首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Simultaneous and highly sensitive determination of selenium and tellurium species in environmental samples by on-line ionic liquid based in-situ solvent formation microextraction with hydride generation atomic fluorescence spectrometry detection
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Simultaneous and highly sensitive determination of selenium and tellurium species in environmental samples by on-line ionic liquid based in-situ solvent formation microextraction with hydride generation atomic fluorescence spectrometry detection

机译:基于氢化物产生原子荧光光谱法检测,在线离子液体液体液体液体液体液体液体液体液体液体液体溶剂形成微萃取和高敏感测定硒和碲种类

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摘要

A novel on-line preconcentration and speciation analysis method for the simultaneous determination of inorganic Se and Te species is presented in this work. The methodology is based on the on-line formation of a hydrophobic ionic liquid (IL) directly in the liquid sample stream of a flow injection system, thus achieving an efficient and rapid extraction of the analytes complexed with ammonium pyrrolidine dithiocarbamate into the finely dispersed extractant droplets, that were then retained in a column filled with cotton. A full study of the chemical and hydrodynamical parameters was developed, including the right selection of the IL used as extractant and its concentration, pH, complexing reagent, sample and ion-exchange reagent volumes and column design. Addi-tionally, a miniaturized external hydride generator was adapted to the spectrometer in order to increase the sensitivity of the atomic fluorescence measurements using only 250 mu L of 5 mol L-1 HNO3 in methanol as eluent. The analytical figures of merit obtained for 15 mL of sample included sensitivity enhancement factors of 71, 70, 49 and 40 for Te(IV), Te(VI), Se(IV) and Se(VI), respectively, and limits of detection of 1.8 ng L-1 for both Te species, 2.6 ng L-1 for Se(IV) and 3.2 ng L-1 for Se(VI). After optimization, the method was successfully applied for the analysis of environmental samples: soils and sediments, as well as sea, river, underground and tap water.
机译:本文提出了一种在线富集和形态分析同时测定无机硒和碲的新方法。该方法基于直接在流动注射系统的液体样品流中在线形成疏水性离子液体(IL),从而实现高效快速地将与吡咯烷二硫代氨基甲酸铵络合的分析物萃取到精细分散的萃取剂液滴中,然后将其保留在填充棉花的柱中。对化学和流体动力学参数进行了全面研究,包括正确选择IL作为萃取剂及其浓度、pH值、络合试剂、样品和离子交换试剂体积以及柱设计。此外,为了提高原子荧光测量的灵敏度,光谱仪采用了微型外部氢化物发生器,仅使用250μL甲醇中的5 mol L-1 HNO3作为洗脱液。15毫升样品的分析优值包括:碲(IV)、碲(VI)、硒(IV)和硒(VI)的灵敏度增强系数分别为71、70、49和40,两种碲的检测限为1.8纳克L-1,硒(IV)为2.6纳克L-1,硒(VI)为3.2纳克L-1。经过优化,该方法已成功应用于环境样品的分析:土壤和沉积物,以及海洋、河流、地下水和自来水。

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