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生物乙醇生产:低底物负荷水解-高糖液体发酵和酶解残渣固态发酵的集成工艺。

Bioethanol production: an integrated process of low substrate loading hydrolysis-high sugars liquid fermentation and solid state fermentation of enzymatic hydrolysis residue.

机构信息

College of Chemical Engineering, Nanjing Forestry University, Nanjing 210037, China.

出版信息

Bioresour Technol. 2012 Nov;123:699-702. doi: 10.1016/j.biortech.2012.07.118. Epub 2012 Aug 17.

Abstract

An integrated process of enzymatic hydrolysis and fermentation was investigated for high ethanol production. The combination of enzymatic hydrolysis at low substrate loading, liquid fermentation of high sugars concentration and solid state fermentation of enzymatic hydrolysis residue was beneficial for conversion of steam explosion pretreated corn stover to ethanol. The results suggested that low substrate loading hydrolysis caused a high enzymatic hydrolysis yield; the liquid fermentation of about 200g/L glucose by Saccharomyces cerevisiae provided a high ethanol concentration which could significantly decrease cost of the subsequent ethanol distillation. A solid state fermentation of enzymatic hydrolysis residue was combined, which was available to enhance ethanol production and cellulose-to-ethanol conversion. The results of solid state fermentation demonstrated that the solid state fermentation process accompanied by simultaneous saccharification and fermentation.

摘要

本研究采用酶解-发酵集成工艺提高乙醇产量。低底物浓度酶解、高糖浓度液体发酵和酶解残渣固态发酵相结合有利于蒸汽爆破预处理玉米秸秆转化为乙醇。结果表明,低底物浓度酶解可获得较高的酶解产率;利用酿酒酵母发酵约 200g/L 的葡萄糖可获得较高的乙醇浓度,从而显著降低后续乙醇蒸馏的成本。结合酶解残渣固态发酵,可提高乙醇产量和纤维素到乙醇的转化率。固态发酵结果表明,该固态发酵过程伴随着同步糖化和发酵。

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