首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Optimization of dispersive liquid-liquid microextraction coupled with inductively coupled plasma-optical emission spectrometry with the aid of experimental design for simultaneous determination of heavy metals in natural waters
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Optimization of dispersive liquid-liquid microextraction coupled with inductively coupled plasma-optical emission spectrometry with the aid of experimental design for simultaneous determination of heavy metals in natural waters

机译:借助实验设计同时测定天然水中重金属的分散液-液微萃取与电感耦合等离子体发射光谱法的优化

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In this study, dispersive liquid-liquid microextraction (DLLME) combined with inductively coupled plasma optical emission spectrometry (ICP-OES) was developed for simultaneous preconcentration and trace determination of chromium, copper, nickel and zinc in water samples. Sodium diethyldithiocarbamate (Na-DDTC), carbon tetrachloride and methanol were used as chelating agent, extraction solvent and disperser solvent, respectively. The effective parameters of DLLME such as volume of extraction and disperser solvents, pH, concentration of salt and concentration of the chelating agent were studied by a (2 ~(f-1)) fractional factorial design to identify the most important parameters and their interactions. The results showed that concentration of salt and volume of disperser solvent had no effect on the extraction efficiency. In the next step, central composite design was used to obtain optimum levels of effective parameters. The optimal conditions were: volume of extraction solvent, 113 μL; concentration of the chelating agent, 540 mg L~(-1); and pH, 6.70. The linear dynamic range for Cu, Ni and Zn was 1-1000 μg L ~(-1) and for Cr was 1-750 μg L~(-1). The correlation coefficient (R~2) was higher than 0.993. The limits of detection were 0.23-0.55 μg L~(-1). The relative standard deviations (RSDs, C = 200 μg L~(-1), n = 7) were in the range of 2.1-3.8%. The method was successfully applied to determination of Cr, Cu, Ni and Zn in the real water samples and satisfactory relative recoveries (90-99%) were achieved.
机译:在这项研究中,开发了液-液微萃取(DLLME)与电感耦合等离子体发射光谱法(ICP-OES)相结合的方法,用于同时预富集和痕量测定水中的铬,铜,镍和锌。二乙基二硫代氨基甲酸钠(Na-DDTC),四氯化碳和甲醇分别用作螯合剂,萃取溶剂和分散剂溶剂。通过(2〜(f-1))分数阶乘设计研究了DLLME的有效参数,例如萃取剂和分散剂的体积,pH,盐浓度和螯合剂的浓度,以确定最重要的参数及其相互作用。结果表明,盐的浓度和分散剂的体积对提取效率没有影响。下一步,使用中央复合设计来获得最佳水平的有效参数。最佳条件为:萃取溶剂的体积为113μL。螯合剂浓度为540mg L〜(-1); pH为6.70。 Cu,Ni和Zn的线性动态范围为1-1000μgL〜(-1),Cr的线性动态范围为1-750μgL〜(-1)。相关系数(R〜2)高于0.993。检测限为0.23-0.55μgL〜(-1)。相对标准偏差(RSD,C = 200μgL〜(-1),n = 7)在2.1-3.8%的范围内。该方法成功用于实际水样中铬,铜,镍和锌的测定,相对回收率达到90-99%。

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