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An Investigation into Spent Coffee Waste as a Renewable Source of Bioactive Compounds and Industrially Important Sugars

机译:废咖啡废料作为生物活性化合物和工业上重要的糖的可再生来源的调查

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摘要

Conventional coffee brewing techniques generate vast quantities of spent espresso grounds (SEGs) rich in lignocellulose and valuable bioactives. These bioactive compounds can be exploited as a nutraceutical or used in a range of food products, while breakdown of lignocellulose generates metabolizable sugars that can be used for the production of various high-value products such as biofuels, amino acids and enzymes. Response surface methodology (RSM) was used to optimize the enzymatic saccharification of lignocellulose in SEGs following a hydrothermal pretreatment. A maximum reducing sugar yield was obtained at the following optimized hydrolysis conditions: 4.97 g of pretreated SEGs, 120 h reaction time, and 1246 and 250 µL of cellulase and hemicellulase, respectively. Industrially important sugars (glucose, galactose and mannose) were identified as the principal hydrolysis products under the studied conditions. Total flavonoids (p = 0.0002), total polyphenols (p = 0.03) and DPPH free-radical scavenging activity (p = 0.004) increased significantly after processing. A 14-fold increase in caffeine levels was also observed. This study provides insight into SEGs as a promising source of industrially important sugars and polyphenols.
机译:传统的咖啡冲泡技术会产生大量的富含木质纤维素和有价值的生物活性物质的废弃咖啡渣(SEG)。这些生物活性化合物可以用作营养食品或用于多种食品中,而木质纤维素的分解会产生可代谢的糖,这些糖可用于生产各种高价值的产品,例如生物燃料,氨基酸和酶。响应表面方法(RSM)用于优化水热预处理后SEG中木质纤维素的酶促糖化作用。在以下优化的水解条件下可获得最大的还原糖产量:4.97 g的预处理SEG,120 h反应时间以及分别为1246和250 µL的纤维素酶和半纤维素酶。在研究条件下,工业上重要的糖(葡萄糖,半乳糖和甘露糖)被确定为主要的水解产物。加工后总黄酮(p = 0.0002),总多酚(p = 0.03)和DPPH自由基清除活性(p = 0.004)显着增加。还观察到咖啡因水平增加了14倍。这项研究提供了对SEGs的见识,SEGs是工业上重要的糖和多酚的有希望的来源。

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