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首页> 外文期刊>Environmental Science: Processes & Impacts >Point source characterization of per- and polyfluoroalkyl substances (PFASs) and extractable organofluorine (EOF) in freshwater and aquatic invertebrates
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Point source characterization of per- and polyfluoroalkyl substances (PFASs) and extractable organofluorine (EOF) in freshwater and aquatic invertebrates

机译:淡水和水生无脊椎动物中的聚氟烷基物质(PFASS)(PFASS)和可提取的有机氟荧光(EOF)的点源表征

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摘要

Major point sources of per- and polyfluoroalkyl substances (PFASs) cause ubiquitous spread of PFASs in the environment. In this study, surface water and aquatic invertebrates at three Swedish sites impacted by PFAS point sources were characterized, using homologue, isomer and extractable organofluorine (EOF) profiling as well as estimation of bioaccumulation factors (BAFs) and mass discharge. Two sites were impacted by fire training (sites A and R) and the third by industrial runoff (site K). Mean sigma(25)PFASs concentration in water was 1920 ng L-1 at site R (n = 3), which was more than 20- and 10-fold higher than those from sites A and K, respectively. PFOS was the most predominant PFAS in all waters samples, constituting 29-79% of sigma(25)PFAS concentrations. Several branched isomers were detected and they substantially contributed to concentrations in surface water (e.g. 49-78% of sigma PFOS) and aquatic invertebrates (e.g. 15-28% of sigma PFOS). BAFs in the aquatic invertebrates indicated higher bioaccumulation for long chain PFASs and lower bioaccumulation for branched PFOS isomers compared to linear PFOS. EOF mass balance showed that sigma(25)target PFASs in water could explain up to 55% of EOF at site R. However, larger proportions of EOF (>92%) remained unknown in water from sites A and K. Mass discharges were for the first time estimated for EOF and revealed that high amounts of EOF (e.g. 8.2 g F day(-1) at site A) could be transported by water to recipient water bodies relative to sigma(25)PFASs (e.g. 0.15 g day(-1) at site A). Overall, we showed that composition profiling, BAFs and EOF mass balance can improve the characterization of PFASs around point sources.
机译:主要点和多氟烷基物质(PFASS)的主要来源导致环境中PFASS的普遍存在。在这项研究中,使用PFAS点来源影响的三个瑞典网站的地表水和水生无脊椎动物的特征在于,使用同源物,异构体和可提取的有机氟灵(EOF)分析以及生物累积因子(BAF)和质量排放的估算。两个站点受到火灾训练(网站A和R)的影响,其中第三个是工业径流(网站K)。平均Sigma(25)水中的PFASS浓度在部位R(n = 3)处为1920ng L-1,其分别比来自位点A和K的高于20-和10倍。 PFOS是所有水域样本中最主要的PFA,构成29-79%的Sigma(25)PFAS浓度。检测到几个支链异构体,并且它们基本上有助于表面水的浓度(例如49-78%的Sigma PFO)和水生无脊椎动物(例如15-28%的Sigma PFO)。水生无脊椎动物中的BAFS表明,与线性PFOS相比,长链PFASS的长链PFASS和降低生物累积的生物累积程度较高。 EOF质量平衡表明,Sigma(25)靶在水中的靶粉剂可以在现场R中的55%of ef。然而,从网站A和K.大规模排放的水中仍然存在较大的EOF(> 92%)。第一次估计EOF并揭示了在现场A的高量EOF(例如8.2g F天(-1))可以通过水与相对于Sigma(25)PFASS(例如0.15克( - 1)在现场a)。总体而言,我们表明,组成剖析,BAF和EOF质量平衡可以提高PFASS周围的表征。

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    Orebro Univ Sch Sci &

    Technol Man Technol Environm Res Ctr MTM SE-70182 Orebro Sweden;

    Orebro Univ Sch Sci &

    Technol Man Technol Environm Res Ctr MTM SE-70182 Orebro Sweden;

    Orebro Univ Sch Sci &

    Technol Man Technol Environm Res Ctr MTM SE-70182 Orebro Sweden;

    Umea Univ Dept Ecol &

    Environm Sci SE-90187 Umea Sweden;

    Swedish Univ Agr Sci SLU Dept Aquat Sci &

    Assessment Sect Organ Environm Chem &

    Ecotoxicol SE-75007 Uppsala Sweden;

    Orebro Univ Sch Sci &

    Technol Man Technol Environm Res Ctr MTM SE-70182 Orebro Sweden;

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  • 正文语种 eng
  • 中图分类 环境质量评价与环境监测 ;
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