Single Drop Microextraction Analytical Technique for Simultaneous Separation and Trace Enrichment of Atrazine and its Major Degradation Products from Environmental Waters Followed by Liquid Chromatographic Determination

A. Yohannes, Tesfaye Tolesa, Yared Merdassa, Negussie Megersa
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引用次数: 8

Abstract

In this work, a method of single drop microextraction (SDME) combined with high performance liquid chromatography (HPLC) with diode array detection (DAD) was studied for trace level enrichment as well as simultaneous determination of atrazine (ATZ) and its major degradation products such as desethylatrazine (DEA) and desisopropylatrazine (DIA) in environmental waters. The main factors influencing the extraction procedure including types and volume of extraction solvent, sample stirring rate, sample solution pH, extraction temperature, extraction time, and salting out effect were optimized. The method detection limits were as low as 0.01 for ATZ and 0.05 for both DIA and DEA, with coefficients of determination better than 0.998 within a linear range of 0.5-150 μg L-1. Under the optimal conditions, the proposed method was applied for the analysis of real water samples and good spiked recoveries in the range of 65.6%-96.3% with relative standard deviation of less than 5% were obtained. The results confirmed that the proposed procedure provides reliable precision, linearity and sensitivity and is very effective for analyzing the target compounds in environmental waters. Therefore, the developed SDME method coupled with HPLC-DAD was found to be simple, inexpensive, and environmentally benign sample pretreatment technique.
单滴微萃取分析技术同时分离富集环境水体中阿特拉津及其主要降解产物液相色谱测定
本文研究了单滴微萃取(SDME) -高效液相色谱(HPLC) -二极管阵列检测(DAD)联合富集和同时测定环境水体中阿特拉津(ATZ)及其主要降解产物去乙基拉特嗪(DEA)和去异丙基拉特嗪(DIA)的方法。对萃取溶剂种类和用量、样品搅拌速率、样品溶液pH、萃取温度、萃取时间、盐析效果等影响萃取工艺的主要因素进行了优化。该方法在0.5 ~ 150 μg L-1的线性范围内,ATZ的检出限为0.01,DIA和DEA的检出限均为0.05,检测系数均优于0.998。在最佳条件下,该方法可用于实际水样的分析,加标回收率为65.6% ~ 96.3%,相对标准偏差小于5%。结果表明,该方法具有可靠的精密度、线性度和灵敏度,对环境水体中目标化合物的分析是非常有效的。因此,所建立的SDME联用HPLC-DAD法是一种简单、廉价、环保的样品前处理技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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