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用于沉积物和鱼肉中有机氯农药分析的样品净化

Sample purification for analysis of organochlorine pesticides in sediment and fish muscle.

作者信息

Pan B, Liu W X, Shi Z, Cao J, Shen W R, Qing B P, Sun R, Tao S

机构信息

Laboratory for Earth Surface Processes Simulation and Analysis, College of Environmental Sciences, Peking University, Beijing, China.

出版信息

J Environ Sci Health B. 2004 May;39(3):353-65. doi: 10.1081/pfc-120035922.

Abstract

The methods of sample purification for determinations of organochlorine pesticides (OCPs) in sediment and fish muscle were investigated in this study. A two-step procedure with preliminary cleanup and florisil column fraction was adopted. The working conditions of florisil column were firstly optimized. As to preliminary cleanup, liquid-liquid extraction by mixture of dimethyl formamide (DMF) and hexane and sulphonation by concentrated sulfuric acid were applied respectively and compared for the studied samples. The results indicated that liquid-liquid distribution could effectively separate lipids from fish muscle extracts, while failed in elimination of chlorophyll extracted from the relicts of hydrophytes in the sediment sample. In view of the sample appearance and clarity of gas chromatogram, sulphonation was more suitable to purify the sediment sample, however, the recoveries of the spiked standards were poor. The use of eluting solvent with stronger polarity could improve the corresponding recoveries significantly. Due to complete loss of Dieldrin, Endrin, and Endrin aldehyde after sulphonation, this pretreatment was improper to the three components. Sulfur, as the particular disturbing element in sediment, could be removed sufficiently by addition of activated copper powder. The relevant detection limits of the selected methods for OCPs in the studied substrates were also provided.

摘要

本研究对沉积物和鱼肉中有机氯农药(OCPs)测定的样品净化方法进行了研究。采用了初步净化和弗罗里硅土柱分离的两步程序。首先对弗罗里硅土柱的工作条件进行了优化。对于初步净化,分别采用二甲基甲酰胺(DMF)和己烷混合物进行液液萃取以及浓硫酸磺化法对研究样品进行处理并比较。结果表明,液液分配能有效分离鱼肉提取物中的脂质,但无法去除沉积物样品中从水生植物残骸中提取的叶绿素。从样品外观和气相色谱图的清晰度来看,磺化更适合净化沉积物样品,然而,加标标准物的回收率较低。使用极性更强的洗脱溶剂可显著提高相应的回收率。由于磺化后狄氏剂、异狄氏剂和异狄氏剂醛完全损失,该预处理方法不适用于这三种成分。硫作为沉积物中特殊的干扰元素,可通过添加活性铜粉充分去除。还提供了所研究基质中OCPs选定方法的相关检测限。

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