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The Antioxidant and Safety Properties of Spent Coffee Ground Extracts Impacted by the Combined Hot Pressurized Liquid Extraction–Resin Purification Process

机译:混合热压液体萃取-树脂纯化工艺对废咖啡渣提取物的抗氧化和安全性的影响

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摘要

Hot pressurized liquid extraction has been used to obtain polyphenols; however, its operating conditions can generate hydroxymethylfurfural, a potential human carcinogen. The addition of ethanol can reduce process temperatures and retain extraction efficiencies, but the ethanol may reduce the recovery of polyphenols in the subsequent purification stage, affecting the antioxidant properties of the extracts. This study evaluates a combined hot pressurized liquid extraction—resin purification process to obtain polyphenol extracts from spent ground coffee reduced in hydroxymethylfurfural. A multifactorial design was developed to determine the combined effect of the extraction (ethanol content: 0–16% and temperature: 60–90 °C) and purification (ethanol: 60–80%) conditions on some chemical properties of the extracts. The highest recovery of polyphenols (~8 mg GAE/g dry coffee solids) and reduction of hydroxymethylfurfural (95%) were obtained at 90 °C and 16% of ethanol during extraction and 80% of ethanol during purification. These operating conditions retained the antioxidant capacity of the crude extract between 60% and 88% depending on the determination method and recovered 90, 98, and 100% of 4-feruloylquinic acid, epicatechin, and 5-feruloylquinic acid, respectively after purification. The combined process allows differential polyphenols’ recovery and enhances the safety of the extracts. Our computational chemistry results ruled out that the overall selectivity of the integrated process was correlated with the size of the polyphenols.
机译:热加压液体萃取已被用于获得多酚。但是,其操作条件会产生羟甲基糠醛,一种潜在的人类致癌物。乙醇的添加可以降低工艺温度并保持萃取效率,但是乙醇可能会降低后续纯化阶段中多酚的回收率,从而影响萃取物的抗氧化性能。这项研究评估了组合的热加压液体萃取-树脂纯化工艺,以从在羟甲基糠醛中还原的废磨咖啡中获得多酚提取物。已开发出一种多因素设计,以确定萃取条件(乙醇含量:0–16%和温度:60–90°C)和提纯条件(乙醇:60–80%)对萃取物某些化学性质的综合影响。在90°C,萃取过程中乙醇含量为16%,在纯化过程中乙醇含量为80%的情况下,多酚的回收率最高(〜8 mg GAE / g干咖啡固体),羟甲基糠醛的还原率最高(95%)。这些操作条件取决于测定方法,使粗提取物的抗氧化能力保持在60%至88%之间,纯化后分别回收了90、98和100%的4-阿魏酰奎尼酸,表儿茶素和5-阿魏酰奎尼酸。合并的过程可以回收不同的多酚,并提高提取物的安全性。我们的计算化学结果表明,集成过程的总体选择性与多酚的大小相关。

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