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首页> 外文期刊>Chromatographia >Homogeneous Liquid–Liquid Microextraction for Determination of Organochlorine Pesticides in Water and Fruit Samples
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Homogeneous Liquid–Liquid Microextraction for Determination of Organochlorine Pesticides in Water and Fruit Samples

机译:均相液相微萃取法测定水和水果样品中的有机氯农药

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摘要

A fast and effective preconcentration method for extraction of organochlorine pesticides (OCPs) was developed using a homogeneous liquid–liquid extraction based on phase separation phenomenon in a ternary solvent (water/methanol/chloroform) system. The phase separation phenomenon occurred by salt addition. After centrifugation, the extraction solvent was sedimented in the bottom of the conical test tube. The OCPs were transferred into the sedimented phase during the phase separation step. The extracted OCPs were determined using gas chromatography– electron capture detector. Several factors influencing the extraction efficiency were investigated and optimized. Optimal results were obtained at the following conditions: volume of the consolute solvent (methanol), 1.0 mL; volume of the extraction solvent (chloroform), 55 μL; volume of the sample, 5 mL; and concentration of NaCl, 5 % (w/v). Under optimal conditions, the preconcentration factors in the range of 486–1,090, the dynamic linear range of 0.01–100 μg L~(?1), and the limits of detection of 0.001–0.03 μg L~(?1) were obtained for the OCPs. Using internal standard, the relative standard deviations for 1 μg L~(?1) of the OCPs in the water samples were obtained in the range of 4.9–8.6 % (n = 5). Finally, the proposed method was successfully applied for extraction and determination of the OCPs in water and fruit samples.
机译:基于三元溶剂(水/甲醇/氯仿)系统中的相分离现象,使用均相液-液萃取技术开发了一种快速有效的有机氯农药预浓缩方法。相分离现象是由于加盐而发生的。离心后,萃取溶剂沉淀在锥形试管的底部。在相分离步骤中,OCP被转移到沉淀相中。使用气相色谱-电子捕获检测器测定提取的OCP。研究和优化了影响萃取效率的几个因素。在以下条件下可获得最佳结果:浓溶剂(甲醇)的体积为1.0 mL;萃取溶剂(氯仿)的体积为55μL;样品体积,5 mL; NaCl的浓度为5%(w / v)。在最佳条件下,获得的富集预浓系数为486–1,090,动态线性范围为0.01–100μgL〜(?1),检出限为0.001–0.03μgL〜(?1)。 OCP。使用内标,水样中1μgL〜(?1)的OCP的相对标准偏差在4.9–8.6%的范围内(n = 5)。最后,该方法成功地用于水和水果样品中OCP的提取和测定。

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