文档详情

液相微萃取—高效液相色谱法测定环境中的吡虫啉.doc

发布:2017-06-01约1.04万字共22页下载文档
文本预览下载声明
液相微萃取—高效液相色谱法测定环境中的吡虫啉摘 要本文研究了基于三相中空纤维磁力搅拌的新型液相微萃取(LPME)模式,采用磷酸二氢钾作接受液,快速分离富集稻谷、稻叶、水和土壤中吡虫啉农药残留的前处理技术,以高效液相色谱(HPLC)为检测手段。系统地优化了LPME技术的有机溶剂、搅拌速率和萃取时间等条件。最佳色谱条件为:SB-Phenyl C18(250×4.6mm i.d.,5μm)液相色谱柱,以甲醇:水:三乙胺(80:20:1,v:v)为流动相,流速0.8 ml/min,270 nm波长下检测。得到方法的线性范围0.0001~0.2 μg/m,最低检出限为5g/ml(S/N=3),加标回收率98. 3%~101. 5%,富集倍数19.2倍。建立了一种简单、快速、准确、环境友好的农药残留检测方法。关键词吡虫啉 农药残留 中空纤维 前处理 液相微萃取 The Determination of Imidacloprid in Environment Based on Three-phase Hollow Fiber Liquid Phase Microextraction-High Performance Liquid Chromatography Chen chenglong (Applied Chemistry Department ,Eastchina Institute of Techonology ,Fuzhuo,JX344000) Abstract: A novel method for fast separate and enrichment imidacloprid in paddy,leaf,water and soil was established by using high performance liquid chromatography (HPLC) coupled with a three-phase hollow fiber based liquid phase microextraction (TP-HF-LPME) technique for sample preparation. Parameters related to TP-HF-LPME (organic solvent, stirring speed,pH of donor and acceptor phase, extraction time) were also optimized experimentally. The proposed method integrates extraction,enrichment and clean-up into a single step. The method was developed chromatography was carried out on an SB-Phenyl C18 (250mm ×4.6mm i.d.,5μm ) column,methanol-water –triethylamine,(80∶20:1, V :V) as mobile phase and detection at 270nm. It has been demonstrated to be a very fast,effective and virtually “green” sample preparation technique, which provided a good linear range (0.0001~0.2 μg/ml) with r2 = 0.9997 a low detection limit(5 ng/ml, S/N = 3),RSD=1.2% and the addition recovery was obtained in the range of 98.30-101.5%. The proposed method integrates extraction, enrichment and clean-up into a single step, which is a simple,effective,veracious and environmental method for detecting pesticide residue. Keywords: imidacloprid pesticide residue hollow fiber pretreatment liquid phase microextraction 目录 1.前言.. 5 1.1 吡虫啉简介. 5 1.2 液相微萃取(LPME) 5 1.2.1 液相微萃取的发展历史 5 1.2
显示全部
相似文档