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基于纳米材料填充双柱分离/预富集-电感耦合等离子体质谱联用技术对环境和生物样品中有机及无机硒形态的分析

Organic and inorganic selenium speciation in environmental and biological samples by nanometer-sized materials packed dual-column separation/preconcentration on-line coupled with ICP-MS.

作者信息

Huang Chaozhang, Hu Bin, He Man, Duan Jiankun

机构信息

Department of Chemistry, Wuhan University, Wuhan 430072, China.

出版信息

J Mass Spectrom. 2008 Mar;43(3):336-45. doi: 10.1002/jms.1321.

Abstract

A novel, fast, and cheap nonchromatographic method for direct speciation of dissolved inorganic and organic selenium species in environmental and biological samples was developed by flow injection (FI) dual-column preconcentration/separation on-line coupled with ICP-MS determination. In the developed technique, the first column packed with nanometer-sized Al(2)O(3) could selectively adsorb the inorganic selenium [Se(IV), Se(VI)], and the retained inorganic selenium could be eluted by 0.2 mol l(-1) NaOH, while the organic Se [selenocystine (SeCys(2)) and selenomethionine (Se-Met)] was not retained. On the other hand, the second column packed with mesoporous TiO(2) chemically modified by dimercaptosuccinic acid (DMSA) could selectively adsorb Se(IV) and SeCys(2) and barely adsorb Se(VI) and Se-Met. When the sample solution was passed through the column 1, separation of inorganic selenium and organic selenium could be achieved first. Then, the effluent from column 1 was successively introduced into the column 2 and the speciation of organic selenium could be attained due to the different adsorption behaviors of Se-Met and SeCys(2) on DMSA modified TiO(2). After that, the eluent from column 1 contained Se(IV), and Se(VI) was adjusted to desired pH and injected into column 2, and the speciation of Se(IV) and Se(VI) could also be realized thanks to their different retention on column 2. The parameters affecting the separation were investigated systematically and the optimal separation conditions were established. The detection limits obtained for Se(IV), Se(VI), Se-Met and SeCys(2) were 45-210 ng l(-1) with precisions of 3.6-9.7%. The proposed method has been successfully applied for the speciation of dissolved inorganic and organic selenium in environmental and biological samples. In order to validate the methodology, the developed method was also applied to the speciation of selenium in certified reference material of SELM-1 yeast, and the determined values were in good agreement with the certified values.

摘要

通过流动注射(FI)双柱预富集/分离与电感耦合等离子体质谱(ICP-MS)测定联用,开发了一种新颖、快速且廉价的非色谱方法,用于直接测定环境和生物样品中溶解的无机和有机硒形态。在该技术中,填充纳米级Al₂O₃的第一根柱子可选择性吸附无机硒[Se(IV)、Se(VI)],保留的无机硒可用0.2 mol l⁻¹ NaOH洗脱,而有机硒[硒代胱氨酸(SeCys₂)和硒代蛋氨酸(Se-Met)]不被保留。另一方面,填充经二巯基琥珀酸(DMSA)化学修饰的介孔TiO₂的第二根柱子可选择性吸附Se(IV)和SeCys₂,几乎不吸附Se(VI)和Se-Met。当样品溶液通过柱1时,可首先实现无机硒和有机硒的分离。然后,柱1的流出物依次引入柱2,由于Se-Met和SeCys₂在DMSA修饰的TiO₂上的吸附行为不同,可实现有机硒的形态分析。之后,柱1的洗脱液含有Se(IV),将Se(VI)调节至所需pH后注入柱2,由于它们在柱2上的保留情况不同,也可实现Se(IV)和Se(VI)的形态分析。系统研究了影响分离的参数并确定了最佳分离条件。Se(IV)、Se(VI)、Se-Met和SeCys₂的检出限为45 - 210 ng l⁻¹,精密度为3.6 - 9.7%。所提出的方法已成功应用于环境和生物样品中溶解的无机和有机硒的形态分析。为验证该方法,将所开发的方法应用于SELM-1酵母标准参考物质中硒的形态分析,测定值与认证值吻合良好。

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