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众多含氟化学品的重要环境来源:来自氟化学品制造厂多环境基质中工业副产品的新证据。

Vital Environmental Sources for Multitudinous Fluorinated Chemicals: New Evidence from Industrial Byproducts in Multienvironmental Matrices in a Fluorochemical Manufactory.

机构信息

State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.

College of Resources and Environment, University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Environ Sci Technol. 2022 Dec 6;56(23):16789-16800. doi: 10.1021/acs.est.2c04372. Epub 2022 Nov 10.

DOI:10.1021/acs.est.2c04372
PMID:36354080
Abstract

Direct emissions from fluorochemical manufactory are an important source of per- and polyfluoroalkyl substances (PFASs) to the environment. In this study, a wide range of PFASs, including 8 legacy PFASs, 8 long-chain perfluoroalkyl carboxylic acids (PFCAs), and 40 emerging PFASs, were investigated through a target screening in multienvironmental matrices from a fluorochemical manufactory in China. Indoor dust was the most polluted matrix, wherein 52 PFASs were detected, and the median concentration of long-chain PFCA was 276 ng/g. A high level of short-chain PFAS in total suspended particles (median concentration = 416 ng/m) and the effluent in the manufactory (ΣPFAS = 212 μg/L) will undoubtedly increase the burden on the surrounding environment. Twenty-four industrial byproducts were ascertained to be generated during the electrochemical fluorination (ECF) process, and eight fluorinated alternatives were considered to be produced during product development. Twelve PFASs were quantified for the first time in the working environments. Perfluoropropane sulfonic acid, perfluoro (2-ethoxyethane) sulfonic acid (PFEESA), and 2-perfluorohexyl ethanoic acid are abundant fluorinated alternatives, with median levels of 1187-17204 ng/g in the dust. Significant positive correlations between ECF-related PFAS products and byproducts indicate that the detected values are strongly connected with the industrial source. Hierarchical cluster analysis further manifests their affiliation. Our findings raise the need for further investigations of emerging PFAS (including the first report of PFAS, such as PFEESA, in the environment) which may be released during the production process in the fluorochemical manufactories.

摘要

直接来自氟化学品制造厂的排放是环境中全氟和多氟烷基物质 (PFASs) 的一个重要来源。在这项研究中,通过在中国一家氟化学品制造厂的多环境基质中的目标筛选,调查了广泛的 PFASs,包括 8 种传统 PFASs、8 种长链全氟烷酸 (PFCAs) 和 40 种新兴 PFASs。室内灰尘是污染最严重的基质,其中检测到 52 种 PFASs,长链 PFCAs 的中值浓度为 276ng/g。总悬浮颗粒物 (TSP) 中短链 PFAS 的高水平 (中值浓度=416ng/m) 和制造厂废水 (ΣPFAS=212μg/L) 无疑将增加周围环境的负担。在电化学氟化 (ECF) 过程中确定了 24 种工业副产品,在产品开发过程中认为产生了 8 种氟化替代品。在工作环境中首次定量了 12 种 PFASs。全氟丙烷磺酸、全氟 (2-乙氧基乙烷) 磺酸 (PFEESA) 和 2-全氟己基乙 酸是丰富的氟化替代品,在灰尘中的中值水平为 1187-17204ng/g。ECF 相关 PFAS 产品和副产品之间存在显著的正相关关系,表明检测值与工业源密切相关。层次聚类分析进一步表明了它们的相关性。我们的研究结果表明,需要进一步调查新兴 PFASs(包括 PFAS 的首次报告,如 PFEESA,在环境中),这些物质可能在氟化学品制造厂的生产过程中释放。

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