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在注射器内分散液 - 液微萃取中使用深共晶溶剂作为分散剂:饮料中六价铬的测定。

In-syringe dispersive liquid-liquid microextraction using deep eutectic solvent as disperser: Determination of chromium (VI) in beverages.

机构信息

Department of Analytical Chemistry, Institute of Chemistry, Saint-Petersburg University, Saint Petersburg State University, SPbSU, SPbU, 7/9 Universitetskaya Nab., St. Petersburg, 199034, Russia.

Department of Analytical Chemistry, Institute of Chemistry, Saint-Petersburg University, Saint Petersburg State University, SPbSU, SPbU, 7/9 Universitetskaya Nab., St. Petersburg, 199034, Russia.

出版信息

Talanta. 2020 Jan 1;206:120209. doi: 10.1016/j.talanta.2019.120209. Epub 2019 Jul 31.

Abstract

A novel approach for dispersive liquid-liquid microextraction based on the use of deep eutectic solvent as a disperser was presented for the first time. The procedure was automated based on an in-syringe flow system coupled with UV-Vis detection and demonstrated by the determination of chromium (VI) in beverages. This analytical task was used as a proof-of-concept example. The automated extraction procedure involved the aspiration of aqueous sample into a syringe pump with homogeneous mixture of extraction solvent (1-oсtanol) and deep eutectic solvent (tetrabutylammonium bromide - formic acid) containing color-forming reagent (1,5-diphenylcarbazide). This led to decomposition of deep eutectic solvent in aqueous phase resulting in dispersion of extraction solvent, oxidation of 1,5-diphenylcarbazide to 1,5- diphenylcarbazone in the presence of chromium (VI), and formation of colored chromium (III) complex with 1,5-diphenylcarbazone and its fast extraction. In this case composition of deep eutectic solvent played a key role for analyte extraction. Tetrabutylammonium bromide promoted mass transfer between aqueous phase and the extraction solvent droplets as a salting out agent, bromide ion acted as an ion-pare agent for analyte complex extraction, formic acid provided required pH value for analyte complex formation. Under the optimal conditions the limit of detection, calculated from a blank test based on 3s, was 0.2 μg L. The automated dispersive liquid-liquid microextraction using deep eutectic solvent as disperser can be considered as an available, efficient, rapid and environmentally friendly sample pretreatment approach.

摘要

首次提出了一种基于深共晶溶剂作为分散剂的新型分散液液微萃取方法。该方法基于在线注射器流系统与紫外可见检测相结合进行自动化,并通过测定饮料中的六价铬进行了验证。这个分析任务被用作概念验证示例。自动化萃取程序包括将水样吸入带有萃取溶剂(1-辛醇)和深共晶溶剂(四丁基溴化铵-甲酸)的注射器泵中,其中含有显色试剂(1,5-二苯卡巴肼)。这导致深共晶溶剂在水相中的分解,从而导致萃取溶剂的分散,在六价铬存在下,1,5-二苯卡巴肼被氧化为 1,5-二苯卡巴腙,并与 1,5-二苯卡巴肼形成有色铬(III)配合物并快速萃取。在这种情况下,深共晶溶剂的组成对于分析物的萃取起着关键作用。四丁基溴化铵作为盐析剂促进水相和萃取溶剂液滴之间的传质,溴离子作为分析物配合物萃取的离子对试剂,甲酸提供了形成分析物配合物所需的 pH 值。在最佳条件下,根据空白试验计算得出的检出限为 0.2μg/L。使用深共晶溶剂作为分散剂的自动化分散液液微萃取可以被认为是一种可行、高效、快速且环保的样品预处理方法。

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