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Complete utilization of wet spent coffee grounds waste as a novel feedstock for antioxidant, biodiesel, and bio-char production

机译:完全利用湿废咖啡渣废物作为抗氧化剂,生物柴油和生物炭生产的新型原料

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摘要

Due to the limitation of resource, non-edible feedstock has been gaining more attraction as the future feedstock for bio-based industries. Spent coffee grounds (SCGs) are the waste from coffee process which contained various high value products. The purpose of this study is to investigate the possibility of utilizing wet SCGs completely through three processes, antioxidant extraction, biodiesel production, and bio-char production. A semi-continuous process, with four extraction column reactors and peristaltic pumps, was used for extracting antioxidants from wet SCGs with methanol as solvent. Subsequently, potassium methoxide was fed into the reactors containing SCGs residue remaining after antioxidant extraction to produce biodiesel via in-situ transesterification. The defatted SCGs obtained after biodiesel production was further transformed to bio-char via slow pyrolysis. Antioxidant compounds with phenolic content of 10.3 mg gallic acid equivalents/g dried SCGs and antioxidant activity of 48.8 mg butylated hydroxyanisole equivalents/g dried SCGs could be extracted. Moreover, free fatty acid and moisture contents were reduced to levels suitable for in-situ transesterification. A biodiesel yield of 131.1 mg biodiesel/g dried SCGs was achieved, which was exceeded the maximum yield based on calculation. The bio-char produced from defatted SCGs had a heating value of 26.0 kJ/g and was smokeless, which satisfies the Thai community product standard (Per 238/2547). According to inventory analysis, the heat energy from bio-char product was far sufficient to support the whole processes.
机译:由于资源的限制,不可食用的原料一直在获得更多的生物工业原料的吸引力。花咖啡渣(SCG)是咖啡过程的废物,其包含各种高价值产品。本研究的目的是探讨完全通过三种方法,抗氧化萃取,生物柴油生产和生物炭生产来利用湿SCG的可能性。具有四个提取柱反应器和蠕动泵的半连续方法用于从湿SCG用甲醇作为溶剂提取抗氧化剂。随后,将甲醇氧化钾送入含有SCG残余物的反应器中,其残留在抗氧化剂萃取后通过原位酯交换来产生生物柴油。在生物柴油生产后获得的缺陷SCG进一步通过缓慢热解转化为生物焦炭。抗氧化剂化合物为酚醛含量为10.3毫克,无磷酸等当量/ G干燥的SCG和48.8mg丁基化羟基氨基甲基异唑当量/ G干SCG的抗氧化剂活性。此外,将游离脂肪酸和水分含量降低至适合于原位酯交换的水平。实现了131.1mg生物柴油/ g干燥SCG的生物柴油产率,其基于计算超过最大产率。由脱脂SCG产生的生物炭具有26.0 kJ / g的加热值,无烟,满足泰国社区产品标准(每238/2547)。根据库存分析,生物焦炭产品的热能远足以支持整个过程。

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