首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Application of constrained mixture design and Doehlert matrix in the optimization of dispersive liquid-liquid microextraction assisted by ultrasound for preconcentration and determination of cadmium in sediment and water samples by FAAS
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Application of constrained mixture design and Doehlert matrix in the optimization of dispersive liquid-liquid microextraction assisted by ultrasound for preconcentration and determination of cadmium in sediment and water samples by FAAS

机译:约束混合体设计和道光学基质在超声中辅助超声浓度优化的应用,沉积物和水样中镉的测定

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A dispersive liquid-liquid microextraction assisted by ultrasound (USADLLME) with 5-(4-Dimethylaminobenzylidene) Rhodanine procedure has been developed for preconcentration of cadmium in water and sediment samples by flame atomic absorption spectrometry (FAAS). The proportions of mixture composed of disperser, extractor solvents and complexing reagent was optimized using a constrained mixture design. The variables pH, concentration of NaCl and sonication time were optimized using a Doehlert matrix. The precision of method expressed as relative standard deviation (RSD) of 2.92 and 338% for 50 and 20 mu g L-1, respectively, the detection limit was 0.23 mu g L-1 and the limit of quantification of 0.76 mu g L-1. The accuracy was confirmed by the analysis of certified reference materials (Drinking Water Standard APS 1071, Fresh Water Sediment 3 RTC 016, Oyster Tissue KIST 1566b, Tomato Leaves NIST 1773a), the Spike test showed recoveries between 90 and 110%. The method was applied to river water, drinking water and sediment, the concentration of cadmium ranged from 1.46-4.60 mu g L-1 for water samples and from 0.90 to 123 mu g g(-1) for sediment samples. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过火焰原子吸收光谱法(FAAAS)开发了用5-(4-二甲基氨基苄基)rhodanine程序的超声(USADLLME)辅助用5-(4-二甲基氨基苯苄基苄基)rhodanine程序的分散液 - 液体微萃取。使用受约束的混合物设计优化了由分散剂,提取器溶剂和络合试剂组成的混合物的比例。使用道尔矩阵优化了NaCl和超声处理时间的变量pH,浓度和超声处理时间。分别表示为2.92和338%的相对标准偏差(RSD)的方法的精度分别为50和20μg1-1,检测极限为0.23μgl-1,量化为0.76μgl- 1。通过认证参考资料的分析确认了准确性(饮用水标准APS 1071,淡水沉积物3 RTC 016,Oyster Coissics Kist 1566B,番茄叶NIST 1773A),尖峰试验显示90%至110%的回收率。将该方法应用于河水,饮用水和沉积物,镉的浓度为水样为1.46-4.60μgl-1,沉积物样品为0.90-123μg(-1)。 (c)2016年Elsevier B.v.保留所有权利。

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