Investigation of Real-Time Gaseous Thermal Decomposition Products of Representative Per- and Polyfluoroalkyl Substances (PFAS).

IF 3.1 2区 化学 Q2 BIOCHEMICAL RESEARCH METHODS Journal of the American Society for Mass Spectrometry Pub Date : 2025-01-01 Epub Date: 2024-12-12 DOI:10.1021/jasms.4c00357
Kateřina Litvanová, Bethany Klemetsrud, Feng Xiao, Alena Kubátová
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Abstract

The thermal decomposition of per- and poly fluoroalkyl substances (PFAS) is poorly understood. Here, we present an innovative, comprehensive analytical method to investigate their thermal decomposition, including perfluorocarboxylic acids (PFCAs), alcohol, sulfonates, and GenX (acid dimer), focusing on identifying their breakdown products. In this study, evolved gas analysis-mass spectrometry (EGA-MS) was used for fast real-time screening to determine the significant temperatures to be investigated with the thermal desorption-pyrolysis coupled with gas chromatography-mass spectrometry (TD-Py-GC-MS), which provided detailed information about evolved PFAS and their breakdown products. This approach enabled a systematic study of perfluorocarboxylic acids (PFCAs) ranging from C3 to C9 and GenX showing volatilization, followed by degradation and formation of respective perfluorinated-1-alkenes and C5F10O perfluorinated ether (from GenX). At elevated temperatures (e.g., 600 °C), the products observed included perfluorinated butene and higher molecular-weight products, likely formed by pyrolytic polymerization of perfluorinated radicals. 1H,1H,2H,2H-perfluoro-1-decanol, i.e., 8:2 FTOH, volatilized at 100 °C; however, at higher temperatures, several novel decomposition products were observed, including perfluoro-1-decene and perfluorinated compounds suggesting the presence of the hydroxylic group. Our method offers an alternative approach to studying the thermal behavior of currently regulated and emerging PFAS with a focus on application to a wide range of matrices (laboratory grade standards or environmental samples).

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代表性全氟烷基和多氟烷基物质(PFAS)实时气体热分解产物的研究。
单氟烷基和多氟烷基物质(PFAS)的热分解尚不清楚。在这里,我们提出了一种创新的、全面的分析方法来研究它们的热分解,包括全氟羧酸(PFCAs)、醇、磺酸盐和GenX(酸二聚体),重点是确定它们的分解产物。本研究采用演化气相分析-质谱法(EGA-MS)进行快速实时筛选,确定热解吸-热解耦合气相色谱-质谱法(TD-Py-GC-MS)研究的重要温度,提供了演化PFAS及其分解产物的详细信息。这种方法能够对C3至C9和GenX的全氟羧酸(PFCAs)进行系统研究,显示其挥发性,然后是各自的全氟-1-烯烃和c5f100全氟醚(来自GenX)的降解和形成。在高温下(例如600°C),观察到的产物包括全氟丁烯和可能由全氟自由基热解聚合形成的更高分子量的产物。1H,1H,2H,2H-全氟-1-癸醇,即8:2 FTOH,在100℃下挥发;然而,在较高的温度下,观察到几种新的分解产物,包括全氟-1-癸烯和全氟化合物,表明羟基的存在。我们的方法提供了一种替代方法来研究目前受管制的和新兴的PFAS的热行为,重点是应用于广泛的基质(实验室级标准或环境样品)。
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来源期刊
CiteScore
5.50
自引率
9.40%
发文量
257
审稿时长
1 months
期刊介绍: The Journal of the American Society for Mass Spectrometry presents research papers covering all aspects of mass spectrometry, incorporating coverage of fields of scientific inquiry in which mass spectrometry can play a role. Comprehensive in scope, the journal publishes papers on both fundamentals and applications of mass spectrometry. Fundamental subjects include instrumentation principles, design, and demonstration, structures and chemical properties of gas-phase ions, studies of thermodynamic properties, ion spectroscopy, chemical kinetics, mechanisms of ionization, theories of ion fragmentation, cluster ions, and potential energy surfaces. In addition to full papers, the journal offers Communications, Application Notes, and Accounts and Perspectives
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