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首页> 外文期刊>Journal of separation science. >Ionic liquids dispersive liquid-liquid microextraction and HPLC-atomic fluorescence spectrometric determination of mercury species in environmental waters
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Ionic liquids dispersive liquid-liquid microextraction and HPLC-atomic fluorescence spectrometric determination of mercury species in environmental waters

机译:离子液体分散液-液微萃取和HPLC-原子荧光光谱法测定环境水中的汞

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摘要

An ionic liquid (IL) based dispersive liquid-liquid microextraction combined with HPLC hydride generation atomic fluorescence spectrometry method for the preconcentration and determination of mercury species in environmental water samples is described. Four mercury species (MeHg~+, EtHg ~+, PhHg~+, and Hg~(2+)) were complexed with dithionate and the neutral chelates were extracted into IL drops using dispersive liquid-liquid microextraction. Variables affecting the formation and extraction of mercury dithizonates were optimized. The optimum conditions found were as follows: IL-type and amount, 0.05 g of 1-octyl-3-methylimidazolium hexafluorophosphate; dispersive solvents type and amount, 500 μL of acetone; pH, 6; extraction time, 2 min; centrifugation time, 12 min; and no sodium chloride addition. Under the optimized conditions, the detection limits of the analytes were 0.031 μg/L for Hg~(2+), 0.016 μg/L for MeHg ~+, 0.024 μg/L for EtHg~+, and 0.092 μg/L for PhHg~+, respectively. The repeatability of the method, expressed as RSD, was between 1.4 and 5.2% (n = 10), and the average recoveries for spiked test were 96.9% for Hg~(2+), 90.9% for MeHg~+, 90.5% for EtHg~+, 92.3% for PhHg~+, respectively. The developed method was successfully applied for the speciation of mercury in environmental water samples.
机译:介绍了一种基于离子液体(IL)的分散液-液微萃取与HPLC氢化物发生原子荧光光谱法相结合的方法,用于环境水中样品中汞的富集和测定。将四类汞(MeHg〜+,EtHg〜+,PhHg〜+和Hg〜(2+))与二硫酸盐络合,并使用分散液-液微萃取将中性螯合物提取到IL液滴中。优化了影响二硫代汞酸盐的形成和提取的变量。发现的最佳条件如下:IL型和量,0.05g 1-辛基-3-甲基咪唑鎓六氟磷酸盐;分散溶剂的种类和用量,丙酮500μL; pH值为6;提取时间2分钟;离心时间12分钟;并且不添加氯化钠。在最佳条件下,分析物的检出限为Hg〜(2+)为0.031μg/ L,MeHg〜+为0.016μg/ L,EtHg〜+为0.024μg/ L,PhHg〜为0.092μg/ L +,分别。该方法的可重复性用RSD表示为1.4至5.2%(n = 10),加标测试的平均回收率Hg〜(2+)为96.9%,MeHg〜+为90.9%,Hg〜+为90.5%。 EtHg〜+,PhHg〜+分别为92.3%。该方法成功应用于环境水样中汞的形态分析。

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