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Application of (LC/)MS/MS precursor ion scan for evaluating the occurrence, formation and control of polar halogenated DBPs in disinfected waters: A review

机译:(LC /)MS / MS前体离子扫描用于评估消毒水域中极性卤化DBP的发生,形成和控制:综述

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Water disinfection can result in the unintended formation of halogenated disinfection byproducts (DBPs), which have been the subject of intensive investigation over the past 40 years. Robust methods for evaluating and characterizing the formation of halogenated DBPs are prerequisites for ultimately controlling the formation of DBPs and ensuring quality and safe disinfected water. Only a fraction of the total organic halogen (TOX) formed during disinfection has been chemically identified or even well characterized by the classical (derivatization-)gas chromatography/mass spectrometry (GC/MS) method. Such a method may not be amenable to the detection of polar halogenated DBPs, which constitute a major portion of the TOX that is still unaccounted for. Accordingly, a novel precursor ion scan (PIS) method using (liquid chromatography/) electrospray ionization-triple quadrupole mass spectrometry was developed for the rapid selective detection of all polar halogenated DBPs-no matter whether the DBPs are known or unknown-in water. This article reviews recent literature on the application of the PIS method for evaluating the occurrence, formation and control of polar halogenated DBPs in disinfected waters. The challenges in developing the PIS method were briefly summarized. Application of the powerful method pinpointed 150 previously unknown DBPs and revealed the formation, speciation and transformation of halogenated DBPs in disinfected drinking water, wastewater effluents, and swimming pool water. For the same source water, positive correlations were found between the total ion intensity (111) levels in the PIS spectra of m/z 35/79/126.9 and the total organic chlorine/bromine/iodine levels in the disinfected water sample, and a disinfected sample with a higher TII level generally showed a higher toxic potency. Accordingly, the 111 value can be used as a surrogate to comparatively reflect the water quality and assess the efficiency of a DBP control approach. To achieve a more comprehensive and systematic understanding of the DBP compositions in different waters and thus better control the DBP formation and reduce their overall toxicity, topics for future-work were discussed. (C) 2019 Elsevier Ltd. All rights reserved.
机译:含水消毒可能导致意外形成卤化消毒副产品(DBPS),这是过去40年来的重症调查的主题。用于评估和表征形成卤化DBP的鲁棒方法是最终控制DBP的形成和确保质量和安全消毒水的先决条件。在消毒期间只形成在消毒期间形成的总有机卤素(TOX)的一部分已经过化学鉴定或甚至很好地表征了经典(衍生化 - )气相色谱/质谱(GC / MS)方法。这种方法可以不适合于检测极性卤化DBPS,其构成迄今为止尚未考虑的Tox的主要部分。因此,开发了一种新的前体离子扫描(PIS)方法(液相色谱/)电喷雾电离 - 三重四极杆质谱法,用于快速选择性检测所有极性卤化DBPS - 无论DBP是已知还是未知的水。本文审查了最近在应用PIS方法的应用中的应用,用于评估消毒水中极性卤化dbps的发生,形成和控制。简要概述了发展PIS方法的挑战。应用强大的方法精确定位> 150以前未知的DBP,并揭示了消毒饮用水,废水流出物和游泳池水中卤化dbps的形成,形态和转化。对于相同的源水,在M / Z 35/79 / 126.9的PIS光谱中的总离子强度(111)水平与消毒水样中的总有机氯/溴/碘水平之间,发现阳性相关性,并且具有较高TII水平的消毒样品通常显示出更高的毒性效力。因此,111值可用作替代物以相对反映水质,并评估DBP控制方法的效率。为了实现更全面和系统地了解不同水域中的DBP组合物,从而更好地控制DBP地层并降低其整体毒性,讨论了未来工作的主题。 (c)2019 Elsevier Ltd.保留所有权利。

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