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首页> 外文期刊>Journal of industrial and engineering chemistry >Application of conventional and modified cloud point extraction for simultaneous enrichment of cadmium, lead and copper in lake water and fish muscles
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Application of conventional and modified cloud point extraction for simultaneous enrichment of cadmium, lead and copper in lake water and fish muscles

机译:常规和改进浊点萃取技术在湖水和鱼肉中同时富集镉,铅和铜的应用

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摘要

A new method based on modification of cloud point extraction for simultaneous enrichment of cadmium, lead and copper in water and fish muscle samples was proposed. The extraction efficiency by modified cloud point extraction (m-CPE) was compared with conventional cloud point extraction (c-CPE) method. The procedure for both CPE methods was comprised of formation of metal complexes with a hydrophobic chelating agent, dithizone, followed by entrapment of the chelates in a nonionic surfactant, Triton X-114. For c-CPE, the surfactant rich phase was treated with ethanolic solution of nitric acid and analyzed by flame atomic absorption spectrometer (FAAS). Whereas for m-CPE, aqueous nitric acid was used to back extract the metal ions from the surfactant rich phase and finally determined. The efficiency of the methods was tested by analyzing certified reference material and standard addition to a real sample. All the experimental parameters were optimized. At optimized experimental conditions, preconcentration and enhancement factors were 62.5 and 78.0 to 83.0 respectively for m-CPE, 25.0 and 56.0% higher than that of c-CPE. This improvement might be due to elimination of the effects of surfactant on the signal of analytes by FAAS. The developed method of m-CPE was applied successfully for analysis of the selected heavy metals in water and muscle tissues samples of fish of different lakes in Sindh, Pakistan. (C) 2016 Published by Elsevier B.V. on behalf of The Korean Society of Industrial and Engineering Chemistry.
机译:提出了一种基于浊点萃取修正的同时富集水和鱼肉样品中镉,铅和铜的新方法。将改进的浊点提取(m-CPE)的提取效率与常规浊点提取(c-CPE)方法进行了比较。两种CPE方法的步骤均包括与疏水性螯合剂双硫zone形成金属络合物,然后将螯合物包埋在非离子表面活性剂Triton X-114中。对于c-CPE,用硝酸乙醇溶液处理富含表面活性剂的相,并通过火焰原子吸收光谱仪(FAAS)进行分析。而对于m-CPE,使用硝酸水溶液从富表面活性剂的相中反萃取金属离子,并最终确定。通过分析认证的参考物质和标准样品到真实样品中来测试方法的效率。优化了所有实验参数。在优化的实验条件下,m-CPE的预浓缩和增强因子分别为62.5和78.0至83.0,比c-CPE分别提高25.0和56.0%。这种改进可能是由于FAAS消除了表面活性剂对分析物信号的影响。所开发的m-CPE方法已成功地用于分析巴基斯坦信德省不同湖泊鱼的水和肌肉组织样本中的重金属。 (C)2016年由Elsevier B.V.代表韩国工业与工程化学学会出版。

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