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Using switchable solvent as a solvent and catalyst for in situ transesterification of spent coffee grounds for biodiesel synthesis

机译:使用可切换溶剂作为原位酯交换的溶剂和催化剂,用于生物柴油合成

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摘要

This study developed a novel in situ transesterification process by combining the solvent and catalyst functions of 1,8-diazabicyclo[5.4.0]undec-7-ene (DBU) for biodiesel synthesis from spent coffee grounds (SCG). The influence of reaction parameters on the reaction was investigated. The maximum biodiesel yield of 96.13% was observed at DBU-to-SCG and methanol-to-SCG ratios of 20 and 10 mL/g, respectively; a reaction temperature of 130 degrees C; and a reaction time of 60 min. Notably, the polarity of DBU could be reversibly regulated, thus facilitating excellent product separation. Moreover, DBU could be effectively reused for 10 cycles to yield high biodiesel conversion. DBU-catalyzed in situ transesterification of SCG is a promising, ecofriendly, and economically viable biodiesel production process.
机译:本研究通过将1,8-diazabicyclo [5.4.0] UDEC-7-ENE(DBU)的溶剂和催化剂函数组合从废咖啡渣(SCG)中的生物柴油合成的溶剂和催化剂函数组合,开发了一种原位酯交换过程。 研究了反应参数对反应的影响。 在DBU-to-SCG和20mL / g的DBU-to-SCG和甲醇至SCG比下观察到96.13%的最大生物柴油产率; 反应温度为130℃; 和60分钟的反应时间。 值得注意的是,可以可逆地调节DBU的极性,从而促进了优异的产品分离。 此外,可以有效地重复使用DBU以获得10个循环以产生高生物柴油转换。 DBU-催化的SCG原位酯交换是一种有前途的,生态友好,经济上可行的生物柴油生产过程。

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