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Validation and optimization of a liquid-phase microextraction method for trace analysis of BTEX in water samples

机译:液相微萃取法对水样中BTEX进行痕量分析的验证和优化

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Liquid-phase microextraction (LPME) based on solidification of a floating organic micro drop followed by gas chromatography (flame ionization detection) to pre-concentrate and determine benzene, toluene, ethylbenzene and xylenes (BTEX) in aqueous samples has been investigated. The effects of type and volume of extraction solvent, stirring rate, extraction time, temperature and ionic strength in LPME of BTEX were evaluated. The results confirm that the proposed procedure provides improved accuracy, linear range, limit of detection, limit of quantification and is very effective for analyzing the BTEX compounds in water samples. Under the optimized conditions, pre-concentration factor of 149-285 and extraction efficiency of 31-61% were obtained. Repeatability (1.59-5.83%, n = 6) and intermediate precision (2.05-7.14%, n = 15) are in an acceptable range. The relative recovery obtained for each analyte in different water samples is higher than 82.3% at three fortification levels with the relative standard deviation of less than 7.5%>.
机译:液相微萃取(LPME)基于漂浮的有机微滴固化,然后进行气相色谱(火焰离子化检测)以预浓缩并测定水性样品中的苯,甲苯,乙苯和二甲苯(BTEX)。评估了萃取溶剂的种类和体积,搅拌速率,萃取时间,温度和离子强度对BTEX LPME的影响。结果证实,所提出的方法提供了改进的准确性,线性范围,检测极限,定量极限,并且对于分析水样品中的BTEX化合物非常有效。在优化的条件下,预浓缩系数为149-285,萃取效率为31-61%。重复性(1.59-5.83%,n = 6)和中等精度(2.05-7.14%,n = 15)在可接受的范围内。在三种强化水平下,每种样品在不同水样中获得的相对回收率均高于82.3%,相对标准偏差小于7.5%。

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