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首页> 外文期刊>Microchimica Acta >Supramolecular–based dispersive liquid–liquid microextraction: A novel sample preparation technique for determination of inorganic species
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Supramolecular–based dispersive liquid–liquid microextraction: A novel sample preparation technique for determination of inorganic species

机译:基于超分子的分散液-液微萃取:一种测定无机物的新型样品制备技术

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摘要

A new simple and sensitive method has been developed for the determination of trace levels of inorganic species in environmental water samples. It is based on the use of supramolecular–based dispersive liquid–liquid microextraction (SM–DLLME) prior to microsample introduction into FAAS. The ions are micro–extracted with coacervates composed of reverse micelles made from decanoic acid and dispersed in tetrahydrofuran–water mixtures. Cobalt ion was used as a model ion, and 1– (2–pyridylazo)–2–naphthol as the complexing agent. SM–DLLME results from a combination of DLLME with coacervation–based microextraction. It combines the advantages of DLLME with those of preconcentration based on coacervation and reverse micelles. Factors affecting the extraction efficiency of Co and its subsequent determination by FAAS were optimized. Under the optimized conditions and using 5.00 mL sample only, the enhancement factor is 58, the limit of detection is 4.2 μg L–1, and the relative standard deviations for 100 μg L–1 and 30 μg L–1 of Co are 2.1% and 3.8%, respectively (n = 6). The accuracy of the method was confirmed by parallel analyses using the ASTM reference method.
机译:已经开发出一种新的简单而灵敏的方法来测定环境水样品中的痕量无机物。它基于在将微量样品引入FAAS之前使用基于超分子的分散液-液微萃取(SM-DLLME)的方法。离子由凝聚层微萃取,凝聚层由癸酸制得的反胶束组成,并分散在四氢呋喃-水的混合物中。钴离子用作模型离子,1-(2-吡啶基偶氮)-2-萘酚作为络合剂。 SM–DLLME是DLLME与基于凝聚的微萃取相结合的结果。它结合了DLLME的优点和基于凝聚和反胶束的预浓缩的优点。优化了影响钴提取效率的因素,并通过火焰原子吸收光谱法对其进行了后续测定。在优化条件下,仅使用5.00 mL样品,增强因子为58,检出限为4.2μgL–1 ,相对标准偏差为100μgL–1 和30μg Co的L–1 分别为2.1%和3.8%(n = 6)。该方法的准确性通过使用ASTM参考方法的平行分析得到确认。

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