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对映选择性全氟辛烷磺酸(PFOS)分析表明,PFOS 前体对安大略湖食物网的来源有贡献。

Enantiospecific perfluorooctane sulfonate (PFOS) analysis reveals evidence for the source contribution of PFOS-precursors to the Lake Ontario foodweb.

机构信息

Department of Chemistry, University of Alberta, Edmonton, AB, Canada, T6G 2G2.

出版信息

Environ Sci Technol. 2012 Jul 17;46(14):7653-60. doi: 10.1021/es301160r. Epub 2012 Jun 29.

Abstract

Exposure to perfluorooctane sulfonate (PFOS) may arise directly, from emission and exposure to PFOS itself, or indirectly via the environmental release and degradation of PFOS-precursors. Human serum enantiomer fractions (EFs) of 1m-PFOS have been shown to be nonracemic, suggesting that PFOS-precursors are a significant source of PFOS in humans, but little is known about the importance of PFOS-precursors in ecosystems. In the current work, concentrations of PFOS, perfluorooctane sulfonamide (PFOSA), PFOS isomer profiles, and EFs of 1m-PFOS were determined in Lake Ontario water, sediment, fishes and invertebrates. Concentrations of PFOS and PFOSA were highest in slimy sculpin and Diporeia, and concentrations of the two compounds were often correlated. 1m-PFOS was racemic in sediment, water, sculpin and rainbow smelt, but nonracemic in the top predator, lake trout, and all invertebrate species. Furthermore, EFs were correlated with the relative concentrations of PFOS and PFOSA in invertebrates. Overall, these empirical observations with a new analytical tool confirm previous suggestions that PFOS-precursors contribute to PFOS in the food web, likely via sediment. Implications are that future PFOS exposures in this ecosystem will be influenced by an in situ source, and that the apparent environmental behavior of PFOS (e.g., bioaccumulation potential) can be confounded by precursors.

摘要

全氟辛烷磺酸(PFOS)的暴露可能直接来源于 PFOS 的排放和接触,也可能间接来源于 PFOS 前体在环境中的释放和降解。人类血清对映体分数(EF)的 1m-PFOS 是非对映体的,这表明 PFOS 前体是人类 PFOS 的重要来源,但人们对 PFOS 前体在生态系统中的重要性知之甚少。在目前的工作中,测定了安大略湖水中、沉积物中、鱼类和无脊椎动物中的 PFOS、全氟辛烷磺酰胺(PFOSA)、PFOS 异构体分布和 1m-PFOS 的 EF。PFOS 和 PFOSA 的浓度在粘滑杜父鱼和双壳类动物中最高,两种化合物的浓度经常相关。1m-PFOS 在沉积物、水、杜父鱼和虹鳟中是对映体的,但在顶级捕食者湖鳟和所有无脊椎动物物种中是非对映体的。此外,EF 与无脊椎动物中 PFOS 和 PFOSA 的相对浓度相关。总的来说,这些具有新分析工具的实证观察结果证实了先前的建议,即 PFOS 前体通过沉积物为食物网中的 PFOS 做出贡献。这意味着未来这个生态系统中的 PFOS 暴露将受到原位源的影响,而 PFOS 的表观环境行为(例如生物蓄积潜力)可能会受到前体的干扰。

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