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Enzymatic production of biodiesel using lipases immobilized on silica nanoparticles as highly reusable biocatalysts: effect of water, t-butanol and blue silica gel contents

机译:使用固定在二氧化硅纳米颗粒上的脂肪酶作为高度可重复使用的生物催化剂,酶促生产生物柴油:水,叔丁醇和蓝色硅胶含量的影响

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The enzymatic production of biodiesel by methanolysis of canola oil was studied using self-made biocatalysts. Mesoporous SBA-15 nanoparticles were prepared, characterized and functionalized by 3-glycidyloxypropyl trimethoxysilane. Lipases from Candida antarctica (CALB), Thermomyces lanuginosus (TLL) and Rhizomucor miehei (RML) were covalently immobilized onto SBA-epoxy. Thermal stability and the influence of methanol concentration on the catalytic activity were also evaluated. Higher thermal stability and methanol tolerance for immobilized derivatives were achieved compared to the free enzyme. In an optimization study, the effect of water, t-butanol and blue silica gel as water adsorbent on the yield of FAME was considered. For the SBA-RML catalysed reaction, water had little effect in increasing FAME yield, but when 20 wt% water by substrate weight was added to the SBA-TLL catalysed reaction, the methyl ester content reached nearly complete conversion (98% FAME). t-Butanol had a great effect on yield, with almost complete conversion for SBA-RML and SBA-TLL. The effect of blue silica gel also was investigated. The immobilized TLL was quite stable and can be reused for 20 cycles without significant loss in activity (6%). RML and CALB also presented a good reusability, keeping 95% of their initial activities after 7 and 15 cycles of the reaction. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用自制的生物催化剂研究了芥花籽油甲醇分解酶法生产生物柴油的情况。制备了介孔SBA-15纳米粒子,并通过3-环氧丙氧基丙基三甲氧基硅烷对其进行了表征和功能化。将来自南极假丝酵母(CALB),羊毛嗜热霉菌(TLL)和米根根霉(RML)的脂肪酶共价固定在SBA-环氧树脂上。还评估了热稳定性和甲醇浓度对催化活性的影响。与游离酶相比,固定化衍生物具有更高的热稳定性和甲醇耐受性。在一项优化研究中,考虑了水,叔丁醇和蓝色硅胶作为水吸附剂对FAME收率的影响。对于SBA-RML催化的反应,水对提高FAME收率几乎没有影响,但是当将以底物重量计20 wt%的水添加到SBA-TLL催化的反应中时,甲酯含量几乎达到了完全转化(98%FAME)。叔丁醇对收率影响很大,几乎可以完全转化为SBA-RML和SBA-TLL。还研究了蓝色硅胶的效果。固定的TLL非常稳定,可以重复使用20个周期,而活性没有明显下降(6%)。 RML和CALB还具有良好的可重用性,在反应7和15个循环后,它们保留了95%的初始活性。 (C)2016 Elsevier Ltd.保留所有权利。

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