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Techniques and methods for the determination of haloacetic acids in potable water

机译:测定饮用水中卤代乙酸的技术和方法

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摘要

Haloethanoic (haloacetic) acids (HAAs) are formed as disinfection byproducts (DBPs) during the chlorination of natural water to make it fit for consumption. Sundry analytical techniques have been applied in order to determine the concentrations of the HAAs in potable water supplies: gas chromatography (GC-MS, GC-ECD); capillary electrophoresis (CE); liquid chromatography (LC), including ion chromatography (IC); and electrospray ionization mass spectrometry (ESI-MS). Detection limits required to analyze potable water samples can be regularly achieved only be GC-ECD and ESI-MS. Without improvements in preconcentration or detector sensitivity, CE and LC will not find application to potable water supplies. The predominant GC-ECD methods use either diazomethane or acidified methanol to esterify (methylate) the carboxylic acid moiety. For HAA5 analytes, regulated under the EPA's Stage 1 DBP Rule, diazomethane is satisfactory. For HAA9 data gathered under the Information Collection Rule, acidified methanol outperforms diazomethane, which suffers from photo-promoted side reactions, especially for the brominated trihaloacetic acids. Although ESI-MS can meet sensitivity and selectivity requirements, limited instrumentation availability means this technique will not be widely used for the time being. However, ESI-MS can provide valuable confirmatory information when coupled with GC-ECD in a research setting.
机译:卤代乙酸(HAA)是在天然水氯化过程中作为消毒副产物(DBP)形成的,以使其适合食用。为了确定饮用水中HAAs的浓度,已经使用了各种分析技术:气相色谱法(GC-MS,GC-ECD);毛细管电泳(CE);液相色谱(LC),包括离子色谱(IC);和电喷雾电离质谱(ESI-MS)。只有通过GC-ECD和ESI-MS才能定期达到分析饮用水样品所需的检出限。如果不提高预浓缩或检测器的灵敏度,CE和LC将无法应用于饮用水。主要的GC-ECD方法使用重氮甲烷或酸化的甲醇来酯化(甲基化)羧酸部分。对于按照EPA第1阶段DBP规则进行管制的HAA5分析物,重氮甲烷是令人满意的。对于根据“信息收集规则”收集的HAA9数据,酸化的甲醇优于重氮甲烷,重氮甲烷受光促进的副反应特别是溴代三卤乙酸的副作用。尽管ESI-MS可以满足灵敏度和选择性的要求,但有限的仪器可用性意味着该技术暂时不会广泛使用。但是,在研究环境中,ESI-MS与GC-ECD结合使用可以提供有价值的确认信息。

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