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溶液阴极辉光放电诱导汞的蒸汽发生及其在高效液相色谱-原子荧光光谱法测定汞形态中的应用。

Solution cathode glow discharge induced vapor generation of mercury and its application to mercury speciation by high performance liquid chromatography-atomic fluorescence spectrometry.

机构信息

State Key Laboratory of Biogeology and Environmental Geology, China University of Geosciences, Wuhan, China.

出版信息

J Chromatogr A. 2011 Jul 15;1218(28):4462-7. doi: 10.1016/j.chroma.2011.05.034. Epub 2011 May 18.

Abstract

A novel solution cathode glow discharge (SCGD) induced vapor generation was developed as interface to on-line couple high-performance liquid chromatography (HPLC) with atomic fluorescence spectrometry (AFS) for the speciation of inorganic mercury (Hg(2+)), methyl-mercury (MeHg) and ethyl-mercury (EtHg). The decomposition of organic mercury species and the reduction of Hg(2+) could be completed in one step with this proposed SCGD induced vapor generation system. The vapor generation is extremely rapid and therefore is easy to couple with flow injection (FI) and HPLC. Compared with the conventional HPLC-CV-AFS hyphenated systems, the proposed HPLC-SCGD-AFS system is very simple in operation and eliminates auxiliary redox reagents. Parameters influencing mercury determination were optimized, such as concentration of formic acid, discharge current and argon flow rate. The method detection limits for HPLC-SCGD-AFS system were 0.67 μg L(-1) for Hg(2+), 0.55 μg L(-1) for MeHg and 1.19 μg L(-1) for EtHg, respectively. The developed method was validated by determination of certified reference material (GBW 10029, tuna fish) and was further applied for the determination of mercury in biological samples.

摘要

一种新颖的溶液阴极辉光放电(SCGD)诱导蒸汽发生技术被开发出来,作为在线将高效液相色谱(HPLC)与原子荧光光谱法(AFS)偶联的接口,用于无机汞(Hg(2+))、甲基汞(MeHg)和乙基汞(EtHg)的形态分析。该提议的 SCGD 诱导蒸汽发生系统可一步完成有机汞物种的分解和 Hg(2+)的还原。蒸汽生成非常迅速,因此易于与流动注射(FI)和 HPLC 偶联。与传统的 HPLC-CV-AFS 联用系统相比,所提议的 HPLC-SCGD-AFS 系统操作非常简单,并消除了辅助氧化还原试剂。优化了影响汞测定的参数,例如甲酸浓度、放电电流和氩气流速。HPLC-SCGD-AFS 系统的方法检测限分别为 Hg(2+)0.67 μg L(-1)、MeHg 0.55 μg L(-1)和 EtHg 1.19 μg L(-1)。通过测定认证参考物质(GBW 10029,金枪鱼)验证了所开发方法的有效性,并进一步将其应用于生物样品中汞的测定。

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