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首页> 外文期刊>Biofuel Research Journal >Lipase immobilized on polydopamine-coated magnetite nanoparticles for biodiesel production from soybean oil
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Lipase immobilized on polydopamine-coated magnetite nanoparticles for biodiesel production from soybean oil

机译:脂肪酶固定在聚多巴胺涂层磁铁矿纳米颗粒上,用于从大豆油生产生物柴油

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Lipase from Pseudomonas cepacia was covalently attached to magnetite nanoparticles coated with a thin polydopamine film, and employed in the enzymatic conversion of soybean oil into biodiesel, in the presence of methanol. The proposed strategy explored the direct immobilization of the enzyme via Michael addition and aldolic condensation reactions at the catechol rings, with no need of using specific coupling agents. In addition, a larger amount of enzymes could be bound to the magnetic nanoparticles, allowing their efficient recycling with the use of an external magnet. In the biodiesel conversion, the transesterification reaction was carried out directly in soybean oil by the stepwise addition of methanol, in order to circumvent its inactivation effect on the enzyme. A better yield was obtained in relation to the free enzyme, achieving 90% yield at 37 oC. However, the catalysis became gradually less effective after the third cycle, due to its prolonged exposition to the denaturating methanol medium.
机译:将洋葱假单胞菌的脂肪酶共价附着到覆盖有聚多巴胺薄膜的磁铁矿纳米颗粒上,并在甲醇存在下将大豆油酶促转化为生物柴油。提出的策略探索了通过迈克尔加成和邻苯二酚环上的醛基缩合反应将酶直接固定,而无需使用特定的偶联剂。另外,大量的酶可以结合到磁性纳米颗粒上,从而允许它们通过使用外部磁体而有效地再循环。在生物柴油转化中,通过逐步加入甲醇直接在大豆油中进行酯交换反应,以规避其对酶的灭活作用。相对于游离酶,获得了更好的收率,在37 oC下达到了90%的收率。然而,由于其长时间暴露于变性甲醇介质中,因此催化在第三次循环后逐渐变得无效。

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