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采用离子交换色谱-高分辨(轨道阱)质谱法(IC-HRMS)对饮用水中的卤代羧酸进行可疑物筛查。

Suspect screening of halogenated carboxylic acids in drinking water using ion exchange chromatography - high resolution (Orbitrap) mass spectrometry (IC-HRMS).

机构信息

Analytical & Environmental Sciences Division, Faculty of Life Sciences & Medicine, King's College London, 150 Stamford Street, SE1 9NH London, United Kingdom.

Analytical & Environmental Sciences Division, Faculty of Life Sciences & Medicine, King's College London, 150 Stamford Street, SE1 9NH London, United Kingdom.

出版信息

Talanta. 2018 Feb 1;178:57-68. doi: 10.1016/j.talanta.2017.08.092. Epub 2017 Sep 1.

Abstract

Retrospective in silico screening of analytical data for the identification of new or emerging disinfection by-products in drinking waters could be useful to assess quality and potential hazards, as well as help implement mitigation procedures more rapidly. Herein, the first study coupling ion exchange chromatography (IC) with high resolution mass spectrometry (HRMS) for the determination of halogenated carboxylic acid disinfectant by-products is reported. Separation was achieved using a Metrohm A Supp 5 column and a NaCO/NaHCO gradient eluent from 1/0.31 to 10/3.1mM. A variety of solid phase extraction (SPE) sorbents were tested for added selectivity to organic ions and Isolute ENV+ cartridges were selected because of their best overall extraction performance. Method LODs were in the μgL concentration range, with R ≥ 0.99 for all the analytes, and isobaric ions could be easily discriminated using HRMS. The method was applied to municipal drinking water. Targeted quantitative analysis revealed the presence of 10 haloacetic acids at levels not exceeding the limits set by WHO and USEPA. Furthermore, suspect screening for additional halogenated carboxylic acids via retrospective HRMS data analysis also indicated the presence of other iodinated HAAs and chlorinated propionic acids, of which one (i.e. monochloropropionic acid) is discussed here for the first time. Most importantly, several potential suspects could be eliminated from further consideration through HRMS data analysis alone. To our knowledge, this represents the first time that a retrospective IC-HRMS screen of halogenated carboxylic acids in drinking water has been reported.

摘要

对饮用水中分析数据进行回溯性筛选,以识别新的或新兴的消毒副产物,这可能有助于评估水质和潜在危害,并帮助更快地实施缓解措施。本文首次报道了一种将离子交换色谱(IC)与高分辨率质谱(HRMS)相结合,用于测定卤代羧酸类消毒剂副产物的方法。采用 Metrohm A Supp 5 柱和 NaCO/NaHCO 梯度洗脱剂(从 1/0.31 到 10/3.1mM)进行分离。对多种固相萃取(SPE)吸附剂进行了测试,以考察其对有机离子的选择性,Isolute ENV+ 试剂盒因其最佳的整体萃取性能而被选中。方法的检出限(LOD)在μgL 浓度范围内,所有分析物的 R 值均≥0.99,并且可以使用 HRMS 轻松区分等质量离子。该方法应用于市政饮用水。靶向定量分析结果显示,10 种卤乙酸的含量未超过世界卫生组织(WHO)和美国环保署(USEPA)规定的限量。此外,通过回溯性 HRMS 数据分析对其他卤代羧酸的可疑筛查也表明存在其他碘代 HAAs 和氯代丙酸,其中一种(即一氯丙酸)是首次在此进行讨论。最重要的是,通过 HRMS 数据分析可以单独排除几个潜在的可疑物,不再进一步考虑。据我们所知,这是首次报道饮用水中卤代羧酸的回溯性 IC-HRMS 筛选。

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