.306 t0.975 = 2.306 t0.975 = 2.306 E.L. Relative Accuracy = 50% 7.22% EMRA EMRA 10% 1.43% a For steam generators;b Average of three samples; c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 2 For SO2 and NOx Continuous Emission Monitoring Systems 4. Performance and Equipment Specifications 4.3 Relative accuracy. The RA of the CEMSS shall be no grater than 20 percent of the mean value of the RM test data in terms of the units of the emission standard or 10 percent of the applicable standard, whichever is greater For SO2 emission standards between 0.30 and 0.20 lbs./MMBtu use 15 Percent of the applicable standard; For SO2 emission standards below 0.20 lbs./MMBtu use 20 Percent of the emission standard; 40 CFR 60 Performance Specification 3 For O2 and CO2 Continuous Emission Monitoring Systems 12. Calculate the arithmetic difference between the RM and the CEMSS output for each run. The average of the nine (of more) data sets constitute the RA. 13.2 Relative accuracy. The RA of the CEMSS must be no grater than 1 percent O2 or CO2. 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? PassedPassedPassedPassed 412Thermo 42C Servomex 1440D 411 Gadsby Unit 4 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Division of Air Quality Relative Accuracy Test Audit of PacifiCorp Gadsby Unit 4 CO Analyzer:Serial No.: Acquisition System: Acquisition System: Serial No.: Equivalent Emission Limit:10.00 26.90 Date CO Dry CO Dry CO 8/28/2025 RM CEMS Diff RM CEMS Diff RM CEMS Diff Run#Start Time End Time ppm @ 15% O2 lbs./MMBtu lbs./hr. 1 6:35 6:56 Y 1.11 1.97 0.86 0.002 Y 0.63 1.1 0.47 2 7:07 7:28 Y 1.23 2.15 0.92 0.003 Y 0.69 1.2 0.51 3 7:39 8:00 1.23 2.23 0.003 0.69 1.3 4 8:12 8:33 Y 1.24 2.14 0.90 0.003 Y 0.72 1.2 0.48 5 8:44 9:05 Y 1.07 2 0.93 0.002 Y 0.60 1.1 0.50 6 9:17 9:38 Y 0.99 1.91 0.92 0.002 Y 0.57 1.1 0.53 7 9:49 10:10 Y 1.02 1.95 0.93 0.002 Y 0.58 1.1 0.52 8 10:21 10:42 1.01 1.94 0.002 0.58 1.1 9 11:03 11:24 Y 1.03 1.93 0.90 0.002 Y 0.58 1.1 0.52 10 11:35 11:56 Y 1.06 1.94 0.88 0.002 Y 0.60 1.1 0.50 11 12:07 12:28 Y 1.07 1.92 0.85 0.002 Y 0.60 1.1 0.50 12 13 14 15 16 Average = 1.09 1.99 0.90 0.62 1.12 0.50 Sd Standard Deviation = 0.03 0.018 Confidence Coefficient = 0.023 0.01 RA - Relative Accuracy = n = 9 0 9 t0.975 = 2.306 2.306 E.L. Relative Accuracy = 11%9.22%2% 1.92% a For steam generators;b Average of three samples; c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 4 For Carbon Monoxide (CO) Continuous Emission Monitoring Systems applicable emission standard is used to calculate RA. 40 CFR 60 Performance Specification 4A For Carbon Monoxide (CO) Continuous Emission Monitoring Systems 13.2 Relative accuracy. The RA of the CEMSS must be no greater than 10 percent when the average RM value is used to calculate RA, 5 percent when the applicable emission standard is used to calculate RA, or within 5 ppmv when the RA is calculated as the absolute average difference between the RM and CEMSS plus the 2.5 percent confidence coefficient. 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 13.2 Relative accuracy. The RA of the CEMSS must be no grater than 10 percent when the average of the RM value is used to calculate RA or 5 percent when the Passed Passed Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Thermo 48C Gadsby Unit 4 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 4 SO2 Analyzer:Serial No.: CO2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System: Serial No.: Equivalent Emission Limit: Test Date SO2 Dry SO2 Dry SO2 Test Date % CO2 Dry 8/28/2025 RM CEMS Diff RM CEMS Diff RM CEMS Diff 8/28/2025 RM CEMS Diff Run#Start Time End Time ppm @ % O2 lbs./MMBtu lbs./hr. Run#Start Time End Time %c %c 1 6:35 6:56 1 6:35 6:56 2 7:07 7:28 2 7:07 7:28 3 7:39 8:00 3 7:39 8:00 4 8:12 8:33 4 8:12 8:33 5 8:44 9:05 5 8:44 9:05 6 9:17 9:38 6 9:17 9:38 7 9:49 10:10 7 9:49 10:10 8 10:21 10:42 8 10:21 10:42 9 11:03 11:24 9 11:03 11:24 10 11:35 11:56 10 11:35 11:56 11 12:07 12:28 11 12:07 12:28 12 12 13 13 14 14 15 15 16 16 Average = Average = Sd Standard Deviation = Sd Standard Deviation = Sd Standard Deviation = Sd Standard Deviation = Confidence Coefficient = Confidence Coefficient = Confidence Coefficient = Confidence Coefficient = RA - Relative Accuracy = RA RA RA - Relative Accuracy = n = 0 0 0 n = 0 or RA of 1% t0.975 = t0.975 = E.L. Relative Accuracy = a For steam generators;b Average of three samples; c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 2 For SO2 and NOx Continuous Emission Monitoring Systems 13.2 Relative accuracy Performance Specification. The RA of the CEMSS must be not greater than 20 percent when RM is used in the denominator of Eq. 2-6 (average emissions during test are greater than 50 percent of the emission standard)or 10 percent when the applicable emission standard is used in the denominator of Eq. 2-6 (average emissions during test are less than 50 percent of the emission standard). Up dated January 17, 2006 40 CFR 60 Performance Specification 3 For O2 and CO2 Continuous Emission Monitoring Systems 12. Calculate the arithmetic difference between the RM and the CEMSS output for each run. The average of the nine (of more) data sets constitute the RA. 13.2 Relative accuracy. The RA of the CEMSS must be no grater than 1 percent O2 or CO2. Up dated January 17, 2006 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Gadsby Unit 4 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Division of Air Quality Relative Accuracy Test Audit of PacifiCorp Gadsby Unit 4 NOX Analyzer:Serial No.: O2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System: Serial No.: Equivalent Emission Limit:5.00 22.20 Date NOx Dry NOx Dry NOx Test Date % O2 Dry 8/28/2025 RM CEMS Diff RM CEMS Diff RM CEMS Diff 8/28/2025 RM CEMS Diff Run#Start Time End Time ppm @ 15% O2 lbs./MMBtu lbs./hr. Run#Start Time End Time %c %c 1 6:35 6:56 1.5 0.006 1.42 1 6:35 6:56 16.0 2 7:07 7:28 1.8 0.006 1.62 2 7:07 7:28 16.2 3 7:39 8:00 2.2 0.008 2.07 3 7:39 8:00 16.3 4 8:12 8:33 1.1 0.004 1.04 4 8:12 8:33 16.2 5 8:44 9:05 3.1 0.011 2.85 5 8:44 9:05 16.2 6 9:17 9:38 2.4 0.009 2.29 6 9:17 9:38 16.2 7 9:49 10:10 2.4 0.009 2.27 7 9:49 10:10 16.2 8 10:21 10:42 2.4 0.009 2.24 8 10:21 10:42 16.2 9 11:03 11:24 3.0 0.011 2.74 9 11:03 11:24 16.2 10 11:35 11:56 2.8 0.010 2.58 10 11:35 