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Bioconversion of pretreated sugarcane bagasse using enzymatic and acid followed by enzymatic hydrolysis approaches for bioethanol production

机译:酶法和酸法对预处理的甘蔗渣进行生物转化,然后酶法水解以生产生物乙醇

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The present study was focused on effective utilization of sugarcane bagasse holocellulose for bioethanol production. Saccharification of sugarcane bagasse was performed by employing two strategies viz. direct enzymatic hydrolysis and acid followed by enzymatic hydrolysis. In first case enzymatic saccharification of ammonia treated sugarcane bagasse was carried out using in house developed cocktail of cellulaseshemicellulases and maximum 614 mg/g reducing sugars were produced. By using second strategy, selective fractionation of hemicellulosic sugars was obtained by dilute acid hydrolysis which yielded 41.19 g/l of reducing sugars with pentoses as the major end product. The residual cellulose rich bagasse after alkali treatment was enzymatically hydrolyzed using commercial cellulases which yielded 571 mg/g of reducing sugars with hexoses as the major product. The sugars produced by both the strategies were used for ethanol production separately by suitable hexoses and pentose utilizing yeast strains. By comparative evaluation, it was revealed that direct saccharification of sugarcane bagasse using in-house developed cocktail of cellulases-hemicellulases was more advantageous as compared to acid-enzymatic hydrolysis for bioethnol production. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本研究的重点是有效利用甘蔗渣全纤维素纤维素生产生物乙醇。甘蔗渣的糖化通过采用两种策略进行。直接酶水解和酸,然后酶水解。在第一种情况下,使用内部开发的纤维素半纤维素酶混合物进行氨处理的甘蔗渣的酶促糖化反应,最多可产生614 mg / g的还原糖。通过使用第二种策略,通过稀酸水解获得了半纤维素糖的选择性分馏,产生了以戊糖为主要最终产物的还原糖41.19 g / l。使用市售纤维素酶将碱处理后的残留富纤维素甘蔗渣酶水解,得到的分解糖为571 mg / g,以己糖为主要产物。通过两种策略产生的糖分别通过合适的己糖和戊糖利用酵母菌株用于乙醇生产。通过比较评价表明,与用于生物乙醇生产的酸-酶水解相比,使用内部开发的纤维素酶-半纤维素酶混合物直接糖化甘蔗渣蔗糖更有利。 (C)2017 Elsevier Ltd.保留所有权利。

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