首页> 外文期刊>Analytica chimica acta >Development of a robust ionic liquid-based dispersive liquid-liquid microextraction against high concentration of salt for preconcentration of trace metals in saline aqueous samples: Application to the determination of Pb and Cd
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Development of a robust ionic liquid-based dispersive liquid-liquid microextraction against high concentration of salt for preconcentration of trace metals in saline aqueous samples: Application to the determination of Pb and Cd

机译:鲁棒的基于离子液体的分散型液-液微萃取技术,针对高浓度盐分用于盐水溶液样品中痕量金属的预浓缩:在测定铅和镉中的应用

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摘要

A new ionic liquid-based dispersive liquid-liquid microextraction method was developed for preconcentration and determination of compounds in aqueous samples containing very high salt concentrations. This method can solve the problems associated with the limited application of the conventional IL-based DLLME in these samples. This is believed to arise from dissolving of the ionic liquids in aqueous samples with high salt content. In this method, the robustness of microextraction system against high salt concentration (up to 40%, w/v) is increased by introducing a common ion of the ionic liquid into the sample solution. The proposed method was applied satisfactorily to the preconcentration of lead and cadmium in saline samples. After preconcentration, the settled IL-phase was dissolved in 100 μL ethanol and aspirated into the flame atomic absorption spectrometer (FAAS) using a home-made microsample introduction system. Several variables affecting the microextraction efficiency were investigated and optimized. Under the optimized conditions and preconcentration of only 10 mL of sample, the enhancement factors of 273 and 311 and the detection limits of 0.6 μg L~(-1) and 0.03 μg L~(-1) were obtained for lead and cadmium, respectively. Validation of the method was performed by both an analysis of a certified reference material (CRM) and comparison of results with those obtained by ISO standard method.
机译:开发了一种新的基于离子液体的分散液-液微萃取方法,用于预浓缩和测定盐浓度很高的水性样品中的化合物。此方法可以解决与这些样本中常规基于IL的DLLME的有限应用相关的问题。据信这是由于离子液体溶解在盐含量高的水性样品中引起的。在这种方法中,通过将离子液体的公共离子引入样品溶液中,可以提高微萃取系统对高盐浓度(高达40%,w / v)的稳定性。该方法令人满意地用于盐样中铅和镉的富集。预浓缩后,将沉淀的IL相溶于100μL乙醇中,并使用自制的微量样品引入系统吸到火焰原子吸收光谱仪(FAAS)中。研究和优化了影响微萃取效率的几个变量。在最佳条件下和仅对10 mL样品进行预浓缩时,铅和镉的增强因子分别为273和311,检出限分别为0.6μgL〜(-1)和0.03μgL〜(-1)。 。该方法的验证是通过对认证参考材料(CRM)进行分析并将结果与​​通过ISO标准方法获得的结果进行比较来进行的。

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