11:56 16.2 11 12:07 12:28 3.0 0.011 2.77 11 12:07 12:28 16.3 12 12 13 13 14 14 15 15 16 16 Average = Average = Sd Standard Deviation = Sd Standard Deviation = Sd Standard Deviation = Sd Standard Deviation = Confidence Coefficient = Confidence Coefficient = Confidence Coefficient = Confidence Coefficient = RA - Relative Accuracy = Relative Accuracy = Relative Accuracy = RA - Relative Accuracy = n = 0 0 0 n = 0 or RA of 1% t0.975 = t0.975 = t0.975 = t0.975 = E.L. Relative Accuracy = EMRA EMRA a For steam generators;b Average of three samples; c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 2 For SO2 and NOx Continuous Emission Monitoring Systems 4. Performance and Equipment Specifications 4.3 Relative accuracy. The RA of the CEMSS shall be no grater than 20 percent of the mean value of the RM test data in terms of the units of the emission standard or 10 percent of the applicable standard, whichever is greater For SO2 emission standards between 0.30 and 0.20 lbs./MMBtu use 15 Percent of the applicable standard; For SO2 emission standards below 0.20 lbs./MMBtu use 20 Percent of the emission standard; 40 CFR 60 Performance Specification 3 For O2 and CO2 Continuous Emission Monitoring Systems 12. Calculate the arithmetic difference between the RM and the CEMSS output for each run. The average of the nine (of more) data sets constitute the RA. 13.2 Relative accuracy. The RA of the CEMSS must be no grater than 1 percent O2 or CO2. 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 Thermo 42C 412 Servomex 1440D 411 Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Gadsby Unit 4 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 4 Average Emission Dry SO2 NOX CO lbs./MMBtu 0.009 0.002 Average % concentration lbs./hr.2.17 0.62 CO2 O2 ppm corrected for %O2 2.33 1.10 16.21 Run 1 Enter O2 or CO2 Dry SO2 NOX CO CO2 O2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)5.64E-03 2.49E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 1.519E-07 6.708E-08 lbs./hr.1.42 0.63 16.00 ppm corrected for %O2 1.53 1.11 16.02 Run 2 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)6.44E-03 2.76E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 1.647E-07 7.065E-08 lbs./hr.1.62 0.69 16.24 ppm corrected for %O2 1.75 1.23 16.31 Raw Value Run 3 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)8.26E-03 2.77E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 2.090E-07 7.000E-08 lbs./hr.2.07 0.69 16.29 ppm corrected for %O2 2.24 1.23 16.35 Raw Value Run 4 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)4.01E-03 2.79E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 1.036E-07 7.194E-08 lbs./hr.1.04 0.72 16.20 ppm corrected for %O2 1.09 1.24 16.23 Raw Value Run 5 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)1.13E-02 2.39E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 2.888E-07 6.120E-08 lbs./hr.2.8472 0.60 16.24 ppm corrected for %O2 3.06 1.07 16.23 Raw Value Corrected For Cal. Drift Raw Value Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift O2 CO2 Clear lbs./MMBTU Gadsby Unit 4 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 4 O2 CO2 Clear lbs./MMBTU Run 6 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)8.94E-03 2.23E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 2.305E-07 5.751E-08 lbs./hr.2.2896 0.57 16.21 ppm corrected for %O2 2.43 0.99 16.17 Raw Value Run 7 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)8.95E-03 2.30E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 2.304E-07 5.911E-08 lbs./hr.2.27 0.58 16.22 ppm corrected for %O2 2.43 1.02 16.16 Raw Value Run 8 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)8.72E-03 2.26E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 2.249E-07 5.840E-08 lbs./hr.2.24 0.58 16.21 ppm corrected for %O2 2.37 1.01 16.13 Raw Value Run 9 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)1.09E-02 2.31E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 2.821E-07 5.983E-08 lbs./hr.2.74 0.58 16.18 ppm corrected for %O2 2.95 1.03 16.08 Raw Value Run 10 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)1.02E-02 2.38E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 2.615E-07 6.111E-08 lbs./hr.2.58 0.60 16.22 ppm corrected for %O2 2.76 1.06 16.06 Raw Value Run 11 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)1.10E-02 2.39E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 2.806E-07 6.096E-08 lbs./hr.2.77 0.60 16.26 ppm corrected for %O2 2.99 1.07 16.07 Raw Value Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Gadsby Unit 4 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Calibration Error Test Test Date August 28, 2025 O2 CS - Cal. Span 22.57 Units % Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level 0.00 0.10 0.10 0.44% Passed Cal. Mid-level 10.51 10.53 0.02 0.09% Passed Cal. High-level 22.57 22.55 0.02 0.09% Passed Cal. % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of CS - Cal. Span Low-Level 0.00% 40 to 60% of Cal. Span Mid-level 46.57% 100% of Cal. Span High-level 100.00% Test Date CO2 CS - Cal. Span Units % Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level Mid-level High-level % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 40 to 60% of Cal. Span Mid-level 100% of Cal. Span High-level Test Date SO2 CS - Cal. Span Units ppm Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level Mid-level High-level % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 40 to 60% of Cal. Span Mid-level 100% of Cal. Span High-level Test Date August 28, 2025 NOx CS - Cal. Span 9.02 Units ppm Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level 0.00 -0.01 0.01 0.111% Passed Cal. Mid-level 5.00 4.95 0.05 0.599% Passed Cal. High-level 9.02 9.02 0.00 0.033% Passed Cal. % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 0.00% 40 to 60% of Cal. Span Mid-level 55.50% 100% of Cal. Span High-level 100.00% Test Date August 28, 2025 CO 26.9 CS - Cal. Span 10.02 10 Units ppm Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level 0.00 0.08 0.08 0.798% Passed Cal. Mid-level 4.90 5.00 0.10 1.018% Passed Cal. High-level 10.02 10.04 0.02 0.200% Passed Cal. % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 0.00% 40 to 60% of Cal. Span Mid-level 48.88% 100% of Cal. Span High-level 100.00% Gadsby Unit 5 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Reference Methods 2, 3A, 6C, 7E, 10, & 19 Source Information Company Name PacifiCorp Gadsby Company Contact:Joseph Betenton Contact Phone No.