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Emerging per- and polyfluoroalkyl substances (PFASs) in surface water and sediment of the North and Baltic Seas

机译:在北部和波罗的海的地表水和沉积物中出现新兴的每氟和聚氟烷基物质(PFASS)

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Along with the phase-out of legacy long-chain perfluoroalkyl carboxylic acids (PFCAs), perfluoroalkane sulfonic adds (PFSAs) and their precursors, attention has been drawn to emerging per- and polyfluoroalkyl substances (PFASs). This study is aimed at investigating the importance of selected emerging PFASs as pollutants in European coastal environments and a possible transition from legacy long-chain PICAs and PFSAs to replacement compounds. Therefore, the spatial distribution of 29 PFASs was analysed in surface water and sediment of the North and Baltic Seas sampled in 2017. Levels of the replacement compound HFPO-DA were approximately three times higher than those of its predecessor PFOA in surface water from the North Sea, which is characterised by the influence of point sources and constant exchange with open water. Reanalysis of sample extracts from the last decade showed that HFPO-DA had already been present in 2011, when it had not yet been in focus. In the Baltic Sea with a limited water exchange and dominance of diffuse sources, the proportion of HFPO-DA was negligible, whereas long-chain PFCAs and PFSAs still contributed to Sigma PFASs with about 30%. The emerging cyclic compound perfluoro-4-ethylcyclohexanesulfonate (PFECHS), which has not yet been reported in European coastal environments, was detected in 86% of the Baltic Sea samples. Influenced by sediment characteristics in addition to source-specific contributions, the spatial distribution of PFASs in surface sediments was more variable than for water samples. The linear isomer of the long-chain legacy substance PFOS was the predominant compound found over the entire study area. Of the emerging PFASs, 6:6 and 6:8 perfluoroalkyl phosphinic acids (PFPiAs) were identified close to potential industrial inputs and in sedimentation areas. The results show that particular emerging PFASs play a relevant role in the investigated coastal environments and that a shift to replacements is dependent on sources and geographical conditions. (C) 2019 The Authors. Published by Elsevier B.V.
机译:随着遗留的长链全氟烷基羧酸(PFCAs),全氟烷烷烃磺酸(PFSA)及其前体,对新兴的每氟氟烷基物质(PFASS)施加了注意力。本研究旨在调查选定新兴PFASS作为欧洲沿海环境中污染物的重要性,以及从遗留的长链Picas和PFSA到更换化合物的可能过渡。因此,在2017年在北部和波罗的海的地表水中分析了29个PFASS的空间分布。替代化合物HFPO-DA的水平约为来自北方地表水中的前任PFOA的三倍海,其特征在于点源的影响和恒定交换与开放水。过去十年的样品提取物的再分析表明,HFPO-DA已经在2011年出席,当时尚未焦点。在具有有限的水交换和弥漫来源的优势的波罗的海中,HFPO-DA的比例可忽略不计,而长链PFCAS和PFSA仍然有助于约30%的Sigma PFASS。在欧洲沿海环境中尚未报告的新出现的环状化合物全氟-4-乙基环己磺酸盐(PFECH)在86%的波罗的海样本中检测到尚未报告。受沉积物特性的影响除了源特定的贡献之外,表面沉积物中PFASS的空间分布比水样更可变。长链遗留物质PFOS的线性异构体是在整个研究区域发现的主要化合物。在新出现的PFASS中,6:6和6:8全氟烷基膦酸(PFPIAs)被鉴定靠近潜在的工业投入和沉降区域。结果表明,特定的新兴PFASS在调查的沿海环境中发挥着相关的作用,并且转向替代依赖于来源和地理条件。 (c)2019年作者。由elsevier b.v出版。

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