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用于葡萄酒中甘油定量分析的带多通道光谱仪传感器的便携式光学装置的研制:一种用于现场分析的制造方法

Development of a portable optical device with a multi-channel spectrometer sensor for quantification of glycerol in wine: a maker approach for on-site analysis.

作者信息

Cadeado Alegre N S, Silva Sidnei G

机构信息

Federal University of Uberlândia, Institute of Chemistry, 2121 João Naves de Ávila Avenue, Santa Mônica, Uberlândia, MG 38400-902, Brazil.

Department of Science and Technology, Licungo University, Quelimane, Mozambique.

出版信息

Anal Methods. 2023 Sep 14;15(35):4477-4484. doi: 10.1039/d3ay00972f.

DOI:10.1039/d3ay00972f
PMID:37575079
Abstract

In this work we present a novel and environmentally friendly approach for quantifying glycerol in wine samples using a portable optical device based on the maker concept and do-it-yourself (DIY) principles. This method offers significant advantages, including cost-effectiveness, reduced sample and reagent consumption, and the potential for integrating IoT (Internet of Things) technology. The chemical strategy involves the oxidation of glycerol using periodate, followed by the formation of the 3,5-diacetyl-1,4-dihydrolutidine (DDL) compound through a reaction with acetylacetone. The utilization of a cost-effective AS7341 color sensor as a detector enables accurate and sensitive detection of glycerol levels in wine samples. The optimized procedure demonstrates adequate analytical performance for glycerol determination in wine samples, encompassing a wide linear range (0.5 mg L to 40.0 mg L), high correlation coefficient ( = 0.998), and low limits of detection (0.050 mg L). The method exhibits excellent precision, with the coefficient of variation estimated to be 0.1% for 10 independent measurements of a 20 mg L solution. These features render it suitable not only for routine glycerol analysis in the wine industry, but also for addressing challenges related to wine adulteration and counterfeiting.

摘要

在这项工作中,我们提出了一种新颖且环保的方法,用于使用基于制造商概念和 DIY(自己动手做)原则的便携式光学设备对葡萄酒样品中的甘油进行定量分析。该方法具有显著优势,包括成本效益高、样品和试剂消耗减少以及集成物联网(IoT)技术的潜力。化学策略包括使用高碘酸盐氧化甘油,然后通过与乙酰丙酮反应形成 3,5 - 二乙酰 - 1,4 - 二氢卢剔啶(DDL)化合物。使用具有成本效益的 AS7341 颜色传感器作为检测器能够准确且灵敏地检测葡萄酒样品中的甘油水平。优化后的程序在葡萄酒样品中甘油测定方面表现出足够的分析性能,涵盖宽线性范围(0.5 mg/L 至 40.0 mg/L)、高相关系数( = 0.998)以及低检测限(0.050 mg/L)。该方法具有出色的精密度,对于 20 mg/L 溶液进行 10 次独立测量,估计变异系数为 0.1%。这些特性使其不仅适用于葡萄酒行业中甘油的常规分析,还适用于应对与葡萄酒掺假和假冒相关的挑战。

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