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首页> 外文期刊>Environmental Science: Processes & Impacts >Biomagnification of perfluoroalkyl acids (PFAAs) in the food web of an urban river: assessment of the trophic transfer of targeted and unknown precursors and implications
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Biomagnification of perfluoroalkyl acids (PFAAs) in the food web of an urban river: assessment of the trophic transfer of targeted and unknown precursors and implications

机译:城市河流食品网中全氟烷基酸(PFAAs)的生物磁化:评估靶向和未知前体的营养转移和造成的影响

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The present work examined the trophic transfer of perfluoroalkyl and polyfluoroalkyl substances (PFASs) in a typical urban river (Orge River, near Paris, France), and aimed to investigate the potential contribution of precursors to the biomagnification of perfluoroalkyl acids (PFAAs). Sixteen PFAAs, twelve of their precursors (pre-PFAAs(targeted)) and two fluorinated alternatives to long-chain PFASs were analyzed in water, sediments and biota (including biofilm, invertebrates and fish). Twenty two compounds were detected in biological samples (2.0-147 ng g(-1) wet weight), perfluorooctane sulfonate (PFOS) and C-12-C-14 perfluoroalkyl carboxylates (PFCAs) being predominant while n-ary sumation pre-PFAAs(targeted) contributed to 1-18% of n-ary sumation PFASs. Trophic magnification factors (TMFs) were >1 (i.e. denoting biomagnification) for C-9-C-14 PFCAs, C-7-C-10 perfluoroalkyl sulfonates (PFSAs) and several pre-PFAAs (e.g. 8 : 2 and 10 : 2 fluorotelomer sulfonates). The significant decrease in n-ary sumation pre-PFCAs/ n-ary sumation PFCAs concentration ratio with trophic level suggested a likely contribution of selected precursors to the biomagnification of PFCAs through biotransformation, while this was less obvious for PFOS. The total oxidizable precursor assay, applied for the first time to sediment and biota, revealed the presence of substantial proportions of extractable unknown pre-PFAAs in all samples (i.e. 15-80% of n-ary sumation PFASs upon oxidation). This proportion significantly decreased from sediments to invertebrates and fish, thereby pointing to the biotransformation of unattributed pre-PFAAs in the trophic web, which likely contributes to the biomagnification of some PFAAs (i.e. C-9-C-12 PFCAs and C-7-C-10 PFSAs).
机译:目前的工作检测了典型的城市河流(Orge河,法国附近)中全氟烷基和多氟烷基物质(PFASS)的营养转移,并旨在调查前体对全氟烷基酸生物镀锌的潜在贡献(PFAAs)。在水,沉积物和生物脂肪(包括生物膜,无脊椎动物和鱼类)中,分析了十六个PFAAs(Pre-PFAAs(靶向))和两种氟化替代品到长链PFASS的含氟替代品(包括生物膜,无脊椎动物和鱼)。在生物样品中检测到二十两种化合物(2.0-147ng(-1)湿重),全氟辛丁烷磺酸盐(PFOS)和C-12-C-14全氟烷基羧酸盐(PFCAs)是主要的,而N-ARY SUMATION Pre-PFAAS (有针对性的)促成了1-18%的N-ARY SUMATION PFASS。用于C-9-C-14 PFCAs,C-7-C-10全氟烷基磺酸盐(PFSAS)和几种预活渣(例如8:2和10:2的C-7-C-10个全氟烷酯(即表示生物镀锌)> 1(即表示生物镀锌)。(例如8:2和10:2氟羧酸氟酸盐)。与营养水平的N-ARY SUMATIOM PFCAS / N-ARY SUMATACAP PFCAS浓度比的显着降低表明,通过生物转化,所选前体对PFCA的生物镀锌的可能对PFCAS的生物涂布的可能性。第一次施用的总可氧化的前体测定是沉积物和生物群,揭示了所有样品中的大量可提取的未知预析PFAAs存在(即15-80%在氧化时N- ary Sumation PFASS)。这种比例从沉积物和鱼类和鱼的沉积物显着降低,从而指向营养纤维网中未分量的预染色PFAAs的生物转化,这可能有助于一些PFAAs的生物镀锌(即C-9-C-12 PFCA和C-7- C-10 PFSAS)。

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