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WKDWOLPLWWKHDPRXQWRIFHUWDLQFRQWDPLQDQWVLQZDWHUSURYLGHGE\SXEOLFZDWHUV\VWHPV)'$UHJXODWLRQVHVWDEOLVKOLPLWV IRUFRQWDPLQDQWVLQERWWOHGZDWHUZKLFKPXVWSURYLGHWKHVDPHSURWHFWLRQIRUSXEOLFKHDOWK0D[LPXP&RQWDPLQDQW /HYHOV 0&/¶V DUHVHWDWYHU\VWULQJHQWOHYHOV7RXQGHUVWDQGWKHSRVVLEOHKHDOWKHIIHFWVGHVFULEHGIRUPDQ\UHJXODWHG FRQVWLWXHQWVDSHUVRQZRXOGKDYHWRGULQN OLWHUVRIZDWHUHYHU\GD\DWWKH0&/OHYHOIRUDOLIHWLPHWRKDYHDRQH-LQ-D- PLOOLRQFKDQFHRIKDYHWKHGHVFULEHGKHDOWKHIIHFW Low High Ave Total Coliform Bacteria NO Layton City N/A 0 Presence of coliform bacteria in less than 5% of monthly samples Monthly in 2020 Naturally present in the environment ND 0.05 0.025 Layton City Must not exceed 5.0 2019-2020 N/A 0.08 N/A Weber Basin 0.3 in at least 95% of samples 2020 Gross Alpha Particles NO 1.0 0.2 1.1 2.6 1.05 1.10 Layton City Weber Basin pCi/L 0 15 2019-2020 2016-2020 Erosion of natural deposits Gross Beta Particles NO 1.9 4.4 2.62 Weber Basin pCi/L 0 50 2016-2020 Decay of natural and man-made deposits Radium 228 NO 0.28 0.38 0.30 1.7 0.29 0.808 Layton City Weber Basin pCi/L 0 5 2019-2020 2016-2020 Erosion of natural deposits Arsenic NO 0.60 ND 1.40 1.30 1.0 0.433 Layton City Weber Basin ppb 0 10 2019-2020 2017-2019 Erosion of natural deposits; runoff from orchards; runoff from glass and electronics production wastes Barium NO 0.111 0.091 0.113 0.179 0.112 0.121 Layton City Weber Basin ppm 2 2 2019-2020 2017-2019 Discharge of drilling wastes and from metal refineries; erosion of natural deposits Cyanide NO ND 3.0 1.5 Layton City ppb 200 200 2019-2020 Discharge from plastic and fertilizer factories; Discharge from steel/metal factories Fluoride NO ND 0.083 1.3 1.50 0.70 0.649 Layton City Weber Basin ppm 4 4 2020 2017-2020 Water fluoridation additive; erosion of natural deposits; discharge from fertilizer and aluminum factories Nitrate NO 0.2 ND 0.5 1.8 0.35 0.559 Layton City Weber Basin ppm 10 10 2020 2017-2020 Runoff from fertilizer use; leaching from septic tanks; sewage; erosion of natural deposits Selenium NO 0.5 ND 0.5 0.700 0.5 0.433 Layton City Weber Basin ppb 50 50 2019-2020 2017-2019 Discharge from petroleum and metal refineries; erosion of natural deposits; discharge from mines Sodium NO 13.0 22.5 16.7 47.1 14.9 36.3 Layton City Weber Basin ppm None None 2019-2020 2017-2019 Erosion of natural deposits Sulfate2 NO 11.7 7.0 23.0 42.0 17.4 26.7 Layton City Weber Basin ppm None 1000 2019-2020 2017-2019 Erosion of natural deposits TDS3 NO 204 352 300 412 252 382 Layton City Weber Basin ppm None 2000 2019-2020 2017-2019 Erosion of natural deposits Copper (a) 90% results (b) # of sites that exceed AL NO Layton City ppm 1.3 1.3 August 2020 Corrosion of household plumbing systems; Erosion of natural deposits; Leaching from wood preservatives; Lead (a) 90% results (b) # of sites that exceed AL NO Layton City ppb 0 15 August 2020 Corrosion of household plumbing systems; erosion of natural deposits Contaminant Name Violation Low High Ave Source Unit MRDLG MRDL Sample Date Likely Contamination Source Chlorine NO 0 0.7 0.06 Layton City ppm 4 4 2020 Water additive used to control microbes Contaminant Name Violation Low High LRAA4 Source Unit MCLG MCL Sample Date Likely Contamination Source Total Trihalomethanes NO 0 9.6 32.6 36.9 18.23 20.9 Layton City Weber Basin ppb N/A 80 2020 2020 By-product of drinking water chlorination Haloacetic Acids NO 0 8.7 26.5 25.3 10.10 15.8 Layton City Weber Basin ppb N/A 60 2020 2020 By-product of drinking water chlorination HAA5 0 11.90 5.75 Layton City ppb N/A N/A 2018 HAA6Br 0 6.75 3.44 Layton City ppb N/A N/A 2018 HAA9 0 17.45 8.87 Layton City ppb N/A N/A 2018 Manganese 0 11.00 2.27 Layton City ppb N/A N/A 2018 LAYTON CITY WATER QUALITY TEST RESULTS Five-year period from 2016 - 2020 Level Detected Microbiological Contaminants Radioactive Contaminants Contaminant Name Violation Source Unit MCLG MCL Date of Most Recent Sample Likely Contamination Source <2.0% Turbidity1 NO 4 This value shows the highest locational running annual average (LRAA) during sampling year. Disinfectants and Disinfection By-Products (a) 0.428 (b) 0 (a) 1.121 (b) 0 Lead and Copper 3 If TDS is greater than 1,000 ppm the supplier shall demonstrate to the Utah Drinking Water Board that no better water is available. The Board shall not allow the use of an inferior source of water if a better source is available. Unregulated Contaminant Sampling (UCMR4) These are contaminants that some systems are required to monitor for but which EPA has not set MCLs 1 Turbidity is a measure of the cloudiness of the water. We monitor it because it is a good indicator of general water quailty. 2 If the sulfate level of a system is greater than 500 ppm, the supplier must satisfactorily demonstrate that no better water is available and that the water shall not be available for human consumption from commercial establishments. In no case shall water having a level above 1,000 ppm be used. 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