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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Analysis of iodinated haloacetic acids in drinking water by reversed-phase liquid chromatography/electrospray ionization/tandem mass spectrometry with large volume direct aqueous injection
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Analysis of iodinated haloacetic acids in drinking water by reversed-phase liquid chromatography/electrospray ionization/tandem mass spectrometry with large volume direct aqueous injection

机译:大体积直接水相进样-反相液相色谱/电喷雾电离/串联质谱分析饮用水中的碘化卤乙酸

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A large volume direct aqueous injection method was developed for the analysis of iodinated haloacetic acids in drinking water by using reversed-phase liquid chromatography/electrospray ionization/tandem mass spectrometry in the negative ion mode. Both the external and internal standard calibration methods were studied for the analysis of monoiodoacetic acid, chloroiodoacetic acid, bromoiodoacetic acid, and diiodoacetic acid in drinking water. The use of a divert valve technique for the mobile phase solvent delay, along with isotopically labeled analogs used as internal standards, effectively reduced and compensated for the ionization suppression typically caused by coexisting common inorganic anions. Under the optimized method conditions, the mean absolute and relative recoveries resulting from the replicate fortified deionized water and chlorinated drinking water analyses were 83-107% with a relative standard deviation of 0.7-11.7% and 84-111% with a relative standard deviation of 0.8-12.1%, respectively. The method detection limits resulting from the external and internal standard calibrations, based on seven fortified deionized water replicates, were 0.7-2.3. ng/L and 0.5-1.9. ng/L, respectively.
机译:开发了一种大体积直接水进样法,以负离子模式使用反相液相色谱/电喷雾电离/串联质谱法分析饮用水中的碘代卤代乙酸。研究了用于分析饮用水中一碘乙酸,氯碘乙酸,溴碘乙酸和二碘乙酸的内外标定方法。将转移阀技术用于流动相的溶剂延迟,连同同位素标记的类似物用作内标,可有效减少和补偿通常由共存的常见无机阴离子引起的电离抑制作用。在优化的方法条件下,重复的强化去离子水和氯化饮用水分析得到的平均绝对回收率和相对回收率分别为83-107%和相对标准偏差为0.7-11.7%和84-111%,相对标准偏差为分别为0.8-12.1%。根据七个强化的去离子水重复样品,由外标和内标校准得出的方法检测限为0.7-2.3。 ng / L和0.5-1.9。 ng / L。

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