Per- and polyfluoroalkyl substances (PFAS) in United States tapwater: Comparison of underserved private-well and public-supply exposures and associated health implications

被引:93
作者
Smalling, Kelly L. [1 ]
Romanok, Kristin M. [1 ]
Bradley, Paul M. [2 ]
Morriss, Mathew C. [3 ]
Gray, James L. [4 ]
Kanagy, Leslie K. [4 ]
Gordon, Stephanie E. [5 ]
Williams, Brianna M. [1 ]
Breitmeyer, Sara E. [1 ]
Jones, Daniel K. [3 ]
DeCicco, Laura A. [6 ]
Eagles-Smith, Collin A. [7 ]
Wagner, Tyler [8 ]
机构
[1] US Geol Survey, Lawrenceville, NJ 08648 USA
[2] US Geol Survey, Columbia, SC USA
[3] US Geol Survey, West Valley City, UT USA
[4] US Geol Survey, Lakewood, CO USA
[5] US Geol Survey, Kearneysville, WV USA
[6] US Geol Survey, Madison, WI USA
[7] US Geol Survey, Corvallis, OR USA
[8] Penn State Univ, Penn Cooperat Fish & Wildlife Res Unit, US Geol Survey, University Pk, PA USA
关键词
Per-and polyfluoroalkyl substances; Drinking-water; Public-supply; Private-wells; Sources; Health effect; DRINKING-WATER; ENVIRONMENTAL SURVEILLANCE; FLUORINATED ALTERNATIVES; PERFLUOROALKYL; CHEMICALS; DISTRIBUTIONS; PRECURSORS; CHALLENGES; MIXTURES; QUALITY;
D O I
10.1016/j.envint.2023.108033
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Drinking-water quality is a rising concern in the United States (US), emphasizing the need to broadly assess exposures and potential health effects at the point-of-use. Drinking-water exposures to per- and poly-fluoroalkyl substances (PFAS) are a national concern, however, there is limited information on PFAS in residential tapwater at the point-of-use, especially from private-wells. We conducted a national reconnaissance to compare human PFAS exposures in unregulated private-well and regulated public-supply tapwater. Tapwater from 716 locations (269 private-wells; 447 public supply) across the US was collected during 2016-2021 including three locations where temporal sampling was conducted. Concentrations of PFAS were assessed by three laboratories and compared with land-use and potential-source metrics to explore drivers of contamination. The number of individual PFAS observed ranged from 1 to 9 (median: 2) with corresponding cumulative concentrations (sum of detected PFAS) ranging from 0.348 to 346 ng/L. Seventeen PFAS were observed at least once with PFBS, PFHxS and PFOA observed most frequently in approximately 15% of the samples. Across the US, PFAS profiles and estimated median cumulative concentrations were similar among private wells and public-supply tapwater. We estimate that at least one PFAS could be detected in about 45% of US drinking-water samples. These detection probabilities varied spatially with limited temporal variation in concentrations/numbers of PFAS detected. Benchmark screening approaches indicated potential human exposure risk was dominated by PFOA and PFOS, when detected. Potential source and land-use information was related to cumulative PFAS concentrations, and the number of PFAS detected; however, corresponding relations with specific PFAS were limited likely due to low detection frequencies and higher detection limits. Information generated supports the need for further assessments of cumulative health risks of PFAS as a class and in combination with other co-occurring contaminants, particularly in unmonitored private-wells where information is limited or not available.
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页数:12
相关论文
共 101 条
[1]   Mixture effects in samples of multiple contaminants - An inter-laboratory study with manifold bioassays [J].
Altenburger, Rolf ;
Scholze, Martin ;
Busch, Wibke ;
Escher, Beate I. ;
Jakobs, Gianina ;
Krauss, Martin ;
Krueger, Janet ;
Neale, Peta A. ;
Ait-Aissa, Selim ;
Almeida, Ana Catarina ;
Seiler, Thomas-Benjamin ;
Brion, Francois ;
Hilscherova, Klara ;
Hollert, Henner ;
Novak, Jiri ;
Schlichting, Rita ;
Serra, Helene ;
Shao, Ying ;
Tindall, Andrew ;
Tolefsen, Knut-Erik ;
Umbuzeiro, Gisela ;
Williams, Tim D. ;
Kortenkamp, Andreas .
ENVIRONMENT INTERNATIONAL, 2018, 114 :95-106
[2]   Population-Wide Exposure to Per- and Polyfluoroalkyl Substances from Drinking Water in the United States [J].
