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Integrated microsystems for lipase-catalyzed biodiesel production and glycerol removal by extraction or ultrafiltration

机译:用于脂肪酶催化的生物柴油生产和通过提取或超滤除去甘油除去的集成微系统

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摘要

Competition among renewable energy sources in today's market is growing rapidly. Renewables have grown to the point where they are taking significant material market share from coal, gas, and uranium. Recently, biodiesel production has been intensified by lipase-catalyzed transesterification performed in microsystems. Another challenge in biodiesel production is the purification of the biodiesel. Common purification methods are usually more energy and time consuming than the biodiesel production itself. In this work, an integrated biodiesel production process composed of lipase-catalyzed trans-esterification of sunflower oil and product purification was performed in microreactor and micro-separator units connected in series. Glycerol, the by-product of the transesterification process, was removed from the reaction mixture by two different separation methods, deep eutectic solvent extrac-tion and membrane separation. Different integrated setups were developed and evaluated in terms of FAME yield and purity. The most promising integrated process was found to be the one combining 2-inlets feeding strategy for biodiesel production in a microreactor with a microseparator connected in series, in which a choline chloride-glycerol deep eutectic solvent was used. In this integrated system, a FAME yield of 94% and a glycerol content below 0.02% (w/w) were achieved for the residence time of 20 min. (c) 2021 Elsevier Ltd. All rights reserved.
机译:可再生能源在当今市场中的竞争迅速增长。可再生能够发展到他们从煤炭,天然气和铀的大量物质市场份额中占据了重要性。最近,通过在微系统中进行的脂肪酶催化的酯交换来加强生物柴油生产。生物柴油生产中的另一个挑战是生物柴油的纯化。常见的净化方法通常比生物柴油生产本身更具能量和耗时。在这项工作中,在串联连接的微反应器和微分离器单元中进行由脂肪酶催化的脂肪酶催化反式酯化组成的脂肪酶催化的反式酯化组成的综合生物柴油生产过程。甘油,酯交换过程的副产物通过两种不同的分离方法从反应混合物中除去,深过共晶溶剂额外和膜分离。在名称产量和纯度方面开发和评估了不同的集成设置。发现最有前景的综合过程是在微反应器中与串联连接的微型反应器中生物柴油产生的2个入口喂养策略,其中使用胆碱 - 甘油深对共晶溶剂。在该集成系统中,对于20分钟的停留时间,实现了94%的名称产率和甘油含量低于0.02%(w / w)。 (c)2021 elestvier有限公司保留所有权利。

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