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采用深共晶溶剂从甜菜根()废料中提取和稳定甜菜红素。

Extraction and Stabilization of Betalains from Beetroot () Wastes Using Deep Eutectic Solvents.

机构信息

División de Estudios de Posgrado e Investigación, Instituto Tecnológico de Toluca, Tecnológico Nacional de México, Tecnológico S/N, Colonia Agrícola Bellavista, Metepec 52149, Mexico.

出版信息

Molecules. 2021 Oct 20;26(21):6342. doi: 10.3390/molecules26216342.

Abstract

Deep eutectic solvents (DES) using magnesium chloride hexahydrate [MgCl·6HO] and urea [U] proportions (1:1) and (2:1), were prepared for their use as extracting and stabilizer agents for red and violet betalains from beetroot () waste. The synthetized DES [MgCl·6HO] [U] showed similar properties to eutectic mixtures, such as, liquid phase, low melting points and conductivity, thermal stability, and variable viscosity. In turn, betalain DES extracts (2:1) exhibited compatibility in the extraction and recovery of betalains from beetroot wastes, showing a betalain content comparable to that of betalain extracts. Betalain stability was determined by degradation tests; the exposure conditions were visible light (12 h), molecular oxygen from atmospheric air and environmental temperature (20-27 °C) for 40 days. The kinetic curves of the betalain degradation of water samples depicted a first-order model, indicating the alteration of a violet colouration of betalains from beetroot waste for 5-7 days. However, betalains from DES extracts were kept under visible light for 150 days, and for 340 days in storage (amber vessels), achieving a stability of 75% in comparison with initial beet extracts.

摘要

深共晶溶剂 (DES) 使用六水合氯化镁 [MgCl·6HO] 和尿素 [U] 的比例 (1:1) 和 (2:1),被制备用于从甜菜根废物中提取和稳定红色和紫色甜菜碱。合成的 DES [MgCl·6HO] [U] 表现出与共晶混合物相似的性质,例如液相、低熔点和电导率、热稳定性和可变粘度。反过来,甜菜碱 DES 提取物 (2:1) 表现出从甜菜根废物中提取和回收甜菜碱的相容性,显示出与甜菜碱提取物相当的甜菜碱含量。通过降解试验确定了甜菜碱的稳定性;暴露条件为可见光 (12 小时)、大气中的分子氧和环境温度 (20-27°C) 持续 40 天。水样中甜菜碱降解的动力学曲线描绘了一级模型,表明甜菜根废物中的紫色甜菜碱颜色在 5-7 天内发生了变化。然而,DES 提取物中的甜菜碱在可见光下保存了 150 天,在储存 (琥珀色容器) 中保存了 340 天,与初始甜菜提取物相比,稳定性达到了 75%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36f8/8587432/2be0a3e458ad/molecules-26-06342-g001.jpg

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