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磁助离子液体分散液液微萃取-电感耦合等离子体质谱法测定食品和饮料中硒的形态

Magnetic effervescent tablet-assisted ionic liquid dispersive liquid-liquid microextraction of selenium for speciation in foods and beverages.

机构信息

a College of Civil Engineering and Architecture , Zhejiang University of Water Resources and Electric Power , Hangzhou , China.

出版信息

Food Addit Contam Part A Chem Anal Control Expo Risk Assess. 2016 Jul;33(7):1190-9. doi: 10.1080/19440049.2016.1189807. Epub 2016 Jun 3.

Abstract

A novel, simple and rapid method based on magnetic effervescent tablet-assisted ionic liquid dispersive liquid-liquid microextraction (MEA-IL-DLLME) followed by graphite furnace atomic absorption spectrometry (GFAAS) determination was established for the speciation of selenium in various food and beverage samples. In the procedure, a special magnetic effervescent tablet containing CO2 sources (sodium carbonate and sodium dihydrogenphosphate), ionic liquids and Fe3O4 magnetic nanoparticles (MNPs) was used to combine extractant dispersion and magnetic recovery procedures into a single step. The parameters influencing the microextraction efficiency, such as pH of the sample solution, volume of ionic liquid, amount of MNPs, concentration of the chelating agent, salt effect and matrix effect were investigated and optimised. Under the optimised conditions, the limits of detection (LODs) for Se(IV) were 0.021 μg l(-)(1) and the linear dynamic range was 0.05-5.0 μg l(-)(1). The relative standard deviation for seven replicate measurements of 1.0 μg l(-)(1) of Se(IV) was 2.9%. The accuracy of the developed method was evaluated by analysis of the standard reference materials (GBW10016 tea, GBW10017 milk powder, GBW10043 Liaoning rice, GBW10046 Henan wheat, GBW10048 celery). The proposed method was successfully applied to food and beverage samples including black tea, milk powder, mushroom, soybean, bamboo shoots, energy drink, bottled water, carbonated drink and mineral water for the speciation of Se(IV) and Se(VI) with satisfactory relative recoveries (92.0-108.1%).

摘要

一种基于磁膨化片剂辅助离子液体分散液液微萃取(MEA-IL-DLLME)结合石墨炉原子吸收光谱(GFAAS)测定的新型、简单、快速的方法被建立起来,用于各种食品和饮料样品中硒的形态分析。在该方法中,使用了一种特殊的包含 CO2 源(碳酸钠和磷酸二氢钠)、离子液体和 Fe3O4 磁性纳米粒子(MNPs)的磁膨化片剂,将萃取剂分散和磁性回收步骤结合到一个步骤中。研究并优化了影响微萃取效率的参数,如样品溶液的 pH 值、离子液体的体积、MNPs 的用量、螯合剂的浓度、盐效应和基质效应等。在优化条件下,Se(IV)的检出限(LOD)为 0.021μg l-1,线性动态范围为 0.05-5.0μg l-1。1.0μg l-1 Se(IV)的 7 次重复测量的相对标准偏差为 2.9%。通过对标准参考物质(GBW10016 茶、GBW10017 奶粉、GBW10043 辽宁大米、GBW10046 河南小麦、GBW10048 芹菜)的分析,评估了该方法的准确性。该方法成功应用于包括红茶、奶粉、蘑菇、大豆、竹笋、能量饮料、瓶装水、碳酸饮料和矿泉水在内的食品和饮料样品中,用于 Se(IV)和 Se(VI)的形态分析,相对回收率令人满意(92.0-108.1%)。

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