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Direct biodiesel production from wet spent coffee grounds

机译:从湿的废咖啡渣直接生产生物柴油

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Utilization of waste spent coffee grounds (SCG) remains limited and requires pre-treatment before being discarded to avoid pollution to the environment. Lipids contained in SCG could be converted to biodiesel through an in situ transesterification method. Current in situ transesterification of wet SCG biomass, conducted at high reaction temperature to reduce the water effect and reduce reaction time, is energy intensive. A new approach, which combines simultaneous extraction-transesterification in a single step using soxhlet apparatus, was developed to produce biodiesel directly from wet SCG biomass. A homogeneous base catalyst at a concentration of 0.75 M showed better catalytic activity than acid, with hexane as a co-solvent on fatty acid (FA) extraction efficiency and FA to fatty acid methyl ester (FAME) conversion efficiency. Studying the factorial effect of ratio of methanol to hexane and reaction time led to the highest FA to FAME conversion efficiency of 97% at a ratio of 1?:?2 and 30 min reaction time. In addition, the catalyst could be used five times without losing its activity. In term of energy consumption, the reactive extraction soxhlet (RES) method could save 38–99% of energy compared to existing methods.
机译:废咖啡渣的利用仍然受到限制,需要进行预处理才能丢弃,以免污染环境。 SCG中包含的脂质可以通过原位酯交换法转化为生物柴油。当前在高反应温度下进行的湿式SCG生物质的原位酯交换反应需要大量的水,以减少水的影响并缩短反应时间。开发了一种新方法,该方法结合了使用索氏萃取仪一步一步进行的同时萃取-酯交换的方法,可以直接从湿式SCG生物质生产生物柴油。浓度为0.75 M的均相碱性催化剂显示出比酸更好的催化活性,己烷作为助溶剂对脂肪酸(FA)的萃取效率和FA转化为脂肪酸甲酯(FAME)的效率。研究甲醇与己烷的比例和反应时间的阶乘效应,在1∶∶2的比例和30分钟的反应时间下,最高的FA转化为FAME的转化效率为97%。另外,催化剂可以使用五次而不会失去其活性。在能耗方面,反应萃取索氏萃取法(RES)与现有方法相比可节省38–99%的能源。

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