Andrews, David Q. ;
Naidenko, Olga, V .
ENVIRONMENTAL SCIENCE & TECHNOLOGY LETTERS, 2020, 7 (12) :931-936
[3]   Perfluoroalkyl and polyfluoroalkyl substances and measures of human fertility: a systematic review [J].
Bach, Cathrine Carlsen ;
Vested, Anne ;
Jorgensen, Kristian Tore ;
Bonde, Jens Peter Ellekilde ;
Henriksen, Tine Brink ;
Toft, Gunnar .
CRITICAL REVIEWS IN TOXICOLOGY, 2016, 46 (09) :735-755
[4]   Degradation of PFOA Substitute: GenX (HFPO-DA Ammonium Salt): Oxidation with UV/Persulfate or Reduction with UV/Sulfite? [J].
Bao, Yixiang ;
Deng, Shanshan ;
Jiang, Xinshu ;
Qu, Yingxi ;
He, Yuan ;
Liu, Liquan ;
Chai, Qiwan ;
Mumtaz, Mehvish ;
Huang, Jun ;
Cagnetta, Giovanni ;
Yu, Gang .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2018, 52 (20) :11728-11734
[5]   Perfluorooctanoic Acid (PFOA) Exposures and Incident Cancers among Adults Living Near a Chemical Plant [J].
Barry, Vaughn ;
Winquist, Andrea ;
Steenland, Kyle .
ENVIRONMENTAL HEALTH PERSPECTIVES, 2013, 121 (11-12) :1313-1318
[6]  
Binns HJ, 2009, PEDIATRICS, V123, P1599, DOI 10.1542/peds.2009-0751
[7]   An "EAR" on Environmental Surveillance and Monitoring: A Case Study on the Use of Exposure Activity Ratios (EARs) to Prioritize Sites, Chemicals, and Bioactivities of Concern in Great Lakes Waters [J].
Blackwell, Brett R. ;
Ankley, Gerald T. ;
Corsi, Steven R. ;
DeCicco, Laura A. ;
Houck, Keith A. ;
Judson, Richard S. ;
Li, Shibin ;
Martin, Matthew T. ;
Murphy, Elizabeth ;
Schroeder, Anthony L. ;
Smith, Edwin R. ;
Swintek, Joe ;
Villeneuve, Daniel L. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2017, 51 (15) :8713-8724
[8]   Early life exposure to per- and polyfluoroalkyl substances (PFAS) and latent health outcomes: A review including the placenta as a target tissue and possible driver of peri- and postnatal effects [J].
Blake, Bevin E. ;
Fenton, Suzanne E. .
TOXICOLOGY, 2020, 443
[9]   Per- and polyfluoroalkyl substances in source and treated drinking waters of the United States [J].
Boone, J. Scott ;
Vigo, Craig ;
Boone, Tripp ;
Byrne, Christian ;
Ferrario, Joseph ;
Benson, Robert ;
Donohue, Joyce ;
Simmons, Jane Ellen ;
Kolpin, Dana W. ;
Furlong, Edward T. ;
Glassmeyer, Susan T. .
SCIENCE OF THE TOTAL ENVIRONMENT, 2019, 653 :359-369
[10]   Juxtaposition of intensive agriculture, vulnerable aquifers, and mixed chemical/microbial exposures in private-well tapwater in northeast Iowa [J].
Bradley, Paul M. ;
Kolpin, Dana W. ;
Thompson, Darrin A. ;
Romanok, Kristin M. ;
Smalling, Kelly L. ;
Breitmeyer, Sara E. ;
Cardon, Mary C. ;
Cwiertny, David M. ;
Evans, Nicola ;
Field, R. William ;
Focazio, Michael J. ;
Freeman, Laura E. Beane ;
Givens, Carrie E. ;
Gray, James L. ;
Hager, Gordon L. ;
Hladik, Michelle L. ;
Hofmann, Jonathan N. ;
Jones, Rena R. ;
Kanagy, Leslie K. ;
Lane, Rachael F. ;
McCleskey, R. Blaine ;
Medgyesi, Danielle ;
Medlock-Kakaley, Elizabeth K. ;
Meppelink, Shannon M. ;
Meyer, Michael T. ;
Stavreva, Diana A. ;
Ward, Mary H. .
SCIENCE OF THE TOTAL ENVIRONMENT, 2023, 868