Gel polymer electrolyte-based dual screen-printed electrodes for the headspace quantification of 4-ethylphenol and ethanethiol simultaneously in wines

Author:

Portugal-Gómez PaulaORCID,Domínguez-Renedo OlgaORCID,Alonso-Lomillo M. AsunciónORCID

Abstract

AbstractThe identification and correction of negative factors, such as 4-ethylphenol and ethanethiol, is important to comply with food safety regulations and avoid economic losses to wineries. A simple amperometric measurement procedure that facilitates the simultaneous quantification of both compounds in the gas phase has been developed using fullerene and cobalt (II) phthalocyanine-modified dual screen-printed electrodes coated with a room temperature ionic liquid-based gel polymer electrolyte. The replacement of the typical aqueous supporting electrolyte by low-volatility ones improves both operational and storage lifetime. Under the optimum conditions of the experimental variables, Britton Robinson buffer pH 5 and applied potentials of + 0.86 V and + 0.40 V for each working electrode (vs. Ag ref. electrode), reproducibility values of 7.6% (n = 3) for 4-ethylphenol and 6.6% (n = 3) for ethanethiol were obtained, as well as capability of detection values of 23.8 μg/L and decision limits of 1.3 μg/L and 9.2 μg/L (α = β = 0.05), respectively. These dual electrochemical devices have successfully been applied to the headspace detection of both compounds in white and red wines, showing their potential to be routinely used for rapid analysis control in wineries. Graphical Abstract

Funder

Agencia Estatal de Investigación

Universidad de Burgos

Publisher

Springer Science and Business Media LLC

Reference38 articles.

1. Jackson RS (2020) Wine science: principles and spplications, 5th edn. Elsevier Science, Burlington

2. Ribéreau-Gayon P, Glories Y, Maujean A, Dubourdieu D (2000) The chemistry of wine stabilization and treatments. In: Handbook of enology. 205–230

3. Eder Reinhard (2006) Defectos del vino: reconocimiento, prevención, corrección. Editorial Acribia

4. Morata A, Vejarano R, Ridolfi G et al (2013) Reduction of 4-ethylphenol production in red wines using HCDC+ yeasts and cinnamyl esterases. Enzyme Microb Technol 52:99–104. https://doi.org/10.1016/j.enzmictec.2012.11.001

5. Boulton RB, Singleton VL, Bisson LF et al (2002) Teoría y práctica de la elaboración del vino. In: Acribia DL. Zaragoza

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