首页> 外文期刊>Analytica chimica acta >Development of a simple combining apparatus to perform a magnetic stirring-assisted dispersive liquid-liquid microextraction and its application for the analysis of carbamate and organophosphorus pesticides in tea drinks
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Development of a simple combining apparatus to perform a magnetic stirring-assisted dispersive liquid-liquid microextraction and its application for the analysis of carbamate and organophosphorus pesticides in tea drinks

机译:进行磁力搅拌辅助分散液-液微萃取的简单组合装置的开发及其在茶饮料中氨基甲酸酯和有机磷农药分析中的应用

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This study introduced a simple combining apparatus for performing a magnetic stirring-assisted dispersive liquid-liquid microextraction (MSA-DLLME) for the detection of trace carbamate and organophosphorus pesticides in tea drinks coupled with high performance liquid chromatography. The simple combining apparatus was made up of a sample vial and a cut plastic dropper. The bulb end of the cut plastic dropper was inserted into the neck of the sample vial and the open tip end of the plastic dropper was then cut to an appropriate length. The combining apparatus made was then used to perform the MSA-DLLME. In this experiment, 1-octanol was injected into the tea drink sample solution and the extraction process accelerated by magnetic agitation. The sample solution turned dear and separated into two layers after leaving it alone for several minutes. The cut plastic dropper was gently put down into the sample vial, and then the liquid level of the sample solution elevated up to the tip of the plastic dropper for the collection of low-density extractant. Finally, the collected extractant was drawn out by a microsyringe and injected into the high performance liquid chromatography-diode-array detector for analysis. A series of extraction parameters were investigated and optimized. Under the most favorable conditions, high enrichment factors were obtained for carbofuran, carbaryl and isocarbophos (between 130 and 185). The limits of detection (S/N = 3) were in the range of 0.13-0.61 μgL~(-1) and the relative standard deviation varied below 7.8% (n=5). Additionally, good recoveries were obtained between 79.4% and 114.4% in the three tea drinks. The simple combining apparatus utilized in this MSA-DLLME method was shown to be economical, fast, and convenient for the collection of low density extractant.
机译:这项研究介绍了一种简单的组合设备,用于执行电磁搅拌辅助的分散液-液微萃取(MSA-DLLME),用于结合高效液相色谱法检测茶饮料中的痕量氨基甲酸酯和有机磷农药。简单的组合设备由样品瓶和切好的塑料滴管组成。将切好的塑料滴管的球根端插入样品瓶的颈部,然后将塑料滴管的开口尖端切成合适的长度。制成的合并装置然后用于执行MSA-DLLME。在该实验中,将1-辛醇注入茶饮料样品溶液中,并通过磁力搅拌加速提取过程。样品溶液静置几分钟后变成昂贵的并分成两层。将切好的塑料滴管轻轻放到样品瓶中,然后将样品溶液的液位升高到塑料滴管的尖端,以收集低密度萃取剂。最后,将收集的萃取剂通过微注射器抽出,注入高效液相色谱-二极管阵列检测器进行分析。研究和优化了一系列提取参数。在最有利的条件下,获得了呋喃呋喃,西维因和异卡波菲的高富集因子(介于130和185之间)。检出限(S / N = 3)在0.13-0.61μgL〜(-1)范围内,相对标准偏差在7.8%以下(n = 5)。此外,三种茶饮料的回收率在79.4%至114.4%之间。该MSA-DLLME方法中使用的简单合并装置显示出经济,快速和方便的低密度萃取剂收集方法。

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