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氢化物发生-原子化器捕集原子吸收光谱法超痕量测定锡

Ultratrace determination of tin by hydride generation in-atomizer trapping atomic absorption spectrometry.

作者信息

Průša Libor, Dědina Jiří, Kratzer Jan

机构信息

Institute of Analytical Chemistry of the ASCR, v. v. i.; Veveří 97, 602 00 Brno, Czech Republic; Charles University in Prague, Faculty of Science, Department of Analytical Chemistry, Hlavova 8, Prague 2, CZ 128 43 Czech Republic.

出版信息

Anal Chim Acta. 2013 Dec 4;804:50-8. doi: 10.1016/j.aca.2013.10.015. Epub 2013 Oct 19.

Abstract

A quartz multiatomizer with its inlet arm modified to serve as a trap (trap-and-atomizer device) was employed to trap tin hydride and subsequently to volatilize collected analyte species with atomic absorption spectrometric detection. Generation, atomization and preconcentration conditions were optimized and analytical figures of merit of both on-line atomization as well as preconcentration modes were quantified. Preconcentration efficiency of 95±5% was found. The detection limits reached were 0.029 and 0.14 ng mL(-1) Sn, respectively, for 120 s preconcentration period and on-line atomization mode without any preconcentration. The interference extent of other hydride forming elements (As, Se, Sb and Bi) on tin determination was found negligible in both modes of operation. The applicability of the developed preconcentration method was verified by Sn determination in a certified reference material as well as by analysis of real samples.

摘要

使用一个石英多原子化器,其入口臂经过改造用作捕集阱(捕集阱 - 原子化器装置),用于捕集氢化锡,随后通过原子吸收光谱检测使收集到的分析物挥发。对生成、原子化和预富集条件进行了优化,并对在线原子化和预富集模式的分析性能指标进行了量化。发现预富集效率为95±5%。在120秒预富集时间且无任何预富集的在线原子化模式下,锡的检测限分别达到0.029和0.14 ng mL(-1)。在两种操作模式下,发现其他氢化物形成元素(砷、硒、锑和铋)对锡测定的干扰程度可忽略不计。通过在有证标准物质中测定锡以及对实际样品进行分析,验证了所开发预富集方法的适用性。

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