Detection of Poly- and Perfluoroalkyl Substances (PFASs) in U.S. Drinking Water Linked to Industrial Sites, Military Fire Training Areas, and Wastewater Treatment Plants

Обнаружение поли- и перфторалкильных веществ (PFAS) в питьевой воде США, связанное с промышленными объектами, военными площадками подготовки к тушению пожаров и очистными сооружениями сточных вод
Xindi C. Hu, David Q. Andrews, Andrew B. Lindstrom, Thomas A. Bruton, Laurel A. Schaider, Philippe Grandjean, Rainer Lohmann, Courtney C. Carignan, Arlene Blum, Simona Bălan, Christopher P. Higgins, Elsie M. Sunderland
2016-08-09

PFAS contaminationUCMR3drinking watermilitary fire training areasspatial analysis
Drinking water contamination with poly- and perfluoroalkyl substances (PFASs) poses risks to the developmental, immune, metabolic, and endocrine health of consumers. We present a spatial analysis of 2013-2015 national drinking water PFAS concentrations from the U.S. Environmental Protection Agency's (US EPA) third Unregulated Contaminant Monitoring Rule (UCMR3) program. The number of industrial sites that manufacture or use these compounds, the number of military fire training areas, and the number of wastewater treatment plants are all significant predictors of PFAS detection frequencies and concentrations in public water supplies. Among samples with detectable PFAS levels, each additional military site within a watershed's eight-digit hydrologic unit is associated with a 20% increase in PFHxS, a 10% increase in both PFHpA and PFOA, and a 35% increase in PFOS. The number of civilian airports with personnel trained in the use of aqueous film-forming foams is significantly associated with the detection of PFASs above the minimal reporting level. We find drinking water supplies for 6 million U.S. residents exceed US EPA's lifetime health advisory (70 ng/L) for PFOS and PFOA. Lower analytical reporting limits and additional sampling of smaller utilities serving <10000 individuals and private wells would greatly assist in further identifying PFAS contamination sources.
1
Civilian airports with personnel trained to use aqueous film-forming foams are significantly associated with PFAS detections above the minimal reporting level.
2
Drinking water supplies serving approximately 6 million U.S. residents exceed the EPA lifetime health advisory of 70 ng/L for PFOS and PFOA.
3
Each additional military site within a watershed is associated with 20% higher PFHxS, 10% higher PFHpA and PFOA, and 35% higher PFOS concentrations among detectable samples.
4
Industrial PFAS-manufacturing or using sites, military fire-training areas, and wastewater treatment plants significantly predict PFAS detection frequencies and concentrations in U.S. public drinking water.
5
Lower analytical reporting limits and expanded sampling of small utilities and private wells are needed to better identify PFAS contamination sources.

PFAS contamination in U.S. public drinking water supplies

Spatial distribution and source-related predictors of PFAS detection frequencies and concentrations, including associations with industrial sites, military fire training areas, wastewater treatment plants, and civilian airports

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2016-08-09
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Xindi C. Hu
David Q. Andrews
Andrew B. Lindstrom
Thomas A. Bruton
Laurel A. Schaider
Philippe Grandjean
Rainer Lohmann
Courtney C. Carignan
Arlene Blum
Simona Bălan
Christopher P. Higgins
Elsie M. Sunderland
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