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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >On-line sequential injection dispersive liquid-liquid microextraction system for flame atomic absorption spectrometric determination of copper and lead in water samples
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On-line sequential injection dispersive liquid-liquid microextraction system for flame atomic absorption spectrometric determination of copper and lead in water samples

机译:在线顺序注射分散液液微萃取系统用于火焰原子吸收光谱法测定水中的铜和铅

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摘要

A simple, sensitive and powerful on-line sequential injection (SI) dispersive liquid-liquid microextraction (DLLME) system was developed as an alternative approach for on-line metal preconcentration and separation, using extraction solvent at microlitre volume. The potentials of this novel schema, coupled to flame atomic absorption spectrometry (FAAS), were demonstrated for trace copper and lead determination in water samples. The stream of methanol (disperser solvent) containing 2.0% (v/v) xylene (extraction solvent) and 0.3% (m/v) ammonium diethyldithiophosphate (chelating agent) was merged on-line with the stream of sample (aqueous phase), resulting a cloudy mixture, which was consisted of fine droplets of the extraction solvent dispersed entirely into the aqueous phase. By this continuous process, metal chelating complexes were formed and extracted into the fine droplets of the extraction solvent. The hydrophobic droplets of organic phase were retained into a microcolumn packed with PTFE-turnings. A portion of 300 mu L isobutylmethylketone was used for quantitative elution of the analytes, which transported directly to the nebulizer of FAAS. All the critical parameters of the system such as type of extraction solvent, flow-rate of disperser and sample, extraction time as well as the chemical parameters were studied. Under the optimum conditions the enhancement factor for copper and lead was 560 and 265, respectively. For copper, the detection limit and the precision (R-S.D.) were 0.04 mu g L-1 and 2.1% at 2.0 mu g L-1 Cu(II). respectively, while for lead were 0.54 mu g L-1 and 1.9% at 30.0 mu g L-1 Pb(II), respectively. The developed method was evaluated by analyzing certified reference material and applied successfully to the analysis of environmental water samples.
机译:开发了一种简单,灵敏且功能强大的在线顺序注射(SI)分散液-液微萃取(DLLME)系统,作为使用微升体积的萃取溶剂进行在线金属预浓缩和分离的替代方法。结合火焰原子吸收光谱法(FAAS)证明了这种新颖方案的潜力,可用于测定水中的痕量铜和铅。将含有2.0%(v / v)二甲苯(萃取溶剂)和0.3%(m / v)的二乙基二硫代磷酸铵(螯合剂)的甲醇(分散溶剂)与样品流(水相)在线合并,得到浑浊的混合物,其由完全分散到水相中的萃取溶剂的细小液滴组成。通过这种连续过程,形成了金属螯合络合物,并将其提取到提取溶剂的细小液滴中。将有机相的疏水性液滴保留在填充了PTFE屑的微柱中。将一部分300μL的异丁基甲基酮用于定量洗脱分析物,然后将其直接运输至FAAS雾化器。研究了系统的所有关键参数,例如萃取溶剂的类型,分散剂和样品的流速,萃取时间以及化学参数。在最佳条件下,铜和铅的增强因子分别为560和265。铜的检出限和精密度(R-S.D。)为0.04μgL-1,在2.0μgL-1 Cu(II)下为2.1%。铅分别为30.0微克L-1 Pb(II)时为0.54微克L-1和1.9%。通过分析认证的参考物质对开发的方法进行了评估,并将其成功应用于环境水样的分析。

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