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氘标记超高分辨质谱的公式分配算法:卤代消毒副产物形成机制的启示。

Formula Assignment Algorithm for Deuterium-Labeled Ultrahigh-Resolution Mass Spectrometry: Implications of the Formation Mechanism of Halogenated Disinfection Byproducts.

机构信息

School of Environmental Studies, China University of Geosciences, Wuhan 430074, China.

Department of Civil and Environmental Engineering, Tokyo Institute of Technology, 2-12-1, Ookayama, Meguro-Ku, Tokyo 152-8550, Japan.

出版信息

Anal Chem. 2022 Jan 25;94(3):1717-1725. doi: 10.1021/acs.analchem.1c04298. Epub 2022 Jan 12.

Abstract

Ultrahigh-resolution mass spectrometry (UHR-MS) coupled with isotope labeling has attracted significant attention in elucidating the mechanisms of the transformation of dissolved organic matter (DOM). Herein, we developed a novel formula assignment algorithm based on deuterium (D)-labeled UHR-MS, namely, FTMSDeu, for the first time. This algorithm was employed to determine the precursor molecules of halogenated disinfection byproducts (X-DBPs) and to evaluate the relative contribution of electrophilic addition and substitution reactions in X-DBP formation according to the H/D exchange of DOM molecules. Further, tandem mass spectrometry with homologous-based network analysis was used to validate the formula assignment accuracy of FTMSDeu in the identification of iodinated disinfection byproducts. Electrophilic substitution accounted for 82-98, 71-89, and 43-45% of the formation for Cl-, Br-, and I-containing X-DBPs, respectively, indicating the dominant role of the electrophilic substitution in chlorinated disinfection byproducts with low Br and I concentrations. The absence of putative precursors in some X-DBPs also suggests that X-DBP formation includes secondary reactions (e.g., oxidation and hydrolysis) in addition to the electrophilic addition and/or substitution of halogens. These findings highlight the significance of isotopically labeled UHR-MS techniques in revealing the transformation of DOM in natural and engineered systems.

摘要

超高分辩质谱(UHR-MS)与同位素标记结合,在阐明溶解有机物(DOM)转化机制方面引起了广泛关注。本文首次开发了一种基于氘(D)标记 UHR-MS 的新公式赋值算法,即 FTMSDeu。该算法用于确定卤代消毒副产物(X-DBP)的前体分子,并根据 DOM 分子的 H/D 交换,评估亲电加成和取代反应在 X-DBP 形成中的相对贡献。此外,还采用基于同源网络分析的串联质谱法验证了 FTMSDeu 在鉴定碘代消毒副产物中的公式赋值准确性。亲电取代分别占 Cl-、Br-和 I 含量的 X-DBP 形成的 82-98%、71-89%和 43-45%,表明亲电取代在 Br 和 I 浓度较低的氯化消毒副产物形成中占主导地位。一些 X-DBP 中没有假定的前体,这也表明 X-DBP 的形成除了卤素的亲电加成和/或取代外,还包括二次反应(如氧化和水解)。这些发现强调了同位素标记 UHR-MS 技术在揭示自然和工程系统中 DOM 转化方面的重要性。

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