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全氟辛基硫醚酰胺磺酸(Lodyne)在添加 AFFF 的微宇宙中的好氧生物转化。

Aerobic Biotransformation of Fluorotelomer Thioether Amido Sulfonate (Lodyne) in AFFF-Amended Microcosms.

机构信息

†Department of Civil and Environmental Engineering, University of California at Berkeley, Berkeley, California 94720, United States.

‡Department of Environmental and Molecular Toxicology, Oregon State University, Corvallis, Oregon 97331, United States.

出版信息

Environ Sci Technol. 2015 Jul 7;49(13):7666-74. doi: 10.1021/acs.est.5b01219. Epub 2015 Jun 23.

Abstract

The aerobic biotransformation pathways of 4:2, 6:2, and 8:2 fluorotelomer thioether amido sulfonate (FtTAoS) were characterized by determining the fate of the compounds in soil and medium microcosms amended with an aqueous film-forming foam (AFFF) solution. The biotransformation of FtTAoS occurred in live microcosms over approximately 40 days and produced 4:2, 6:2, and 8:2 fluorotelomer sulfonate (FtS), 6:2 fluorotelomer unsaturated carboxylic acid (FtUCA), 5:3 fluorotelomer carboxylic acid (FtCA), and C4 to C8 perfluorinated carboxylic acids (PFCAs). Two biotransformation products corresponding to singly and doubly oxygenated forms of 6:2 FtTAoS were also identified through high resolution mass spectrometry (MS) analysis and liquid chromatography tandem-MS. An oxidative assay was used to indirectly quantify the total concentration of polyfluorinated compounds and check the mass balance. The assay produced near complete mass recovery of FtTAoS after biotransformation, with 10% (mol/mol) of the amended FtTAoS accounted for in FtS, FtCA, and PFCA products. The transformation rates of identified products appear to be slow relative to FtTAoS, indicating that some intermediates may persist in the environment. This study confirms some of the sources of FtS and PFCAs in groundwater and soil at AFFF-impacted sites and suggests that fluorinated intermediates that are not routinely measured during the biotransformation of PFASs may accumulate.

摘要

采用添加了水成膜泡沫(AFFF)溶液的土壤和培养基微宇宙来确定化合物在土壤和培养基微宇宙中的命运,从而对 4:2、6:2 和 8:2 氟代端基硫醚酰胺磺酸盐(FtTAoS)的需氧生物转化途径进行了表征。FtTAoS 在活微宇宙中的生物转化大约在 40 天内进行,生成了 4:2、6:2 和 8:2 氟代磺酸盐(FtS)、6:2 氟代不饱和羧酸(FtUCA)、5:3 氟代羧酸(FtCA)和 C4 至 C8 全氟羧酸(PFCAs)。还通过高分辨质谱(MS)分析和液相色谱串联-MS 鉴定了两种对应于 6:2 FtTAoS 的单和双氧化形式的生物转化产物。通过氧化测定间接定量了全氟化合物的总浓度并检查了质量平衡。测定法在生物转化后几乎完全回收了 FtTAoS 的质量,添加的 FtTAoS 中有 10%(摩尔/摩尔)以 FtS、FtCA 和 PFCAs 产物的形式存在。与 FtTAoS 相比,鉴定产物的转化速率似乎较慢,表明某些中间体可能在环境中持续存在。本研究证实了在 AFFF 影响的地点的地下水和土壤中 FtS 和 PFCAs 的一些来源,并表明在 PFASs 的生物转化过程中未常规测量的含氟中间体可能会积累。

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