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Ultrasound-assisted Supramolecular Microextraction of Copper in Water, Food, Hair, and Tobacco Samples Prior to Microsampling Flame Atomic Absorption Spectrometry

机译:在微内采样火焰原子吸收光谱法之前,在水,食品,毛发和烟草样品中进行超声辅助超分子微萃取铜

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摘要

An analytical microextraction procedure was developed and applied for Cu(II) microextraction from natural waters, red pepper, black pepper, thyme, hashish, hair, and tobacco samples. The microextraction process was based on the chelation of Cu(II) from aqueous solutions with 4-(2-thiazolylazo) resorcinol, which is then moved to the organic supramolecular phase by ultrasonic waves. The organic phase, consisting of tetrahydrofuran and 1-decanol, was isolated by centrifugation. The extracted and preconcentrated copper was determined by microsampling flame atomic absorption spectrometry. The microextraction conditions and the operating parameters were optimized using the pH of 6, 200 mu L of 0.1% of 4-(2-thiazoly-lazo) resorcinol, and ultrasonic enhancement for 5 to 8 minutes. The ultrasound-assisted supramolecular solvent liquid phase microextraction procedure resulted in a limit of detection (LOD) of 1.13 mu g L-1 and was applied for Cu(II) determination in samples with different matrices.
机译:开发了一种分析微萃取程序,并施加来自天然水域,红辣椒,黑胡椒,百里香,散发,毛发和烟草样品的Cu(II)微萃取。微萃取方法基于Cu(II)的Cu(II)与4-(2-噻唑酯)间苯甲醇水溶液的螯合,然后通过超声波移动到有机超分子相。通过离心分离由四氢呋喃和1-癸醇组成的有机相。通过微观采样火焰原子吸收光谱法测定提取的和前浓的铜。使用6,200μL的pH值为4-(2-噻唑-Lazo)间苯二酚的pH值和超声波增强5至8分钟优化微萃取条件和操作参数。超声辅助的超分子溶剂液相微萃取方法导致1.13μg1-1的检测限(LOD),并施用于不同基质的样品中的Cu(II)测定。

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