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One-pot strategy for on-site enzyme production, biomass hydrolysis, and ethanol production using the whole solid-state fermentation medium of mixed filamentous fungi

机译:使用全固态发酵培养基的混合丝状真菌的全固态发酵培养基,生物质水解,生物质水解和乙醇生产的一锅策略

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The efficient use of renewable lignocellulosic feedstocks to obtain biofuels and other bioproducts is a key requirement for a sustainable biobased economy. This requires novel and effective strategies to reduce the cost contribution of the cellulolytic enzymatic cocktails needed to convert the carbohydrates into simple sugars, in order to make large-scale commercial processes economically competitive. Here, we propose the use of the whole solid-state fermentation (SSF) medium of mixed filamentous fungi as an integrated one-pot strategy for on-site enzyme production, biomass hydrolysis, and ethanol production. Ten different individual and mixed cultivations of commonly used industrial filamentous fungi (Aspergillus niger, Aspergillus oryzae, Trichoderma harzianum, and Trichoderma reesei) were performed under SSF and the whole media (without the extraction step) were used in the hydrolysis of pretreated sugarcane bagasse. The cocultivation of T. reesei with A. oryzae increased the amount of glucose released by around 50%, compared with individual cultivations. The release of glucose and reducing sugars achieved using the whole SSF medium was around 3-fold higher than obtained with the enzyme extract. The addition of soybean protein (0.5% w/w) during the hydrolysis reaction further significantly improved the saccharification performance by blocking the lignin and avoiding unproductive adsorption of enzymes. The results of the alcoholic fermentation validated the overall integrated process, with a volumetric ethanol productivity of 4.77 g/L.h, representing 83.5% of the theoretical yield. These findings demonstrate the feasibility of the proposed one-pot integrated strategy using the whole SSF medium of mixed filamentous fungi for on-site enzymes production, biomass hydrolysis, and ethanol production. (c) 2018 American Institute of Chemical Engineers Biotechnol. Prog., 34:671-680, 2018
机译:有效使用可再生木质纤维素原料以获得生物燃料和其他生物化学素是可持续生物化经济的关键要求。这需要新颖的和有效的策略来降低将碳水化合物转化为简单糖所需的纤维素分解酶鸡尾酒的成本贡献,以便在经济上竞争的大规模商业过程。在此,我们提出了使用混合丝状真菌的整个固态发酵(SSF)培养基作为现场酶生产,生物质水解和乙醇生产的集成的单罐策略。在SSF下进行10种不同的工业丝状真菌(Aspergillus尼日尔,曲霉属植物,灰霉素Harzianum和Trichoderma harziani和Trichoderma Reesei)的10个不同的个体和混合培养在预处理甘蔗甘蔗的水解中使用全培养基(没有提取步骤)。与个体培养相比,与A. Oryzae的T.Reesei的葡萄糖量增加了50%的葡萄糖量。使用整个SSF培养基实现的葡萄糖和还原糖的释放比用酶提取物获得的3倍。在水解反应期间添加大豆蛋白(0.5%w / w)进一步通过阻断木质素显着提高了糖化性能,并避免了酶的未体力吸附。酒精发酵的结果验证了整体综合方法,体积乙醇生产率为4.77g / l.h,代表理论产量的83.5%。这些研究结果表明,使用全部SSF培养基的混合丝状真菌的全部SSF培养基用于现场酶生产,生物质水解和乙醇生产的可行性。 (c)2018美国化学工程师学院Biotechnol。 Prog。,34:671-680,2018

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