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快速分析高浓度次氯酸钠溶液中的高氯酸盐、氯酸盐和溴酸盐离子。

Rapid analysis of perchlorate, chlorate and bromate ions in concentrated sodium hypochlorite solutions.

机构信息

Sothern Nevada Water Authority, Research & Development, River Mountain Water Treatment Facility, 1299 Burkholder Blvd., Henderson, NV 89015, USA.

出版信息

Anal Chim Acta. 2010 Feb 5;659(1-2):216-23. doi: 10.1016/j.aca.2009.11.061. Epub 2009 Dec 4.

Abstract

A sensitive, rapid, and rugged liquid chromatography with tandem mass spectrometry (LC-MS/MS) method for measuring concentrations of perchlorate, chlorate, and bromate ions in concentrated sodium hypochlorite solutions is presented. The LC-MS/MS method offers a practical quantitation limit (PQL) of 0.05 microg L(-1) for ClO(4)(-), 0.2 microg L(-1) for BrO(3)(-), and 0.7 microg L(-1) for ClO(3)(-) and a sample analysis time of only 10 min. Additionally, an iodometric titration technique was compared with the LC-MS/MS method for measurement of chlorate ion at high concentration. The LC-MS/MS method was the most reproducible for chlorate concentrations below 0.025 M while the iodometric titration method employed was the most reproducible above 0.025 M. By using both methods, concentrations of chlorate can be measured over a wide range, from 0.7 microg L(-1) to 210 g L(-1) in hypochlorite ion solutions. Seven quenching agents were also evaluated for their ability to neutralize hypochlorite ion, thereby stopping formation of perchlorate ion in solution, without adversely impacting the other oxyhalide ions. Malonic acid was chosen as the quenching agent of choice, meeting all evaluation criteria outlined in this manuscript.

摘要

本文介绍了一种灵敏、快速、坚固的液相色谱-串联质谱(LC-MS/MS)方法,用于测量高浓度次氯酸钠溶液中高氯酸盐、氯酸盐和溴酸盐离子的浓度。LC-MS/MS 方法提供了 0.05μg L(-1)的实用定量限(PQL),用于 ClO(4)(-),0.2μg L(-1)用于 BrO(3)(-)和 0.7μg L(-1)用于 ClO(3)(-),样品分析时间仅为 10 分钟。此外,还比较了碘量滴定技术与 LC-MS/MS 方法在高浓度氯酸盐离子的测量。对于低于 0.025 M 的氯酸盐浓度,LC-MS/MS 方法最具重现性,而使用的碘量滴定法在高于 0.025 M 时最具重现性。通过使用这两种方法,可以在很宽的范围内测量氯酸盐的浓度,从次氯酸钠溶液中的 0.7μg L(-1)到 210g L(-1)。还评估了七种猝灭剂中和次氯酸盐离子的能力,从而阻止溶液中高氯酸盐离子的形成,而不会对其他卤氧化物离子产生不利影响。选择丙二酸作为猝灭剂,符合本文所述的所有评价标准。

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