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顺序注射离子液体分散液液微萃取-火焰原子吸收光谱法测定铊。

Sequential injection ionic liquid dispersive liquid-liquid microextraction for thallium preconcentration and determination with flame atomic absorption spectrometry.

机构信息

Laboratory of Analytical Chemistry, Department of Chemistry, Aristotle University, Thessaloniki, Greece.

出版信息

Anal Bioanal Chem. 2012 Aug;404(3):685-91. doi: 10.1007/s00216-011-5700-1.

Abstract

A novel, automatic on-line sequential injection dispersive liquid-liquid microextraction (SI-DLLME) method, based on 1-hexyl-3-methylimidazolium hexafluorophosphate ([Hmim][PF(6)]) ionic liquid as an extractant solvent was developed and demonstrated for trace thallium determination by flame atomic absorption spectrometry. The ionic liquid was on-line fully dispersed into the aqueous solution in a continuous flow format while the TlBr(4)(-) complex was easily migrated into the fine droplets of the extractant due to the huge contact area of them with the aqueous phase. Furthermore, the extractant was simply retained onto the surface of polyurethane foam packed into a microcolumn. No specific conditions like low temperature are required for extractant isolation. All analytical parameters of the proposed method were investigated and optimized. For 15 mL of sample solution, an enhancement factor of 290, a detection limit of 0.86 μg L(-1) and a precision (RSD) of 2.7% at 20.0 μg L(-1) Tl(I) concentration level, was obtained. The developed method was evaluated by analyzing certified reference materials while good recoveries from environmental and biological samples proved that present method was competitive in practical applications.

摘要

一种新颖的、自动在线顺序注射分散液-液微萃取(SI-DLLME)方法,基于 1-己基-3-甲基咪唑六氟磷酸盐([Hmim][PF(6)])离子液体作为萃取溶剂,用于火焰原子吸收光谱法测定痕量铊。在连续流动模式下,离子液体在线完全分散到水溶液中,由于它们与水相之间的巨大接触面积,TlBr(4)(-)配合物很容易迁移到萃取剂的细微液滴中。此外,萃取剂很容易保留在填充到微柱中的聚氨酯泡沫的表面上。不需要萃取剂分离的特定条件,如低温。对所提出方法的所有分析参数进行了研究和优化。对于 15 mL 的样品溶液,获得了 290 的增强因子、0.86 μg L(-1)的检测限和 20.0 μg L(-1)Tl(I)浓度水平下 2.7%的精密度(RSD)。通过分析认证参考物质评估了所开发的方法,而从环境和生物样品中获得的良好回收率证明了该方法在实际应用中的竞争力。

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