首页> 外文期刊>Journal of the Iranian Chemical Society >In situ-produced CO2-assisted dispersive liquid-liquid microextraction for extraction and preconcentration of cobalt, nickel, and copper ions from aqueous samples followed by graphite furnace atomic absorption spectrometry determination
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In situ-produced CO2-assisted dispersive liquid-liquid microextraction for extraction and preconcentration of cobalt, nickel, and copper ions from aqueous samples followed by graphite furnace atomic absorption spectrometry determination

机译:原位生产的CO 2辅助分散液 - 液体微萃取和从含水样品中的钴,镍和铜离子的萃取和前浓缩,然后是石墨炉原子吸收光谱法测定

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摘要

In the present work, a new microextraction technique, namely in situ-produced CO2-assisted dispersive liquid-liquid microextraction was introduced for the extraction and preconcentration of cobalt, nickel, and copper from aqueous samples followed by graphite furnace atomic absorption spectrometry detection. The proposed method relies on the CO2 gas produced due to a chemical reaction as the disperser agent instead of the disperser solvent used in the conventional dispersive liquid-liquid microextraction. Initially, a solid mixture of tartaric acid and sodium bicarbonate was placed in the bottom of a dry conical glass test tube. Then A mu L level of 1,1,2,2-tetrachloroethane as the extraction solvent was added into the tube. An aqueous solution of the analytes containing sodium diethyldithiocarbamate (as chelating agent) was transferred into the tube. The reaction between tartaric acid and sodium bicarbonate was immediately occurred, and the produced CO2 led to dispersion of the extraction solvent as tiny droplets into the sample which resulted in extraction of the analytes into the organic solvent. The cloudy solution was centrifuged, and the sedimented phase was analyzed by the instrumental analytical method. Under the optimum conditions, the calibration curves were linear in the ranges of 20-300, 20-200, and 15-250 ng L-1 for Co2+, Ni2+, and Cu2+, respectively. Repeatability of the proposed method, expressed as relative standard deviation, ranged from 2.3 to 4.6 and 4.5-5.6% for intra- and inter-day (n = 6, C = 50 ng L-1) precisions, respectively. Moreover, the detection limits and enrichment factors of the selected analytes were obtained in the ranges of 6.2-12 and 139-150 ng L-1, respectively. The accuracy of the developed procedure was checked by analyzing NRCC-SLRS4 Riverine water as a certified reference material. Finally, the proposed method was successfully applied for the simultaneous analysis of the selected analytes in environmental water and fruit juice samples. The relative recoveries obtained for the analytes in the spiked samples were within in the range of 84-107%.
机译:在本作工作中,引入了一种新的微萃取技术,即原位产生的CO 2辅助分散液 - 液微萃取,用于从含水样品中萃取和前浓缩的钴,镍和铜,然后是石墨炉原子吸收光谱检测。所提出的方法依赖于由于化学反应作为分散剂代理而不是传统的分散液 - 液体微萃取中使用的分散器溶剂而产生的CO 2气体。最初,将酒石酸和碳酸氢钠的固体混合物置于干锥形玻璃试管的底部。然后将Mu L水平为1,1,2,2-四氯乙烷作为提取溶剂加入管中。将含有二乙基二硫代氨基甲酸二氢酸钠(作为螯合剂)的分析物水溶液转移到管中。立即发生酒石酸和碳酸氢钠之间的反应,并将所制备的CO 2导致萃取溶剂作为微小液滴分散到样品中,导致分析物中的分析物进入有机溶剂。将浑浊的溶液离心,通过仪器分析方法分析沉积的相。在最佳条件下,校准曲线分别在20-300,20-200和15-250ng L-1的范围内为CO 2 +,Ni2 +和Cu2 +。所提出的方法的可重复性,表示为相对标准偏差,分别为2.3至4.6%和4.5-5.6%,分别为 - 和日内(n = 6,c = 50 ng l-1)精度。此外,在6.2-12和139-150ng L-1的范围内获得所选分析物的检测限和富集因子。通过分析NRCC-SLRS4河滨水作为经过认证的参考材料来检查开发程序的准确性。最后,成功地应用了所提出的方法,以同时分析环境水和果汁样品中所选分析物。掺入样品中的分析物中获得的相对回收在84-107%的范围内。

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