(801) 220-7708 Stack Designation:Unit 5 Test & Review Dates Test Date:8/28/2024 Review Date: 4/4/2025 Observer:Not Observed Reviewer:Rob Leishman Emission Limits Emission Rates SO2 NOX CO SO2 NOX CO lbs./MMBtu lbs./hr. 22.2 26.9 3.371 1.016 ppm 5.0 10.00 3.459 1.712 %O2 Correction as a whole #15.00 15.00 Test Information Stack I.D. inches As ft^2 Y Dl H @ Cp Pbar Pq (static) Ps Stack Pressure 132.50 95.754 0 Contractor Information Contact:Andrew Bruning Contracting Company: Montrose Air Quality Services Address: 990 W 43rd Avenue, Denver, CO 80211 Phone No.: 303-810-2168 Project No.: 8710 Division of Air Quality Instrumental Reference Methods - Gaseous Measurements Round Method 19 - F factors for Coal, Oil, and Gas Fd Fw Fc dscf/MMBtu wscf/MMBtu scf/MMBtu Diluent F factor used O2 CO2 Anthracite 2 Bituminous 2 Lignite Natural Propane Butane 10100 COAL OIL GAS 9780 9860 9190 8710 8710 8710 10540 10640 11950 320 10610 10200 10390 1970 1800 1910 1420 1040 1190 1250 Wet CEM Correct For O2 CO2 Interference w/CO Yes Yes Yes Gadsby Unit 5 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Company PacifiCorp Gadsby Point Source Unit 5 Test Date 8/28/24 Start Time End Time Run CO lb/hr CO ppm CO ppm@15 % O2 Unit Load MW Gas Flow HSCFH Heat Btu/SCF Heat Input MMBtu/hr NOx lb/hr NOx lb/MMBtu NOx PPM NOx PPM @15% O2 O2 % 6:35 6:56 1 1.3 1.7 2.12 24 2506.4 1050 263.2 3.3 0.013 2.7 3.39 16.2 7:07 7:28 2 1.3 1.7 2.19 24.1 2496.1 1050 262.1 2.9 0.011 2.3 2.99 16.3 7:39 8:00 3 1.3 1.8 2.32 24 2490.6 1050 261.5 2.8 0.011 2.3 2.95 16.3 8:12 8:33 4 1.4 1.8 2.34 24.9 2562.8 1050 269.1 2.5 0.009 2 2.58 16.2 8:44 9:05 5 1.2 1.6 2.07 24.1 2514.3 1050 265 3.2 0.012 2.6 3.29 16.2 9:17 9:38 6 1.2 1.6 2 24.9 2535.4 1050 266.2 3.4 0.013 2.8 3.51 16.2 9:49 10:10 7 1.1 1.5 1.94 24.5 2519.8 1050 265.6 3.4 0.013 2.8 3.57 16.2 10:21 10:42 8 1.2 1.5 1.93 24.9 2547 1050 267.4 3.1 0.012 2.5 3.19 16.2 11:03 11:24 9 1.1 1.5 1.9 24 2511.1 1050 263.7 3.2 0.012 2.6 3.29 16.2 11:35 11:56 10 1.1 1.5 1.87 24.4 2519.5 1050 264.5 3.1 0.012 2.6 3.21 16.2 12:07 12:28 11 1.1 1.5 1.88 24 2504.9 1050 263 2.8 0.011 2.3 2.88 16.2 12 13 14 15 16 Gadsby Unit 5 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 5 SO2 Analyzer:Serial No.: CO2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System: Serial No.: Equivalent Emission Limit: Test Date SO2 Dry SO2 Dry SO2 Test Date % CO2 Dry 8/28/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 8/28/2024 RM CEMS Diff Run#Start Time End Time ppm @ % O2 lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 6:35 6:56 1 6:35 6:56 2 7:07 7:28 2 7:07 7:28 3 7:39 8:00 3 7:39 8:00 4 8:12 8:33 4 8:12 8:33 5 8:44 9:05 5 8:44 9:05 6 9:17 9:38 6 9:17 9:38 7 9:49 10:10 7 9:49 10:10 8 10:21 10:42 8 10:21 10:42 9 11:03 11:24 9 11:03 11:24 10 11:35 11:56 10 11:35 11:56 11 12:07 12:28 11 12:07 12:28 12 12 13 13 14 14 15 15 16 16 Average = Average = Sd Standard Deviation = Sd Standard Deviation = Sd Standard Deviation = Sd Standard Deviation = Confidence Coefficient = Confidence Coefficient = Confidence Coefficient = Confidence Coefficient = RA - Relative Accuracy = RA RA RA - Relative Accuracy = n = 0 0 0 n = 0 or RA of 1% t0.975 = t0.975 = E.L. Relative Accuracy = a For steam generators;b Average of three samples;0 c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 2 For SO2 and NOx Continuous Emission Monitoring Systems 13.2 Relative accuracy Performance Specification. The RA of the CEMSS must be not greater than 20 percent when RM is used in the denominator of Eq. 2-6 (average emissions during test are greater than 50 percent of the emission standard)or 10 percent when the applicable emission standard is used in the denominator of Eq. 2-6 (average emissions during test are less than 50 percent of the emission standard). Up dated January 17, 2006 40 CFR 60 Performance Specification 3 For O2 and CO2 Continuous Emission Monitoring Systems 13.2 CEMS Relative Accuracy Perfromance Specification. The RA of the CEMS must be no grater than 20 percent of the mean value of the reference method (RM) data. 1 percent O2 or CO2. The results are also acceptable if the absolute value of the difference between the mean RM value and the mean CEMS value is less than or equal to 1.0 percent O2 (or CO2). Up dated September 14, 2016 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Gadsby Unit 5 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Division of Air Quality Relative Accuracy Test Audit of PacifiCorp Gadsby Unit 5 NOX Analyzer:Serial No.: O2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System: Serial No.: Equivalent Emission Limit:5.00 22.20 Date NOx Dry NOx Dry NOx Test Date % O2 Dry 8/28/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 9/30/2014 RM CEMS Diff Run#Start Time End Time ppm @ 15% O2 lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 6:35 6:56 4.2 3.39 0.015 0.013 4.02 3.3 1 6:35 6:56 Y 16.3 16.2 0.060 2 7:07 7:28 3.4 2.99 0.013 0.011 3.28 2.9 2 7:07 7:28 Y 16.4 16.3 0.064 3 7:39 8:00 Y 3.2 2.95 0.2 Y 0.012 0.011 0.001 Y 3.07 2.8 0.27 3 7:39 8:00 Y 16.3 16.3 -0.028 4 8:12 8:33 Y 2.6 2.58 0.1 Y 0.010 0.009 0.001 Y 2.61 2.5 0.11 4 8:12 8:33 Y 16.2 16.2 -0.001 5 8:44 9:05 Y 3.5 3.29 0.3 Y 0.013 0.012 0.001 Y 3.44 3.2 0.24 5 8:44 9:05 Y 16.2 16.2 0.009 6 9:17 9:38 Y 3.8 3.51 0.3 Y 0.014 0.013 0.001 Y 3.70 3.4 0.30 6 9:17 9:38 Y 16.2 16.2 -0.044 7 9:49 10:10 Y 3.8 3.57 0.2 Y 0.014 0.013 0.001 Y 3.69 3.4 0.29 7 9:49 10:10 Y 16.1 16.2 -0.072 8 10:21 10:42 Y 3.4 3.19 0.2 Y 0.012 0.012 0.000 Y 3.32 3.1 0.22 8 10:21 10:42 16.1 16.2 9 11:03 11:24 Y 3.5 3.29 0.2 Y 0.013 0.012 0.001 Y 3.43 3.2 0.23 9 11:03 11:24 Y 16.1 16.2 -0.097 10 11:35 11:56 Y 3.5 3.21 0.3 Y 0.013 0.012 0.001 Y 3.44 3.1 0.34 10 11:35 11:56 16.1 16.2 11 12:07 12:28 Y 3.2 2.88 0.3 Y 0.012 0.011 0.001 Y 3.08 2.8 0.28 11 12:07 12:28 Y 16.2 16.2 -0.046 12 12 13 13 14 14 15 15 16 16 Average = 3.4 3.2 0.227 0.01 0.012 0.001 3.31 3.06 0.25 Average = 16.200 16.220 0.017 Sd Standard Deviation = 0.08 Sd Standard Deviation = 0.000 Sd Standard Deviation = 0.065 Sd Standard Deviation = 0.06 Confidence Coefficient = 0.061 Confidence Coefficient = 