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首页> 外文期刊>Journal of molecular catalysis, B. Enzymatic >Enzymatic hydrolysis of biomass with recyclable use of cellobiase enzyme immobilized in sol-gel routed mesoporous silica
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Enzymatic hydrolysis of biomass with recyclable use of cellobiase enzyme immobilized in sol-gel routed mesoporous silica

机译:可循环利用固定在溶胶凝胶中介孔二氧化硅中的纤维二糖酶可循环利用的生物质酶解

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摘要

In this work, a new immobilized cellobiase enzyme system was used in the enzymatic hydrolysis of biomass for the generation of cellulosic ethanol. The application of the immobilized cellobiase enzyme enabled easy post-hydrolysis separation of the enzyme from the reaction mixture. The cellobiase enzyme was immobilized in porous solid silica host material via acid catalyzed non-surfactant templated sol-gel reaction of tetraethyl orthosilicate (TEOS). The pore size and porosity of the host material were controlled by varying the template (D-fructose) content. The immobilized cellobiase enzyme samples when used in the hydrolysis of pre-treated biomass yielded hydrolysis efficiency up to 74% (with FeCl3 pre-treated biomass) and 81% (with oxalic acid pre-treated biomass) when compared to hydrolysis with free cellobiase enzyme. The solid immobilized enzyme samples could be easily recycled from the reaction mixture after the hydrolysis reaction. When re-used in multiple batches, the immobilized samples retained their enzymatic activity in biomass hydrolysis. The re-usability of the immobilized cellobiase with retained activity would actively bring down the enzyme cost. Thus, our immobilized cellobiase enzyme opens up great potential in the enzymatic hydrolysis of biomass for generating cellulosic ethanol, as it leads to overall process cost reduction.
机译:在这项工作中,一种新的固定化纤维二糖酶系统被用于生物质的酶促水解,以产生纤维素乙醇。固定化纤维二糖酶的应用使得酶易于从反应混合物中水解后分离。纤维二糖酶通过原硅酸四乙酯(TEOS)的酸催化非表面活性剂模板化溶胶-凝胶反应固定在多孔固体二氧化硅基质材料中。通过改变模板(D-果糖)含量来控制主体材料的孔径和孔隙率。当与游离纤维二糖酶水解相比,固定化纤维二糖酶样品用于预处理的生物质水解时,水解效率分别高达74%(含FeCl3预处理生物质)和81%(草酸预处理生物质)。 。水解反应后,固体固定化酶样品可以很容易地从反应混合物中回收。当以多批次重复使用时,固定的样品在生物质水解中保留了其酶活性。具有保留活性的固定化纤维二糖酶的可重复使用性将积极降低酶的成本。因此,我们固定化的纤维二糖酶在生物质的酶促水解方面产生了巨大的潜力,可用于生产纤维素乙醇,因为它可以降低总体工艺成本。

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