Per- and polyfluorinated alkyl substances (PFAS) in Pennsylvania surface waters: A statewide assessment, associated sources, and land-use relations

Sara E. Breitmeyer, Amy M. Williams,Joseph W. Duris, Lee W. Eicholtz,Dustin R. Shull,Timothy A. Wertz, Emily E. Woodward

Science of The Total Environment(2023)

引用 1|浏览1
暂无评分
摘要
The objectives of this study are to identify per- and polyfluoroalkyl substances (PFAS) in Pennsylvania surface waters, corresponding associations with potential sources of PFAS contamination (PSOC) and other parameters, and compare raw surface water concentrations to human and ecological benchmarks. Surface water samples from161 streams were collected in September 2019 and were analyzed for 33 target PFAS and water chemistry. Land use and physical attributes in upstreamcatchments and geospatial counts of PSOCin local catchments are summarized. The hydrologic yield of the sum of 33 PFAS (SPFAS) for each stream was computed by normalizing each site's load by the drainage area of the upstream catchment. Utilizing conditional inference tree analysis, the percentage of development (>7.58 %) was identified as a primary driver of the SPFAS hydrologic yields. When percentage of development was removed from analysis, Sigma PFAS yields were closely related to surface water chemistry associated with landscape alteration (e.g., development or agricultural cropland), such as concentrations of total nitrogen, chloride, and ammonia, but also to count of water pollution control facilities (agricultural, industrial, stormwater, and/or municipal waste pollution abatement facilities). In oil and gas development regions, SPFAS yields were associated with combined sewage outfalls. Sites surrounded by >= 2 electronic manufacturing facilities had elevated SPFAS yields (median = 241 ng/s/km(2)). Study results are critical to guide future research, regulatory policy, best practices that will mitigate PFAS contamination, and the communication of human health and ecological risks associated with PFAS exposure from surface waters.
更多
查看译文
关键词
PFAS,Water quality,River,Mass load,Hydrologic yield,Contaminant sources
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要