0.000 Confidence Coefficient = 0.050 Confidence Coefficient = 0.042 RA - Relative Accuracy =8.50%Relative Accuracy =8.30%Relative Accuracy = RA - Relative Accuracy =0.36% n = 9 9 9 n = 9 or RA of 1%0.02% t0.975 = 2.306 t0.975 = 2.306 t0.975 = 2.306 t0.975 = 2.306 E.L. Relative Accuracy = 68% EMRA EMRA 15% 1.37% a For steam generators;b Average of three samples; c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 2 For SO2 and NOx Continuous Emission Monitoring Systems 4. Performance and Equipment Specifications 4.3 Relative accuracy. The RA of the CEMSS shall be no grater than 20 percent of the mean value of the RM test data in terms of the units of the emission standard or 10 percent of the applicable standard, whichever is greater For SO2 emission standards between 0.30 and 0.20 lbs./MMBtu use 15 Percent of the applicable standard; For SO2 emission standards below 0.20 lbs./MMBtu use 20 Percent of the emission standard; 40 CFR 60 Performance Specification 3 For O2 and CO2 Continuous Emission Monitoring Systems 12. Calculate the arithmetic difference between the RM and the CEMSS output for each run. The average of the nine (of more) data sets constitute the RA. 13.2 Relative accuracy. The RA of the CEMSS must be no grater than 1 percent O2 or CO2. 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? PassedPassedPassedPassed 512Thermo 42C Servomex 1440D 511 Gadsby Unit 5 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Division of Air Quality Relative Accuracy Test Audit of PacifiCorp Gadsby Unit 5 CO Analyzer:Serial No.: Acquisition System: Acquisition System: Serial No.: Equivalent Emission Limit:10.00 26.90 Date CO Dry CO Dry CO 8/28/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff Run#Start Time End Time ppm @ 15% O2 lbs./MMBtu lbs./hr. 1 6:35 6:56 Y 1.80 2.12 0.32 0.004 1.07 1.3 2 7:07 7:28 Y 1.87 2.19 0.32 0.004 Y 1.10 1.3 0.20 3 7:39 8:00 1.92 2.32 0.004 Y 1.13 1.3 0.17 4 8:12 8:33 Y 2.08 2.34 0.26 0.005 Y 1.26 1.4 0.14 5 8:44 9:05 Y 1.71 2.07 0.36 0.004 Y 1.01 1.2 0.19 6 9:17 9:38 Y 1.65 2 0.35 0.004 Y 0.99 1.2 0.22 7 9:49 10:10 Y 1.58 1.94 0.36 0.004 Y 0.94 1.1 0.16 8 10:21 10:42 Y 1.62 1.93 0.31 0.004 0.97 1.2 9 11:03 11:24 1.53 1.9 0.003 Y 0.90 1.1 0.20 10 11:35 11:56 Y 1.53 1.87 0.34 0.003 Y 0.91 1.1 0.20 11 12:07 12:28 Y 1.54 1.88 0.34 0.003 Y 0.91 1.1 0.19 12 13 14 15 16 Average = 1.71 2.04 0.33 1.02 1.20 0.19 Sd Standard Deviation = 0.03 0.022 Confidence Coefficient = 0.024 0.02 RA - Relative Accuracy = n = 9 0 9 t0.975 = 2.306 2.306 E.L. Relative Accuracy = 17%3.53%4% 0.75% a For steam generators;b Average of three samples; c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 4 For Carbon Monoxide (CO) Continuous Emission Monitoring Systems applicable emission standard is used to calculate RA. 40 CFR 60 Performance Specification 4A For Carbon Monoxide (CO) Continuous Emission Monitoring Systems 13.2 Relative accuracy. The RA of the CEMSS must be no greater than 10 percent when the average RM value is used to calculate RA, 5 percent when the applicable emission standard is used to calculate RA, or within 5 ppmv when the RA is calculated as the absolute average difference between the RM and CEMSS plus the 2.5 percent confidence coefficient. 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 13.2 Relative accuracy. The RA of the CEMSS must be no grater than 10 percent when the average of the RM value is used to calculate RA or 5 percent when the Passed Passed Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Thermo 48C Gadsby Unit 5 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 5 SO2 Analyzer:Serial No.: CO2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System:Serial No.: Equivalent Emission Limit: Test Date SO2 Dry SO2 Dry SO2 Test Date % CO2 Dry 8/28/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 8/28/2024 RM CEMS Diff Run#Start Time End Time ppm @ % O2 lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 6:35 6:56 1 6:35 6:56 2 7:07 7:28 2 7:07 7:28 3 7:39 8:00 3 7:39 8:00 4 8:12 8:33 4 8:12 8:33 5 8:44 9:05 5 8:44 9:05 6 9:17 9:38 6 9:17 9:38 7 9:49 10:10 7 9:49 10:10 8 10:21 10:42 8 10:21 10:42 9 11:03 11:24 9 11:03 11:24 10 11:35 11:56 10 11:35 11:56 11 12:07 12:28 11 12:07 12:28 12 12 13 13 14 14 15 15 16 16 Average = Average = Sd Standard Deviation =Sd Standard Deviation = Confidence Coefficient =Confidence Coefficient = RA - Relative Accuracy =RA - Relative Accuracy = n =0 n =0 n =0 n =0 or RA of 1% t0.975 =t0.975 =t0.975 =t0.975 = BAF =No Bias a For steam generators;b Average of three samples;Alterative RAc Make sure that RM and M data are on a consistent basis either wet or dry. RATA Semiannual Test Annual SO2 RA < 10% RA < 7.5% OR < 12ppm ppm CO2 - The relative accuracy for CO2 monitors shall not exceed 10 percent. See Alternative Below Pt. 75, App. A 3.3.3 The relative accuracy for CO2 monitors shall not exceed 10 percent. Alternative - If the mean difference of the CO2 monitor measurements and the corresponding reference method measurement, calculated using Equation A7 Up dated September 25, 2017 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which ever is greater. Up dated January 17, 2006 Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Gadsby Unit 5 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Division of Air Quality Relative Accuracy Test Audit of PacifiCorp Gadsby Unit 5 NOX Analyzer:Serial No.: O2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System:Serial No.: Equivalent Emission Limit:5.00 22.20 Date NOx Dry NOx Dry NOx Test Date % O2 Dry 8/28/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 8/28/2024 RM CEMS Diff Run#Start Time End Time ppm @ 15% O2 lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 6:35 6:56 4.2 0.015 0.013 4.02 1 6:35 6:56 Y 16.3 16.2 0.060 2 7:07 7:28 3.4 0.013 0.011 3.28 2 7:07 7:28 Y 16.4 16.3 0.064 3 7:39 8:00 3.2 Y 0.012 0.011 0.00073 3.07 3 7:39 8:00 Y 16.3 16.3 -0.028 4 8:12 8:33 2.6 Y 0.010 0.009 0.00070 2.61 4 8:12 8:33 Y 16.2 16.2 -0.001 5 8:44 9:05 3.5 Y 0.013 0.012 0.00104 3.44 5 8:44 9:05 Y 16.2 16.2 0.009 6 9:17 9:38 3.8 Y 0.014 0.013 0.00088 3.70 6 9:17 9:38 Y 16.2 16.2 -0.044 7 9:49 10:10 3.8 Y 0.014 0.013 0.00094 3.69 7 9:49 10:10 Y 16.1 16.2 -0.072 8 10:21 10:42 3.4 Y 0.012 0.012 0.00041 3.32 8 10:21 10:42 16.1 16.2 9 11:03 