首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Improved method for the determination of zinc pyrithione in environmental water samples incorporating on-line extraction and preconcentration coupled with liquid chromatography atmospheric pressure chemical ionisation mass spectrometry
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Improved method for the determination of zinc pyrithione in environmental water samples incorporating on-line extraction and preconcentration coupled with liquid chromatography atmospheric pressure chemical ionisation mass spectrometry

机译:在线萃取与预浓缩-液相色谱-常压化学电离质谱联用测定环境水样中巯氧吡啶锌的改进方法

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A method has been developed for the determination of zinc pyrithione (ZnPT) in environmental water samples using monolithic reversed-phase silica columns for rapid on-line large volume solid phase extraction in tandem with on-line matrix removal using sacrificial strong anion exchange (SAX) columns. This is coupled with reversed-phase liquid chromatography with atmospheric pressure chemical ionisation mass spectrometric detection. Limits of detection in spiked river water samples, using a 200 mL preconcentration volume, were determined as 18 ng L-1, with a limit of quantitation of 62 ng L-1. The percentage recovery from spiked river water was found to be 72 +/- 9 (n = 3 extractions), whilst overall method precision, following 10 repeat complete analyses was found to be 27% RSD at I jig L-1. Linearity was determined over the concentration range of 0.25- 10 mu g L-1 and the calculated regression coefficient was R-2 = 0.9802. The method was used to investigate the environmental fate of zinc pyrithione in waters and its partition coefficient between sediment and water phases. (c) 2006 Elsevier B.V. All rights reserved.
机译:已开发出一种使用整体式反相硅胶柱测定环境水样中巯氧吡啶锌(ZnPT)的方法,该方法可以快速在线大规模固相萃取,同时使用牺牲性强阴离子交换(SAX)在线去除基质) 列。这与具有大气压化学电离质谱检测的反相液相色谱结合。使用200 mL预浓缩体积,加标河水样品中的检出限为18 ng L-1,定量限为62 ng L-1。从加标的河水中回收的百分比为72 +/- 9(n = 3次提取),而在进行10次重复完整分析后,总的方法精度为I jig L-1,相对标准偏差为27%。在0.25-10μgL-1的浓度范围内确定线性,计算的回归系数为R-2 = 0.9802。该方法用于研究巯氧吡啶锌在水中的环境命运及其在沉积物和水相之间的分配系数。 (c)2006 Elsevier B.V.保留所有权利。

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