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