11:24 3.5 Y 0.013 0.012 0.00102 3.43 9 11:03 11:24 Y 16.1 16.2 -0.097 10 11:35 11:56 3.5 Y 0.013 0.012 0.00100 3.44 10 11:35 11:56 16.1 16.2 11 12:07 12:28 3.2 Y 0.012 0.011 0.00072 3.08 11 12:07 12:28 Y 16.2 16.2 -0.046 12 12 13 13 14 14 15 15 16 16 Average = 0.012 0.012 0.00083 Average = 16.2 16.222 0.017 Sd Standard Deviation =Sd Standard Deviation =0.000 Sd Standard Deviation =Sd Standard Deviation =0.06 Confidence Coefficient =Confidence Coefficient =0.000 Confidence Coefficient =Confidence Coefficient =0.042 RA - Relative Accuracy =RA =6.60%RA =RA - Relative Accuracy =0.36% n =0 n =9 n =0 n =9 or RA of 1%0.02% t0.975 =t0.975 =2.306 t0.975 =t0.975 =2.306 Use BAF 1.07 a For steam generators;b Average of three samples; c Make sure that RM and M data are on a consistent basis either wet or dry. RATA Semiannually Annual NOx Multipliers NOX RA < 10% RA < 7.5% Old Multiplier New Multiplier Alternative RA For units where the average of the monitoring system measurements of NOX emission rate during the RATA is less than or equal to 0.20 lb./MMBtu, the mean value of the NOX continuous emission monitoring system For SO2 emission standards between 0.30 and 0.20 lbs./MMBtu use 15 Percent of the applicable standard; specification of 10.0 percent is not achieved. di (Rmi - CEMSi)0.001 Alterative RA Passed Passed Thermo 42C 512 Servomex 1440D 511 Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Gadsby Unit 5 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 5 Average Emission Dry SO2 NOX CO lbs./MMBtu 0.013 0.004 Average % concentration lbs./hr.3.37 1.02 CO2 O2 ppm corrected for %O2 3.46 1.71 16.18 Run 1 Enter O2 or CO2 Dry SO2 NOX CO CO2 O2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)1.53E-02 4.05E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 3.896E-07 1.032E-07 lbs./hr.4.02 1.07 16.26 ppm corrected for %O2 4.15 1.80 16.08 Run 2 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)1.25E-02 4.19E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 3.116E-07 1.043E-07 lbs./hr.3.28 1.10 16.36 ppm corrected for %O2 3.39 1.87 16.11 Raw Value Run 3 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)1.17E-02 4.32E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 2.983E-07 1.097E-07 lbs./hr.3.07 1.13 16.27 ppm corrected for %O2 3.18 1.92 16.14 Raw Value Run 4 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)9.70E-03 4.67E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 2.506E-07 1.207E-07 lbs./hr.2.61 1.26 16.20 ppm corrected for %O2 2.63 2.08 16.09 Raw Value Run 5 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)1.30E-02 3.84E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 3.361E-07 9.905E-08 lbs./hr.3.4437 1.01 16.21 ppm corrected for %O2 3.54 1.71 16.09 Raw Value Corrected For Cal. Drift Raw Value Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift O2 CO2 Clear lbs./MMBTU Gadsby Unit 5 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 5 O2 CO2 Clear lbs./MMBTU Run 6 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)1.39E-02 3.70E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 3.618E-07 9.645E-08 lbs./hr.3.6957 0.99 16.16 ppm corrected for %O2 3.77 1.65 16.08 Raw Value Run 7 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)1.39E-02 3.55E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 3.655E-07 9.308E-08 lbs./hr.3.69 0.94 16.13 ppm corrected for %O2 3.78 1.58 16.15 Raw Value Run 8 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)1.24E-02 3.62E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 3.275E-07 9.561E-08 lbs./hr.3.32 0.97 16.10 ppm corrected for %O2 3.37 1.62 16.14 Raw Value Run 9 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)1.30E-02 3.42E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 3.432E-07 9.015E-08 lbs./hr.3.43 0.90 16.10 ppm corrected for %O2 3.53 1.53 16.16 Raw Value Run 10 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)1.30E-02 3.42E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 3.444E-07 9.061E-08 lbs./hr.3.44 0.91 16.08 ppm corrected for %O2 3.53 1.53 16.12 Raw Value Run 11 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)1.17E-02 3.46E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 3.056E-07 9.015E-08 lbs./hr.3.08 0.91 16.15 ppm corrected for %O2 3.18 1.54 16.13 Raw Value Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Gadsby Unit 5 RATA RM 3A, 7E, 10, & 19 - (tested 8-28-2024) Calibration Error Test Test Date August 28, 2024 O2 CS - Cal. Span 22.57 Units % Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level 0.00 0.06 0.06 0.27% Passed Cal. Mid-level 10.51 10.54 0.03 0.13% Passed Cal. High-level 22.57 22.61 0.04 0.18% Passed Cal. % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of CS - Cal. Span Low-Level 0.00% 40 to 60% of Cal. Span Mid-level 46.57% 100% of Cal. Span High-level 100.00% Test Date CO2 CS - Cal. Span Units % Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level Mid-level High-level % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 40 to 60% of Cal. Span Mid-level 100% of Cal. Span High-level Test Date SO2 CS - Cal. Span Units ppm Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level Mid-level High-level % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 40 to 60% of Cal. Span Mid-level 100% of Cal. Span High-level Test Date August 28, 2024 NOx CS - Cal. Span 9.02 Units ppm Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level 0.00 0.00 0.00 0.000% Passed Cal. Mid-level 5.00 4.96 0.04 0.488% Passed Cal. High-level 9.02 8.88 0.14 1.519% Passed Cal. % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 0.00% 40 to 60% of Cal. Span Mid-level 55.50% 100% of Cal. Span High-level 100.00% Test Date August 28, 2024 CO 26.9 CS - Cal. Span 10.02 10 Units ppm Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level 0.00 0.11 0.11 1.098% Passed Cal. Mid-level 4.90 5.08 0.18 1.816% Passed Cal. High-level 10.02 10.07 0.05 0.499% Passed Cal. % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 0.00% 40 to 60% of Cal. Span Mid-level 48.88% 100% of Cal. Span High-level 100.00% Gadsby Unit 6 RATA RM 3A, 7E, 10, & 19 - (tested 8-29-2024) Reference Methods 2, 3A, 6C, 7E, 10, & 19 Source Information Company Name PacifiCorp Gadsby Company Contact:Joseph Betenton Contact Phone No.