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Supramolecular-based dispersive liquid-liquid microextraction: A novel sample preparation technique utilizes coacervates and reverse micelles

机译:基于超分子的分散液-液微萃取:一种新颖的样品制备技术,利用凝聚层和反胶束

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摘要

The present study reports a novel sample enrichment method termed supramolecular-based dispersive liquid-liquid microextraction (SM-DLLME). The SM solvent selected was made up of reversed micelles of decanoic acid dispersed in tetrahydrofuran (THF)-water. THF plays double role, not only acts as a disperser solvent but also causes self-assembly of decanoic acid. The contaminant used as a model was Malachite Green (MG). It was a cationic dye and was preconcentrated without any derivatization or ion-pair formation reaction. In SM-DLLME, the most important advantages of DLLME technique and preconcentration strategy based on the coacervation and reverse micelles have come together. Moreover, in this method, disadvantages of DLLME such as extraction capability of only hydrophobic analytes and hiring toxic and hazardous organic solvents as the extraction solvent and disadvantages of coacervation-based extraction method such as tedious, labor-intensive and time-consuming stirring procedure have been avoided. Several variables affecting the microextraction efficiency were investigated and optimized. Under the optimized conditions and preconcentration of only 5.00 mL of sample, the enhancement factor was 52, limit of detection (LOD) was 4μg/L and relative standard deviations (RSDs) for 145 and 36μg/L of MG in textile industry wastewater were 1.8 and 3.2%, respectively (n=6).
机译:本研究报告了一种新型的样品富集方法,称为超分子基分散液-液微萃取(SM-DLLME)。所选的SM溶剂由分散在四氢呋喃(THF)-水中的癸酸反胶束组成。 THF起到双重作用,不仅充当分散剂的溶剂,还引起癸酸的自组装。用作模型的污染物是孔雀石绿(MG)。它是阳离子染料,无需任何衍生化或离子对形成反应即可进行预浓缩。在SM-DLLME中,DLLME技术和基于凝聚和反胶束的预浓缩策略的最重要优势已经融合在一起。此外,在该方法中,DLLME的缺点,例如仅疏水性分析物的提取能力以及使用有毒和有害的有机溶剂作为提取溶剂,以及基于凝聚的提取方法的缺点,例如乏味,费力且费时的搅拌程序被避免了。研究和优化了影响微萃取效率的几个变量。在优化条件下和仅富集5.00 mL样品的情况下,增强因子为52,检出限(LOD)为4μg/ L,纺织工业废水中MG和145和36μg/ L的相对标准偏差(RSD)为1.8和3.2%(n = 6)。

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