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Comparison of high-field asymmetric waveform ion mobility spectrometry with GC methods in analysis of haloacetic acids in drinking water

机译:高场非对称波形离子迁移光谱法与气相色谱法分析饮用水中卤代乙酸的比较

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Haloacetic acids (HAAs) are major byproducts of chlorination of drinking water. Electrospray ionization high-field asymmetric waveform ion mobility spectrometry mass spectrometry (ESI-FAIMS-MS) provides a tool for direct monitoring of these compounds. However, treated drinking water samples can be challenging to analyze due to the large number of chemicals present and due to matrix effects that can hinder quantitation of analytes. We developed a standard addition ESI-FAIMS-MS method that permits submicrogram per liter detection of haloacetic acids and overcomes matrix effects. An advantage of FAIMS is increased selectivity through a significant reduction in the chemical background from ESI. Moreover, detection limits with this method are much lower than with previously existing GC and GC/MS methods, and quantitation results compare favorably with other existing methods. This new method does not require sample preparation or chromatographic separation and provides a fast, simple, sensitive, and selective method for monitoring HAAs. [References: 29]
机译:卤乙酸(HAA)是饮用水氯化的主要副产品。电喷雾电离高场非对称波形离子迁移谱质谱(ESI-FAIMS-MS)提供了直接监测这些化合物的工具。但是,由于存在大量化学物质以及由于基质效应会阻碍分析物的定量分析,因此处理后的饮用水样品可能难以分析。我们开发了一种标准的加成ESI-FAIMS-MS方法,允许每升亚微克检出卤代乙酸,并克服了基质效应。 FAIMS的一个优点是通过显着降低ESI的化学背景来提高选择性。而且,这种方法的检出限远低于现有的GC和GC / MS方法,而且定量结果与其他现有方法相比也很不错。这种新方法不需要样品制备或色谱分离,并且提供了一种快速,简单,灵敏和选择性的方法来监控HAA。 [参考:29]

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