(801) 220-7708 Stack Designation:Unit 6 Test & Review Dates Test Date:8/29/2024 Review Date: 4/7/2025 Observer:Not Observed Reviewer:Rob Leishman Emission Limits Emission Rates SO2 NOX CO SO2 NOX CO lbs./MMBtu lbs./hr. 22.2 26.9 2.208 0.764 ppm 5.0 10.00 2.336 1.328 %O2 Correction as a whole #15.00 15.00 Test Information Stack I.D. inches As ft^2 Y Dl H @ Cp Pbar Pq (static) Ps Stack Pressure 132.50 95.754 0 Contractor Information Contact:Andrew Bruning Contracting Company: Montrose Air Quality Services Address: 990 W 43rd Avenue, Denver, CO 80211 Phone No.: 303-810-2168 Project No.: 8710 Division of Air Quality Instrumental Reference Methods - Gaseous Measurements Round Method 19 - F factors for Coal, Oil, and Gas Fd Fw Fc dscf/MMBtu wscf/MMBtu scf/MMBtu Diluent F factor used O2 CO2 Anthracite 2 Bituminous 2 Lignite Natural Propane Butane 10100 COAL OIL GAS 9780 9860 9190 8710 8710 8710 10540 10640 11950 320 10610 10200 10390 1970 1800 1910 1420 1040 1190 1250 Wet CEM Correct For O2 CO2 Interference w/CO Yes Yes Yes Gadsby Unit 6 RATA RM 3A, 7E, 10, & 19 - (tested 8-29-2024) Company PacifiCorp Gadsby Point Source Unit 6 Test Date 8/29/24 Start Time End Time Run CO lb/hr CO ppm CO ppm@15 % O2 Unit Load MW Gas Flow HSCFH Heat Btu/SCF Heat Input MMBtu/hr NOx lb/hr NOx lb/MMBtu NOx PPM NOx PPM @15% O2 O2 % 6:40 7:01 1 1 1.4 1.84 24.9 2421.8 1050 154.3 2.5 0.01 2.1 2.78 16.3 7:08 7:29 2 0.9 1.2 1.56 25 2429.4 1050 255.1 2.1 0.008 1.7 2.22 16.3 7:37 7:58 3 0.9 1.2 1.59 25 2421.1 1050 254.2 2 0.008 1.7 2.15 16.3 8:07 8:28 4 0.9 1.2 1.54 25.3 2458.9 1050 258 2.3 0.009 1.9 2.4 16.3 8:36 8:57 5 0.9 1.3 1.66 25 2446.3 1050 256.9 2.3 0.009 1.9 2.38 16.3 9:05 9:26 6 1 1.3 1.72 25 2440.3 1050 256.2 2.4 0.009 2 2.55 16.3 9:35 9:56 7 0.8 1.1 1.43 24.9 2435.7 1050 255.7 2.3 0.009 1.9 2.38 16.3 10:04 10:25 8 0.8 1.1 1.36 25 2444 1050 256.6 2.4 0.009 2 2.51 16.3 10:34 10:55 9 0.8 1.1 1.37 25.1 2466.1 1050 258.9 2.3 0.009 1.9 2.45 16.2 11:03 11:24 10 0.8 1.1 1.35 25 264.4 1050 258.8 2.4 0.009 2 2.56 16.2 11 12 13 14 15 16 Gadsby Unit 6 RATA RM 3A, 7E, 10, & 19 - (tested 8-29-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 6 SO2 Analyzer:Serial No.: CO2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System: Serial No.: Equivalent Emission Limit: Test Date SO2 Dry SO2 Dry SO2 Test Date % CO2 Dry 8/29/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 8/29/2024 RM CEMS Diff Run#Start Time End Time ppm @ % O2 lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 6:40 7:01 1 6:40 7:01 2 7:08 7:29 2 7:08 7:29 3 7:37 7:58 3 7:37 7:58 4 8:07 8:28 4 8:07 8:28 5 8:36 8:57 5 8:36 8:57 6 9:05 9:26 6 9:05 9:26 7 9:35 9:56 7 9:35 9:56 8 10:04 10:25 8 10:04 10:25 9 10:34 10:55 9 10:34 10:55 10 11:03 11:24 10 11:03 11:24 11 11 12 12 13 13 14 14 15 15 16 16 Average = Average = Sd Standard Deviation = Sd Standard Deviation = Sd Standard Deviation = Sd Standard Deviation = Confidence Coefficient = Confidence Coefficient = Confidence Coefficient = Confidence Coefficient = RA - Relative Accuracy = RA RA RA - Relative Accuracy = n = 0 0 0 n = 0 or RA of 1% t0.975 = t0.975 = E.L. Relative Accuracy = a For steam generators;b Average of three samples;0 c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 2 For SO2 and NOx Continuous Emission Monitoring Systems 13.2 Relative accuracy Performance Specification. The RA of the CEMSS must be not greater than 20 percent when RM is used in the denominator of Eq. 2-6 (average emissions during test are greater than 50 percent of the emission standard)or 10 percent when the applicable emission standard is used in the denominator of Eq. 2-6 (average emissions during test are less than 50 percent of the emission standard). Up dated January 17, 2006 40 CFR 60 Performance Specification 3 For O2 and CO2 Continuous Emission Monitoring Systems 13.2 CEMS Relative Accuracy Perfromance Specification. The RA of the CEMS must be no grater than 20 percent of the mean value of the reference method (RM) data. 1 percent O2 or CO2. The results are also acceptable if the absolute value of the difference between the mean RM value and the mean CEMS value is less than or equal to 1.0 percent O2 (or CO2). Up dated September 14, 2016 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Gadsby Unit 6 RATA RM 3A, 7E, 10, & 19 - (tested 8-29-2024) Division of Air Quality Relative Accuracy Test Audit of PacifiCorp Gadsby Unit 6 NOX Analyzer:Serial No.: O2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System: Serial No.: Equivalent Emission Limit:5.00 22.20 Date NOx Dry NOx Dry NOx Test Date % O2 Dry 8/29/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 9/30/2014 RM CEMS Diff Run#Start Time End Time ppm @ 15% O2 lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 6:40 7:01 Y 2.6 2.78 -0.2 Y 0.009 0.01 -0.001 Y 2.40 2.5 -0.10 1 6:40 7:01 Y 16.5 16.3 0.151 2 7:08 7:29 Y 2.2 2.22 0.0 Y 0.008 0.008 0.000 Y 2.09 2.1 -0.01 2 7:08 7:29 16.6 16.3 3 7:37 7:58 Y 2.1 2.15 0.0 Y 0.008 0.008 0.000 Y 2.00 2 0.01 3 7:37 7:58 Y 16.6 16.3 0.255 4 8:07 8:28 Y 2.3 2.4 -0.1 Y 0.009 0.009 0.000 Y 2.22 2.3 -0.08 4 8:07 8:28 Y 16.4 16.3 0.110 5 8:36 8:57 Y 2.3 2.38 0.0 Y 0.009 0.009 0.000 Y 2.21 2.3 -0.09 5 8:36 8:57 Y 16.4 16.3 0.118 6 9:05 9:26 Y 2.5 2.55 -0.1 Y 0.009 0.009 0.000 Y 2.34 2.4 -0.06 6 9:05 9:26 Y 16.5 16.3 0.165 7 9:35 9:56 Y 2.4 2.38 0.0 Y 0.009 0.009 0.000 Y 2.22 2.3 -0.08 7 9:35 9:56 Y 16.5 16.3 0.241 8 10:04 10:25 2.3 2.51 -0.2 0.009 0.009 2.21 2.4 8 10:04 10:25 Y 16.3 16.3 -0.042 9 10:34 10:55 Y 2.2 2.45 -0.2 Y 0.008 0.009 -0.001 Y 2.13 2.3 -0.17 9 10:34 10:55 Y 16.2 16.2 -0.031 10 11:03 11:24 Y 2.4 2.56 -0.2 Y 0.009 0.009 0.000 Y 2.25 2.4 -0.15 10 11:03 11:24 Y 16.2 16.2 -0.012 11 11 12 12 13 13 14 14 15 15 16 16 Average = 2.3 2.4 0.102 0.01 0.009 0.000 2.21 2.29 0.08 Average = 16.380 16.270 0.106 Sd Standard Deviation = 0.09 Sd Standard Deviation = 0.000 Sd Standard Deviation = 0.056 Sd Standard Deviation = 0.11 Confidence Coefficient = 0.063 Confidence Coefficient = 0.000 Confidence Coefficient = 0.043 Confidence Coefficient = 0.086 RA - Relative Accuracy = Relative Accuracy =0.00%Relative Accuracy = RA - Relative Accuracy =1.17% n = 10 9 9 n = 9 or RA of 1%0.11% t0.975 = 2.262 t0.975 = 2.306 t0.975 = 2.306 t0.975 = 2.306 E.L. Relative Accuracy = 47% 3.30% EMRA EMRA 10% 0.56% a For steam generators;b Average of three samples; c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 2 For SO2 and NOx Continuous Emission Monitoring Systems 4. Performance and Equipment Specifications 4.3 Relative accuracy. The RA of the CEMSS shall be no grater than 20 percent of the mean value of the RM test data in terms of the units of the emission standard or 10 percent of the applicable standard, whichever is greater For SO2 emission standards between 0.30 and 0.20 lbs./MMBtu use 15 Percent of the applicable standard; For SO2 emission standards below 0.20 lbs./MMBtu use 20 Percent of the emission standard; 40 CFR 60 Performance Specification 3 For O2 and CO2 Continuous Emission Monitoring Systems 12. Calculate the arithmetic difference between the RM and the CEMSS output for each run. The average of the nine (of more) data sets constitute the RA. 13.2 Relative accuracy. The RA of the CEMSS must be no grater than 1 percent O2 or CO2. 