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采用同位素分布比较和预测保留时间对齐的气相色谱-高分辨率质谱法对半靶向分析飞灰、土壤、环境空气和烟道气中的卤代有机污染物。

Quasi-targeted analysis of halogenated organic pollutants in fly ash, soil, ambient air and flue gas using gas chromatography-high resolution mass spectrometry with isotopologue distribution comparison and predicted retention time alignment.

机构信息

State Key Laboratory of Organic Geochemistry, Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou 510640, China; University of Chinese Academy of Sciences, Beijing 100049, China.

Guangzhou Quality Supervision and Testing Institute, Guangzhou 510110, China.

出版信息

J Chromatogr A. 2018 Jun 22;1555:74-88. doi: 10.1016/j.chroma.2018.04.052. Epub 2018 Apr 24.

Abstract

Identifying environmental pollutants, particularly emerging and new pollutants, in various matrices is a prerequisite for further research involving these pollutants. In this study, we developed a quasi-targeted analysis method to identify halogenated organic pollutants (HOPs) by joint application of gas chromatography-double focus magnetic-sector high resolution mass spectrometry (GC-DFS-HRMS), isotopologue distribution comparison and predicted retention time (PRT) alignment. Structures of a variety of unreported/scarcely reported HOPs were conceived and sketched, and then, multiple isotopologue ions of individual HOPs were detected by GC-DFS-HRMS in multiple ion detection mode. Comparisons between the detected mass spectra and the theoretically simulated isotopologue distributions were conducted via paired-samples T-test and cosine similarity analysis. PRT alignment was further applied to exclude interferences that presented unreasonable retention times. The method was validated with dozens of commercially available reference standards of conventional HOPs and several unintended byproducts comprising mix-chlorinated/brominated benzenes in some commercial halogenated-benzene standards, showing good reliability and accuracy. Application of the developed method was primarily implemented with fly ash from municipal solid waste incineration plants. In total, 106 molecular formulas corresponding to unknown or little-known HOPs were identified, of which many were mix-halogenated compounds. Six HOPs were structurally elucidated, including three sulfur-containing dioxin-like HOPs, two mix-perhalogenated benzenes, and a pentabrominated anisole. The structures of 18 compounds that individually contained 2-4 theoretical isomers were putatively elucidated according to the PRT alignment. In addition to fly ash, other environmental matrices, including soil, ambient air and flue gas, were screened by the method, and a number of HOPs were also found in these matrices. This method is feasible, reliable, accurate and sensitive for the identification and screening of potential unknown HOPs in the environment and should facilitate further research, such as pollution investigations and eco-environmental risk assessments for these pollutants.

摘要

识别各种基质中的环境污染物,特别是新兴和新出现的污染物,是进一步研究这些污染物的前提。在这项研究中,我们开发了一种准靶向分析方法,通过联合应用气相色谱-双聚焦扇形高分辨率质谱(GC-DFS-HRMS)、同位素分布比较和预测保留时间(PRT)对齐,来识别卤代有机污染物(HOPs)。我们构思并勾勒出各种未报告/很少报告的 HOP 结构,然后通过 GC-DFS-HRMS 在多离子检测模式下检测单个 HOP 的多个同位素离子。通过配对样本 T 检验和余弦相似性分析比较检测到的质谱与理论模拟同位素分布。进一步应用 PRT 对齐排除呈现不合理保留时间的干扰。该方法经过数十种市售常规 HOP 参考标准和一些商业卤代苯标准中包含的混合氯/溴化苯的一些意外副产物的验证,具有良好的可靠性和准确性。该方法的应用主要是通过城市固体废物焚烧厂的飞灰来实现的。总共鉴定了 106 种对应于未知或鲜为人知的 HOP 的分子公式,其中许多是混合卤代化合物。结构阐明了六种 HOPs,包括三种含硫二噁英类 HOPs、两种混合全卤代苯和一种五溴苯甲醚。根据 PRT 对齐,推测出 18 种单独含有 2-4 个理论异构体的化合物的结构。除了飞灰,该方法还筛选了其他环境基质,包括土壤、环境空气和烟道气,并在这些基质中也发现了一些 HOPs。该方法对于识别和筛选环境中潜在的未知 HOPs 是可行、可靠、准确和敏感的,应有助于进一步研究这些污染物的污染调查和生态环境风险评估。

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