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环境和毒理学分析相关溶剂中全氟和多氟烷基物质的稳定性。

Stability of Per- and Polyfluoroalkyl Substances in Solvents Relevant to Environmental and Toxicological Analysis.

机构信息

Department of Civil, Construction, and Environmental Engineering, North Carolina State University, Raleigh, North Carolina 27695, United States.

Center for Environmental Measurement and Modeling, Office of Research and Development, U.S. Environmental Protection Agency, Research Triangle Park, North Carolina 27711, United States.

出版信息

Environ Sci Technol. 2022 May 17;56(10):6103-6112. doi: 10.1021/acs.est.1c03979. Epub 2021 Nov 4.

Abstract

Per- and polyfluoroalkyl substances (PFASs) are widely used anthropogenic chemicals. For environmental and toxicological analysis, it is important to understand the stability of PFASs, including novel per- and polyfluoroalkyl ether acids (PFEAs), in commonly used solvents. In this study, we investigated the effects of PFAS characteristics, solvent type, water-to-organic solvent ratio, and temperature on the stability of 21 PFASs including 18 PFEAs. None of the studied PFASs showed measurable degradation in deionized water, methanol, or isopropyl alcohol over 30 days; however, nine PFEAs degraded in the polar aprotic solvents acetonitrile, acetone, and dimethyl sulfoxide (DMSO). PFEA degradation followed first-order kinetics, and first-order rate constants increased with increasing temperature and with decreasing water-to-organic solvent ratio. Monoethers with a carboxylic acid functional group adjacent to a tertiary carbon (>CF-COOH) degraded more rapidly than multiethers in which the carboxylic acid moiety was adjacent to repeating -CFO- groups. In contrast, monoethers with a carboxylic acid moiety adjacent to a secondary carbon (-CF-COOH) were stable in all tested solvents. Using high-resolution mass spectrometry, we determined that PFEAs with a >CF-COOH group were stoichiometrically decarboxylated in aprotic solvents and formed products with a >CFH group; e.g., hexafluoropropylene oxide-dimer acid (HFPO-DA or GenX), HFPO-trimer acid, and HFPO-tetramer acid were stoichiometrically converted to Fluoroethers E-1, E-2, and E-3, respectively. PFEA degradation results highlight the importance of solvent choice when preparing dosing solutions and performing extractions for environmental and toxicological assessments of PFEAs.

摘要

全氟和多氟烷基物质(PFASs)是广泛使用的人为化学品。对于环境和毒理学分析,了解 PFASs 的稳定性很重要,包括新型全氟和多氟烷氧基酸(PFEAs)在常用溶剂中的稳定性。在这项研究中,我们研究了 PFAS 特性、溶剂类型、水-有机溶剂比和温度对 21 种 PFASs(包括 18 种 PFEAs)稳定性的影响。在所研究的 PFASs 中,在去离子水、甲醇或异丙醇中 30 天内均未观察到可测量的降解;然而,在极性非质子溶剂乙腈、丙酮和二甲基亚砜(DMSO)中,有 9 种 PFEAs 降解。PFEA 降解遵循一级动力学,一级速率常数随温度升高和水-有机溶剂比降低而增加。与相邻重复-CFO-基团的多醚相比,具有相邻叔碳上羧酸官能团的单醚(>CF-COOH)降解得更快。相比之下,在所有测试溶剂中,具有相邻仲碳上羧酸基团的单醚(-CF-COOH)是稳定的。使用高分辨率质谱,我们确定具有>CF-COOH 基团的 PFEAs 在非质子溶剂中发生化学计量脱羧,形成具有>CFH 基团的产物;例如,六氟丙烯氧化物二聚酸(HFPO-DA 或 GenX)、HFPO 三聚酸和 HFPO 四聚酸分别被化学计量转化为 Fluoroethers E-1、E-2 和 E-3。PFEA 降解结果突出了在制备给药溶液和进行环境和毒理学评估时选择溶剂的重要性。

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