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Optimization of microwave-assisted extraction of natural antioxidants from spent espresso coffee grounds by response surface methodology

机译:响应面法优化微波辅助从浓缩咖啡渣中提取天然抗氧化剂的方法

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摘要

Espresso spent coffee grounds (SCG) that is a waste material abundantly produced by restaurants, cafeterias and in domestic environment could be used as a low-cost and rich source of valuable polyphenol compounds. The benefit would be twofold: extraction of health beneficial natural polyphenol antioxidants and reducing the cost to facilitate SCG waste management. The overall objective of this study was to examine an optimal range of extraction conditions for extraction of antioxidants from spent espresso coffee. Optimization of the extraction process from SCG was carried out using response surface methodology (RSM). Microwave-assisted extraction (MAE) has been used as a potential alternative to conventional solvent extraction for the isolation of polyphenol compounds from SCG. A complete central composite 2~3 factorial experimental design has been used to monitor the extraction characteristics, as affected by different variables, extraction time (ET), liquid-to-solid ratio (LSR), and microwave power (MWP). Low concentration ethanol in aqueous solutions was employed as non-toxic extracting media. With the reduced time of extraction, low power and medium liquid to solid ratio while using minimal concentration of ethanol, the polyphenols extract with high antioxidant activity can be achieved. The obtained experimental values were in solid agreement with predicted values. The FRAP and the DPPH antioxidative activity showed good correlation with the total polyphenol content (TPC), with high correlation factors. The presented data could be a reliable guidelines for establishing full-scale, sustainable cost-effective and resource-effective industrial process.
机译:浓咖啡用废咖啡渣(SCG)是餐馆,自助餐厅和家庭环境中大量产生的一种废料,可以用作低成本和丰富的有价值的多酚化合物来源。好处是双重的:提取有益健康的天然多酚抗氧化剂,并降低成本以促进SCG废物管理。这项研究的总体目标是检查从浓缩意式浓缩咖啡中提取抗氧化剂的最佳提取条件范围。使用响应面法(RSM)对SCG提取工艺进行了优化。微波辅助萃取(MAE)已被用作传统溶剂萃取的潜在替代方法,用于从SCG中分离多酚化合物。完整的中央复合材料2〜3阶乘实验设计已用于监测提取特性,该特性受不同变量,提取时间(ET),液固比(LSR)和微波功率(MWP)的影响。水溶液中的低浓度乙醇用作无毒提取介质。由于减少了萃取时间,降低了功率并降低了液固比,同时使用了最低浓度的乙醇,因此可以实现具有高抗氧化活性的多酚萃取物。获得的实验值与预测值完全一致。 FRAP和DPPH的抗氧化活性与总多酚含量(TPC)表现出良好的相关性,且相关因子较高。所提供的数据可能是建立全面,可持续,具有成本效益和资源效益的工业流程的可靠指南。

著录项

  • 来源
    《Journal of Cleaner Production》 |2014年第1期|69-79|共11页
  • 作者单位

    Institute for Medical Research, Centre of Research Excellence in Nutrition and Metabolism, University of Belgrade, Tadeusa Koscuska 1, PAK 104 201,11158 Belgrade, Serbia;

    Institute for Medical Research, Centre of Research Excellence in Nutrition and Metabolism, University of Belgrade, Tadeusa Koscuska 1, PAK 104 201,11158 Belgrade, Serbia;

    Faculty of Technology and Metallurgy, Division: Biochemical Engineering and Biotechnology, University of Belgrade, Karnegijeva 4,11120 Belgrade, Serbia;

    Faculty of Technology and Metallurgy, Division: Biochemical Engineering and Biotechnology, University of Belgrade, Karnegijeva 4,11120 Belgrade, Serbia;

    Faculty of Technology and Metallurgy, Division: Biochemical Engineering and Biotechnology, University of Belgrade, Karnegijeva 4,11120 Belgrade, Serbia;

    Faculty of Technology and Metallurgy, Division: Biochemical Engineering and Biotechnology, University of Belgrade, Karnegijeva 4,11120 Belgrade, Serbia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Spent espresso coffee; Microwave-assisted extraction; Response surface methodology; Total polyphenol content; DPPH; FRAP;

    机译:用过的浓缩咖啡;微波辅助萃取;响应面方法;总多酚含量;DPPH;FRAP;

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