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? PassedPassedPassedPassed 612Thermo 42C Servomex 1440D 611 Gadsby Unit 6 RATA RM 3A, 7E, 10, & 19 - (tested 8-29-2024) Division of Air Quality Relative Accuracy Test Audit of PacifiCorp Gadsby Unit 6 CO Analyzer:Serial No.: Acquisition System: Acquisition System: Serial No.: Equivalent Emission Limit:10.00 26.90 Date CO Dry CO Dry CO 8/29/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff Run#Start Time End Time ppm @ 15% O2 lbs./MMBtu lbs./hr. 1 6:40 7:01 1.30 1.84 0.003 0.74 1 2 7:08 7:29 Y 1.33 1.56 0.23 0.003 Y 0.76 0.9 0.14 3 7:37 7:58 Y 1.35 1.59 0.24 0.003 Y 0.77 0.9 0.13 4 8:07 8:28 Y 1.31 1.54 0.23 0.003 Y 0.76 0.9 0.14 5 8:36 8:57 Y 1.33 1.66 0.33 0.003 Y 0.77 0.9 0.14 6 9:05 9:26 Y 1.37 1.72 0.35 0.003 Y 0.79 1 0.21 7 9:35 9:56 Y 1.41 1.43 0.02 0.003 Y 0.81 0.8 -0.01 8 10:04 10:25 Y 1.31 1.36 0.05 0.003 Y 0.75 0.8 0.05 9 10:34 10:55 Y 1.26 1.37 0.11 0.003 Y 0.73 0.8 0.07 10 11:03 11:24 Y 1.31 1.35 0.04 0.003 Y 0.76 0.8 0.04 11 12 13 14 15 16 Average = 1.33 1.51 0.18 0.77 0.87 0.10 Sd Standard Deviation = 0.13 0.069 Confidence Coefficient = 0.097 0.05 RA - Relative Accuracy = n = 9 0 9 t0.975 = 2.306 2.306 E.L. Relative Accuracy = 13%2.75%3% 0.57% a For steam generators;b Average of three samples; c Make sure that RM and M data are on a consistent basis either wet or dry. 40 CFR 60 Performance Specification 4 For Carbon Monoxide (CO) Continuous Emission Monitoring Systems applicable emission standard is used to calculate RA. 40 CFR 60 Performance Specification 4A For Carbon Monoxide (CO) Continuous Emission Monitoring Systems 13.2 Relative accuracy. The RA of the CEMSS must be no greater than 10 percent when the average RM value is used to calculate RA, 5 percent when the applicable emission standard is used to calculate RA, or within 5 ppmv when the RA is calculated as the absolute average difference between the RM and CEMSS plus the 2.5 percent confidence coefficient. 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which err is greater. Up dated January 17, 2006 13.2 Relative accuracy. The RA of the CEMSS must be no grater than 10 percent when the average of the RM value is used to calculate RA or 5 percent when the Passed Passed Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Thermo 48C Gadsby Unit 6 RATA RM 3A, 7E, 10, & 19 - (tested 8-29-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 6 SO2 Analyzer:Serial No.: CO2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System:Serial No.: Equivalent Emission Limit: Test Date SO2 Dry SO2 Dry SO2 Test Date % CO2 Dry 8/29/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 8/29/2024 RM CEMS Diff Run#Start Time End Time ppm @ % O2 lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 6:40 7:01 1 6:40 7:01 2 7:08 7:29 2 7:08 7:29 3 7:37 7:58 3 7:37 7:58 4 8:07 8:28 4 8:07 8:28 5 8:36 8:57 5 8:36 8:57 6 9:05 9:26 6 9:05 9:26 7 9:35 9:56 7 9:35 9:56 8 10:04 10:25 8 10:04 10:25 9 10:34 10:55 9 10:34 10:55 10 11:03 11:24 10 11:03 11:24 11 11 12 12 13 13 14 14 15 15 16 16 Average = Average = Sd Standard Deviation =Sd Standard Deviation = Confidence Coefficient =Confidence Coefficient = RA - Relative Accuracy =RA - Relative Accuracy = n =0 n =0 n =0 n =0 or RA of 1% t0.975 =t0.975 =t0.975 =t0.975 = BAF =No Bias a For steam generators;b Average of three samples;Alterative RAc Make sure that RM and M data are on a consistent basis either wet or dry. RATA Semiannual Test Annual SO2 RA < 10% RA < 7.5% OR < 12ppm ppm CO2 - The relative accuracy for CO2 monitors shall not exceed 10 percent. See Alternative Below Pt. 75, App. A 3.3.3 The relative accuracy for CO2 monitors shall not exceed 10 percent. Alternative - If the mean difference of the CO2 monitor measurements and the corresponding reference method measurement, calculated using Equation A7 Up dated September 25, 2017 40 CFR 60 Performance Specification 6 For Continuous Emission Rate Monitoring Systems (CERMS) 13.2 CERMS Relative Accuracy. The RA of the CERMS shall be no greater than 20 percent of the mean value of the RM's test data in terms of the nits of the emission standard, or 10 percent of the applicable standard, which ever is greater. Up dated January 17, 2006 Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Gadsby Unit 6 RATA RM 3A, 7E, 10, & 19 - (tested 8-29-2024) Division of Air Quality Relative Accuracy Test Audit of PacifiCorp Gadsby Unit 6 NOX Analyzer:Serial No.: O2 Analyzer:Serial No.: Acquisition System:Serial No.: Acquisition System:Serial No.: Equivalent Emission Limit:5.00 22.20 Date NOx Dry NOx Dry NOx Test Date % O2 Dry 8/29/2024 RM CEMS Diff RM CEMS Diff RM CEMS Diff 8/29/2024 RM CEMS Diff Run#Start Time End Time ppm @ 15% O2 lbs./MMBtu lbs./hr. Run# Start Time End Time %c %c 1 6:40 7:01 2.6 Y 0.009 0.01 -0.00055 2.40 1 6:40 7:01 Y 16.5 16.3 0.151 2 7:08 7:29 2.2 Y 0.008 0.008 0.00019 2.09 2 7:08 7:29 16.6 16.3 3 7:37 7:58 2.1 Y 0.008 0.008 -0.00011 2.00 3 7:37 7:58 Y 16.6 16.3 0.255 4 8:07 8:28 2.3 Y 0.009 0.009 -0.00042 2.22 4 8:07 8:28 Y 16.4 16.3 0.110 5 8:36 8:57 2.3 Y 0.009 0.009 -0.00039 2.21 5 8:36 8:57 Y 16.4 16.3 0.118 6 9:05 9:26 2.5 Y 0.009 0.009 0.00012 2.34 6 9:05 9:26 Y 16.5 16.3 0.165 7 9:35 9:56 2.4 Y 0.009 0.009 -0.00033 2.22 7 9:35 9:56 Y 16.5 16.3 0.241 8 10:04 10:25 2.3 Y 0.009 0.009 -0.00038 2.21 8 10:04 10:25 Y 16.3 16.3 -0.042 9 