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采用 GC-Q-Orbitrap-HRMS 结合色谱分段和 Cl/Br 特异性筛选算法进行非靶标分析和卤代有机污染物的综合特征描述。

Nontarget analysis and comprehensive characterization of halogenated organic pollutants by GC-Q-Orbitrap-HRMS in association with chromatogram segmentation and Cl/Br-specific screening algorithms.

机构信息

Laboratory of Advanced Analytical Chemistry and Detection Technology, Research Center for Eco-Environmental Engineering, Dongguan University of Technology, Dongguan, 523808, China; State Key Laboratory of Organic Geochemistry, Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou, 510640, China.

State Key Laboratory of Organic Geochemistry, Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou, 510640, China.

出版信息

Anal Chim Acta. 2022 Aug 22;1222:340171. doi: 10.1016/j.aca.2022.340171. Epub 2022 Jul 16.

Abstract

Nontarget analysis enables high-efficiency screening and identification of halogenated organic pollutants (HOPs) in complex matrices irrespective of lacking authentic standards, particularly for novel and emerging species, thereby realizing comprehensive component characterization of HOPs. Notwithstanding, nontarget analysis and comprehensive characterization of HOPs remain on the way to improvement. In this study, we implemented nontarget analysis of HOPs in fly ash, egg and sediment using gas chromatography quadrupole-orbitrap high-resolution mass spectrometry with the aid of chromatogram segmentation and Cl/Br-specific screening algorithms, and further performed comprehensive characterization of components and distribution of HOPs. In total, 122 HOP formulas were identified and tentatively assigned with structures, of which 28 were found in ≥ two matrices. Taking isomers into account, in total 1059 HOP congeners were found. Based on the identification and semiquantification results, the chemical components and concentration profiles of HOPs were preliminarily clarified, and accordingly the overall pollution signatures of HOPs were sketched. The total concentrations of HOPs in the fly ash, egg and sediment were 4.7, 41.2 and 750.8 μg g, respectively. Organochlorines were the most abundant among the categories classified by halogen types, and halogenated benzenes, halogenated dioxins, halogenated biphenyls/terphenyls and halogenated polycyclic aromatic hydrocarbons (H-PAHs) were the predominant of the structurally classified categories. Moreover, dozens of formulas of novel/little-known HOPs such as mix-chlorinated/brominated PAHs with ≥4 aromatic rings and polychlorinated terphenyls were identified. This study presents an accurate and high-performance nontarget analysis method for HOPs in complex matrices, and yields new cognitions on the pollution status of HOPs from an overall perspective.

摘要

非靶向分析能够实现高效筛选和识别复杂基质中的卤代有机污染物(HOPs),而无需真实标准,特别是对于新型和新兴物种,从而实现 HOPs 的全面成分特征描述。然而,HOPs 的非靶向分析和全面特征描述仍有待改进。在本研究中,我们采用气相色谱四极杆-轨道高分辨质谱仪,借助色谱分段和 Cl/Br 特异性筛选算法,对飞灰、鸡蛋和沉积物中的 HOPs 进行了非靶向分析,并进一步对 HOPs 的成分和分布进行了全面特征描述。共鉴定和推测出 122 种 HOP 分子式,其中 28 种在≥两种基质中被发现。考虑到异构体,共发现 1059 种 HOP 同系物。基于鉴定和半定量结果,初步阐明了 HOP 的化学成分和浓度分布,从而勾勒出 HOP 的整体污染特征。飞灰、鸡蛋和沉积物中 HOP 的总浓度分别为 4.7、41.2 和 750.8μg/g。在按卤素类型分类的类别中,有机氯最为丰富,在按结构分类的类别中,卤代苯、卤代二噁英、卤代联苯/三联苯和卤代多环芳烃(H-PAHs)是主要的。此外,还鉴定出了数十种新型/鲜为人知的 HOP 公式,如含有≥4 个芳环的混合氯/溴化多环芳烃和多氯三联苯。本研究提出了一种准确、高性能的复杂基质中 HOP 非靶向分析方法,从整体角度提供了对 HOP 污染状况的新认识。

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