首页> 美国卫生研究院文献>International Journal of Analytical Chemistry >Simultaneous Determination of Cr As Se and Other Trace Metal Elements in Seawater by ICP-MS with Hybrid Simultaneous Preconcentration Combining Iron Hydroxide Coprecipitation and Solid Phase Extraction Using Chelating Resin
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Simultaneous Determination of Cr As Se and Other Trace Metal Elements in Seawater by ICP-MS with Hybrid Simultaneous Preconcentration Combining Iron Hydroxide Coprecipitation and Solid Phase Extraction Using Chelating Resin

机译:ICP-MS混合同时预富集-氢氧化铁共沉淀-螯合树脂固相萃取-ICP-MS同时测定海水中的CrAsSe和其他痕量金属元素

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摘要

In the present study, ICP-MS with a new hybrid simultaneous preconcentration combining solid phase extraction using chelating resin and iron hydroxide coprecipitation in one batch at a single pH adjustment (pH 6.0) were developed for multielement determination of trace metal ions in seawater. In multielement determination, the present method makes it possible to determine Cr(III), As(V), Se (IV), and other 14 trace metal elements (Ti, V, Co, Ni, Cu, Zn, Zr, Ge, Cd, Sb, Sn, W, Pb, and U) in seawater. Moreover, for speciation analyses of Cr, As, and Se, the pH dependence on recovery for the different chemical forms of Cr, As, and Se was investigated. In speciation analyses, Cr, As, and Se were determined as the total of Cr (III) and a part of Cr (VI), total of As (III) and As (V), and Se(IV), respectively. Determination of total of Se and Cr(VI) remains as future task to improve. Nevertheless, the present method would have possibility to develop as the analytical method to determine comprehensively most metal elements in all standard and guideline values in quality standard in environmental water in Japan, that is, most toxic metal elements in environmental water.
机译:在本研究中,开发了一种ICP-MS,它具有新的混合同时预浓缩技术,该技术在单一pH调节(pH 6.0)下一批使用螯合树脂和氢氧化铁共沉淀进行固相萃取相结合,用于多元素测定海水中的痕量离子。在多元素测定中,本方法可以测定Cr(III),As(V),Se(IV)和其他14种微量金属元素(Ti,V,Co,Ni,Cu,Zn,Zr,Ge,海水中的Cd,Sb,Sn,W,Pb和U)。此外,对于Cr,As和Se的形态分析,研究了pH对Cr,As和Se不同化学形式的回收率的依赖性。在形态分析中,将Cr,As和Se分别确定为Cr(III)和部分Cr(VI),As(III)和As(V)和Se(IV)的总量。硒和铬(VI)总量的测定仍然是未来的改进工作。然而,本方法有可能发展成为一种分析方法,以全面测定日本环境水中所有标准和质量标准中的大多数金属元素,即环境水中大多数有毒金属元素。

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