Literature DB >> 19748097

Fast chromatographic method for the determination of dyes in beverages by using high performance liquid chromatography--diode array detection data and second order algorithms.

María J Culzoni1, Agustina V Schenone, Natalia E Llamas, Mariano Garrido, Maria S Di Nezio, Beatriz S Fernández Band, Héctor C Goicoechea.   

Abstract

A fast chromatographic methodology is presented for the analysis of three synthetic dyes in non-alcoholic beverages: amaranth (E123), sunset yellow FCF (E110) and tartrazine (E102). Seven soft drinks (purchased from a local supermarket) were homogenized, filtered and injected into the chromatographic system. Second order data were obtained by a rapid LC separation and DAD detection. A comparative study of the performance of two second order algorithms (MCR-ALS and U-PLS/RBL) applied to model the data, is presented. Interestingly, the data present time shift between different chromatograms and cannot be conveniently corrected to determine the above-mentioned dyes in beverage samples. This fact originates the lack of trilinearity that cannot be conveniently pre-processed and can hardly be modelled by using U-PLS/RBL algorithm. On the contrary, MCR-ALS has shown to be an excellent tool for modelling this kind of data allowing to reach acceptable figures of merit. Recovery values ranged between 97% and 105% when analyzing artificial and real samples were indicative of the good performance of the method. In contrast with the complete separation, which consumes 10 mL of methanol and 3 mL of 0.08 mol L(-1) ammonium acetate, the proposed fast chromatography method requires only 0.46 mL of methanol and 1.54 mL of 0.08 mol L(-1) ammonium acetate. Consequently, analysis time could be reduced up to 14.2% of the necessary time to perform the complete separation allowing saving both solvents and time, which are related to a reduction of both the costs per analysis and environmental impact.

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Year:  2009        PMID: 19748097     DOI: 10.1016/j.chroma.2009.08.077

Source DB:  PubMed          Journal:  J Chromatogr A        ISSN: 0021-9673            Impact factor:   4.759


  2 in total

1.  Sensitive Electrochemical Sensor Based On an Aminated MIL-101(Cr) MOF for the Detection of Tartrazine.

Authors:  Raïssa Tagueu Massah; Sherman Lesly Zambou Jiokeng; Jun Liang; Evangeline Njanja; Tobie Matemb Ma Ntep; Alex Spiess; Lars Rademacher; Christoph Janiak; Ignas Kenfack Tonle
Journal:  ACS Omega       Date:  2022-06-01

2.  Voltammetric sensor for tartrazine determination in soft drinks using poly (p-aminobenzenesulfonic acid)/zinc oxide nanoparticles in carbon paste electrode.

Authors:  Ghasem Karim-Nezhad; Zeynab Khorablou; Maryam Zamani; Parisa Seyed Dorraji; Mahdieh Alamgholiloo
Journal:  J Food Drug Anal       Date:  2016-11-08       Impact factor: 6.157

  2 in total

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