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Talanta ; 206: 120209, 2020 Jan 01.
Artículo en Inglés | MEDLINE | ID: mdl-31514865

RESUMEN

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-1. 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.


Asunto(s)
Cromo/análisis , Contaminación de Alimentos/análisis , 1-Octanol/química , Bebidas Gaseosas/análisis , Agua Potable/análisis , Formiatos/química , Jugos de Frutas y Vegetales/análisis , Límite de Detección , Microextracción en Fase Líquida/instrumentación , Microextracción en Fase Líquida/métodos , Malus/química , Prunus avium/química , Compuestos de Amonio Cuaternario/química , Solventes/química , Espectrofotometría Ultravioleta , Jeringas
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