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首页> 外文期刊>Enzyme and Microbial Technology >Improvement of enzymatic biodiesel production by controlled substrate feeding using silica gel in solvent free system
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Improvement of enzymatic biodiesel production by controlled substrate feeding using silica gel in solvent free system

机译:通过在无溶剂体系中使用硅胶控制底物进料来改善酶促生物柴油的生产

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摘要

A silica gel-based substrate feeding system was developed to prevent methanol inhibiting the catalyst during enzymatic biodiesel synthesis. In the system, silica gel swelled upon methanol addition and subsequently released it in a controlled manner to prevent excess methanol affecting the enzyme. Biodiesel was synthesized by the enzymatic transesterification of canola oil with methanol. For this reaction, enzyme loading, methanol/oil molar ratio, silica gel dosage, glycerol content, and methanol feeding method were tested using commercial immobilized enzymes (Novozym 435 and Lipozyme RM IM from Novozymes). The results showed that conversion was highest with controlled substrate feeding rather than direct methanol addition, suggesting that the method developed here can easily prevent enzyme inhibition by limiting methanol concentration to an acceptable level.
机译:开发了一种基于硅胶的底物进料系统,以防止甲醇在酶促生物柴油合成过程中抑制催化剂。在该系统中,硅胶在加入甲醇后溶胀,随后以受控方式释放,以防止过量的甲醇影响酶。通过将菜籽油与甲醇进行酶促酯交换反应合成生物柴油。对于该反应,使用商业化固定化酶(Novozymes的Novozym 435和Lipozyme RM IM)测试了酶的负载量,甲醇/油的摩尔比,硅胶的用量,甘油的含量和甲醇的进料方法。结果表明,在受控的底物进料而不是直接添加甲醇的情况下,转化率最高,表明此处开发的方法可通过将甲醇浓度限制在可接受的水平来轻松防止酶抑制。

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