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Integrated Strategies to Enhance Cellulolytic Enzyme Production Using an Instrumented Bioreactor for Solid-State Fermentation of Sugarcane Bagasse

机译:使用仪器化生物反应器对甘蔗渣进行固态发酵来增强纤维素分解酶生产的综合策略

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摘要

The conversion of agro-industrial residues, such as sugarcane bagasse, into high-value products and renewable energy, within the biorefinery concept, is a potential alternative towards the sustainable management of these resources. This work evaluates the production of cellulolytic enzymes by a selected strain of Aspergillus niger cultivated in sugarcane bagasse under solid-state fermentation using an instrumented lab-scale bioreactor. The effects of environmental factors including the type of substrate and medium composition, as well as the operational conditions (air flow rate, inlet air relative humidity, and initial substrate moisture content) on the production of the enzymatic complex were evaluated using statistical design tools. Significant increases in FPase, endoglucanase, and xylanase activities were achieved under the optimized conditions predicted by the models, with values of 0.88, 21.77, and 143.85 IU/g of dry solid substrate, respectively, representing around ten-, four-, and twofold increases compared to the activities obtained under the initial growth conditions. This demonstrates the importance of evaluating environmental and operational criteria in order to achieve efficient enzyme production. The crude enzymatic extract obtained under optimized conditions was employed for enzymatic hydrolysis of pretreated sugarcane bagasse. Approximately 13 % of total reducing sugars, and a glucose concentration of 2.54 g/L, were obtained after 22 h of hydrolysis of steam exploded sugarcane bagasse, indicating that the enzymatic cocktail produced has good potential for use in the conversion of biomass.
机译:在生物精炼概念中,将甘蔗渣等农用工业残留物转化为高价值产品和可再生能源,是可持续管理这些资源的一种潜在选择。这项工作评估了使用仪器化的实验室规模的生物反应器,在固态发酵条件下在甘蔗渣中培养的黑曲霉所选菌株的纤维素分解酶的产生。使用统计设计工具评估了环境因素(包括底物类型和培养基组成以及操作条件(空气流速,进气相对湿度和初始底物含水量))对酶促复合物生产的影响。在模型预测的最佳条件下,FPase,内切葡聚糖酶和木聚糖酶活性显着增加,分别为干固体底物的0.88、21.77和143.85IU / g,分别约为十倍,四倍和两倍与在初始生长条件下获得的活动相比增加了。这证明了评估环境和操作标准以实现高效酶生产的重要性。在优化条件下获得的粗酶提取物用于酶解预处理的甘蔗渣。在蒸汽爆炸的甘蔗渣中水解22小时后,获得的还原糖总量约为13%,葡萄糖浓度为2.54 g / L,表明所产生的酶混合物具有用于生物质转化的良好潜力。

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