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Per- and Polyfluoroalkyl Substance (PFAS) Transport from Groundwater to Streams near a PFAS Manufacturing Facility in North Carolina, USA

机译:来自地下水的每氟氟烷基物质(PFAS)运输到美国北卡罗来纳州北卡罗来纳州的PFAS制造设施附近的溪流

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摘要

We quantified per- and polyfluoroalkyl substance (PFAS) transport from groundwater to five tributaries of the Cape Fear River near a PFAS manufacturing facility in North Carolina (USA). Hydrologic and PFAS data were coupled to quantify PFAS fluxes from groundwater to the tributaries. Up to 29 PFAS were analyzed, including perfluoroalkyl acids and recently identified fluoroethers. Total quantified PFAS (∑PFAS) in groundwater was 20-4773 ng/L (mean = 1863 ng/L); the range for stream water was 426-3617 ng/L (mean = 1717 ng/L). Eight PFAS constituted 98% of ∑PFAS; perfluoro-2-(perf)uoromethoxy)propanoic acid (PMPA) and hexafluoropropylene oxide dimer acid (GenX) accounted for 61%. For PFAS discharge from groundwater to one tributary, values estimated from stream water measurements (18 ± 4 kg/yr) were similar to those from groundwater measurements in streambeds (22-25 ± 5 kg/yr). At baseflow, 32 ± 7 kg/yr of PFAS discharged from groundwater to the five tributaries, eventually reaching the Cape Fear River. Given the PFAS emission timeline at the site, groundwater data suggest the abundant fluoroethers moved through the subsurface to streams in ≪50 yr. Discharge of contaminated groundwater may lead to long-term contamination of surface water and impacts on downstream drinking water supplies. This work addresses a gap in the PFAS literature: quantifying PFAS mass transfer between groundwater and surface water using field data.
机译:我们量化从地下水中的每氟氟烷基物质(PFAS)运输到北卡罗来纳州北卡罗来纳州(美国)附近PFAS制造设施附近的海角恐惧河的五条支流。耦合水文和PFAS数据以量化从地下水到支流的PFAS助熔剂。分析最多29个PFA,包括全氟烷基酸和最近鉴定的氟乙酯。地下水中的总量化PFAS(ΣPFA)为20-4773 ng / L(平均值= 1863 / L);流水的范围为426-3617 ng / L(平均值= 1717 ng / L)。八个PFA构成了ΣPFA的98%;全氟-2-(perf)甲氧基)丙酸(PMPA)和六氟丙烯二聚体酸(Genx)占61%。对于从地下水到一个支流的PFA出院,从流水测量估计的值(18±4千克/ yr)与流线(22-25±5kg / YR)的地下水测量相似。在基流,32±7千克/年的PFA从地下水排放到五个支流,最终到达毛茸茸的河流。鉴于网站上的PFA发射时间表,地下水数据表明,丰富的氟化物通过地下移动到“50年”中的流。污染地下水的排放可能导致表面水的长期污染,并对下游饮用水供应的影响。这项工作解决了PFAS文献中的差距:使用现场数据量化地下水和地表水之间的PFAS质量传递。

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  • 来源
    《Environmental Science & Technology》 |2021年第9期|5848-5856|共9页
  • 作者单位

    Department of Marine Earth and Atmospheric Sciences North Carolina State University Raleigh 27695-8201 North Carolina United States;

    Department of Marine Earth and Atmospheric Sciences North Carolina State University Raleigh 27695-8201 North Carolina United States;

    Department of Marine Earth and Atmospheric Sciences North Carolina State University Raleigh 27695-8201 North Carolina United States U.S. Environmental Protection Agency Raleigh North Carolina 27711 United States;

    Department of Civil Construction and Environmental Engineering North Carolina State University Raleigh 27695-8201 North Carolina United States;

    Department of Marine Earth and Atmospheric Sciences North Carolina State University Raleigh 27695-8201 North Carolina United States;

    Conservation and Survey Division-School of Natural Resources University of Nebraska-Lincoln Lincoln 68583 Nebraska United States;

    Department of Civil Construction and Environmental Engineering North Carolina State University Raleigh 27695-8201 North Carolina United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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