10:34 10:55 2.2 0.008 0.009 2.13 9 10:34 10:55 Y 16.2 16.2 -0.031 10 11:03 11:24 2.4 Y 0.009 0.009 -0.00029 2.25 10 11:03 11:24 Y 16.2 16.2 -0.012 11 11 12 12 13 13 14 14 15 15 16 16 Average = 0.009 0.009 0.00024 Average = 16.4 16.278 0.106 Sd Standard Deviation =Sd Standard Deviation =0.000 Sd Standard Deviation =Sd Standard Deviation =0.11 Confidence Coefficient =Confidence Coefficient =0.000 Confidence Coefficient =Confidence Coefficient =0.086 RA - Relative Accuracy =RA =2.80%RA =RA - Relative Accuracy =1.17% n =0 n =9 n =0 n =9 or RA of 1%0.11% t0.975 =t0.975 =2.306 t0.975 =t0.975 =2.306 No Bias a For steam generators;b Average of three samples; c Make sure that RM and M data are on a consistent basis either wet or dry. RATA Semiannually Annual NOx Multipliers NOX RA < 10% RA < 7.5% Old Multiplier New Multiplier Alternative RA For units where the average of the monitoring system measurements of NOX emission rate during the RATA is less than or equal to 0.20 lb./MMBtu, the mean value of the NOX continuous emission monitoring system For SO2 emission standards between 0.30 and 0.20 lbs./MMBtu use 15 Percent of the applicable standard; specification of 10.0 percent is not achieved. di (Rmi - CEMSi)0.000 Alterative RA Passed Passed Thermo 42C 612 Servomex 1440D 611 Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Ac t i v a t e R u n ? Gadsby Unit 6 RATA RM 3A, 7E, 10, & 19 - (tested 8-29-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 6 Average Emission Dry SO2 NOX CO lbs./MMBtu 0.009 0.003 Average % concentration lbs./hr.2.21 0.76 CO2 O2 ppm corrected for %O2 2.34 1.33 16.40 Run 1 Enter O2 or CO2 Dry SO2 NOX CO CO2 O2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)9.45E-03 2.91E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 2.310E-07 7.119E-08 lbs./hr.2.40 0.74 16.45 ppm corrected for %O2 2.57 1.30 16.27 Run 2 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)8.19E-03 2.99E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 1.937E-07 7.077E-08 lbs./hr.2.09 0.76 16.59 ppm corrected for %O2 2.22 1.33 16.34 Raw Value Run 3 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)7.89E-03 3.02E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 1.883E-07 7.218E-08 lbs./hr.2.00 0.77 16.55 ppm corrected for %O2 2.14 1.35 16.34 Raw Value Run 4 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)8.58E-03 2.95E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 2.117E-07 7.272E-08 lbs./hr.2.22 0.76 16.41 ppm corrected for %O2 2.33 1.31 16.30 Raw Value Run 5 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)8.61E-03 2.98E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 2.119E-07 7.336E-08 lbs./hr.2.2108 0.77 16.42 ppm corrected for %O2 2.34 1.33 16.30 Raw Value Corrected For Cal. Drift Raw Value Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift O2 CO2 Clear lbs./MMBTU Gadsby Unit 6 RATA RM 3A, 7E, 10, & 19 - (tested 8-29-2024) Division of Air Quality NSPS Relative Accuracy Performance Specification Test - CEMS Certification PacifiCorp Gadsby Unit 6 O2 CO2 Clear lbs./MMBTU Run 6 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)9.12E-03 3.07E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 2.223E-07 7.470E-08 lbs./hr.2.3380 0.79 16.47 ppm corrected for %O2 2.48 1.37 16.26 Raw Value Run 7 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)8.67E-03 3.16E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 2.077E-07 7.561E-08 lbs./hr.2.22 0.81 16.54 ppm corrected for %O2 2.35 1.41 16.28 Raw Value Run 8 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)8.62E-03 2.94E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 2.199E-07 7.489E-08 lbs./hr.2.21 0.75 16.26 ppm corrected for %O2 2.34 1.31 16.06 Raw Value Run 9 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)8.23E-03 2.84E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 2.138E-07 7.370E-08 lbs./hr.2.13 0.73 16.17 ppm corrected for %O2 2.23 1.26 16.04 Raw Value Run 10 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)8.71E-03 2.95E-03 E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft 2.254E-07 7.631E-08 lbs./hr.2.25 0.76 16.19 ppm corrected for %O2 2.36 1.31 16.04 Raw Value Run 11 Dry SO2 NOX CO CO2 O2 Atomic Weight 64 46 28 lbs./MMBtu (O2)E=Cd x Fd x (20.9/(20.9-%O2d)) lbs./MMBtu (CO2)E=Cd x Fc x (100 / % CO2d) lbs./cu.ft lbs./hr. ppm corrected for %O2 Raw Value Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Corrected For Cal. Drift Gadsby Unit 6 RATA RM 3A, 7E, 10, & 19 - (tested 8-29-2024) Calibration Error Test Test Date August 29, 2024 O2 CS - Cal. Span 22.57 Units % Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level 0.00 0.03 0.03 0.13% Passed Cal. Mid-level 10.51 10.58 0.07 0.31% Passed Cal. High-level 22.57 22.59 0.02 0.09% Passed Cal. % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of CS - Cal. Span Low-Level 0.00% 40 to 60% of Cal. Span Mid-level 46.57% 100% of Cal. Span High-level 100.00% Test Date CO2 CS - Cal. Span Units % Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level Mid-level High-level % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 40 to 60% of Cal. Span Mid-level 100% of Cal. Span High-level Test Date SO2 CS - Cal. Span Units ppm Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level Mid-level High-level % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 40 to 60% of Cal. Span Mid-level 100% of Cal. Span High-level Test Date August 29, 2024 NOx CS - Cal. Span 9.02 Units ppm Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level 0.00 0.00 0.00 0.000% Passed Cal. Mid-level 5.00 5.15 0.15 1.619% Passed Cal. High-level 9.02 8.95 0.07 0.743% Passed Cal. % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 0.00% 40 to 60% of Cal. Span Mid-level 55.50% 100% of Cal. Span High-level 100.00% Test Date August 29, 2024 CO 26.9 CS - Cal. Span 10.02 10 Units ppm Cylinder No. Expiration Date Cal. Gas CV- Certified Concentration CDir or CS - Measured Concentration Difference ACE Eq. 7E-1 Analyzer Cal. Error Status Low-level 0.00 0.09 0.09 0.898% Passed Cal. Mid-level 4.97 4.95 0.02 0.240% Passed Cal. High-level 10.02 9.97 0.05 0.499% Passed Cal. % of Span Sec. 8.2.1 Cal Gas Verification 0 to 20% of Cal. Span Low-Level 0.00% 40 to 60% of Cal. Span Mid-level 49.64% 100% of Cal. Span High-level 100.00%