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通过酪蛋白胶束的多重正效应从预处理的玉米秸秆中生产增强的生物乙醇。

Enhanced bioethanol production from pretreated corn stover via multi-positive effect of casein micelles.

机构信息

Department of Agricultural and Biosystems Engineering, 1400 North Campus Drive, South Dakota State University, Brookings, SD 57007, USA.

出版信息

Bioresour Technol. 2013 May;135:93-102. doi: 10.1016/j.biortech.2012.07.100. Epub 2012 Aug 7.

Abstract

Casein polypeptides containing substructures of αs1-casein, β-casein, k-casein, αs2-casein were used as a lignin-blocker at above critical micelles concentration to improve the bioethanol production of dilute acid, lime, alkali, extrusion and AFEX pretreated corn stover (CS). Application of 0.5 g/g glucan of casein was found to effectively increase the glucose yield of CS pretreated with dilute acid, lime, alkali, extrusion and AFEX by 31.9%, 17.0%, 22.7%, 29.5%, and 17.4%, respectively with no positive impact on Avicel. Consequently 96 h simultaneous saccharification and fermentation (SSF) of these hydrolysates reduced the fermentation period by up to 48 h and increased the theoretical yield of ethanol by 8.48-33.7% compared to control. Application of casein during saccharification reduced the enzyme utilization by 33.0%. Recycling of hydrolysate from casein-treated CS for a 2nd round hydrolysis resulted in average glucose yield of 36.4% compared to 29.0% control.

摘要

含有αs1-酪蛋白、β-酪蛋白、κ-酪蛋白、αs2-酪蛋白亚结构的酪蛋白多肽在临界胶束浓度以上用作木质素阻断剂,以提高稀酸、石灰、碱、挤压和 AFEX 预处理玉米秸秆(CS)的生物乙醇产量。发现应用 0.5 g/g 葡聚糖的酪蛋白可有效提高稀酸、石灰、碱、挤压和 AFEX 预处理 CS 的葡萄糖产量,分别提高 31.9%、17.0%、22.7%、29.5%和 17.4%,对 Avicel 没有积极影响。因此,与对照相比,这些水解物的 96 h 同步糖化发酵(SSF)将发酵周期缩短了多达 48 h,并将乙醇的理论产量提高了 8.48-33.7%。在糖化过程中应用酪蛋白可使酶利用率降低 33.0%。用酪蛋白处理 CS 的水解物进行第二轮水解,可得到平均 36.4%的葡萄糖产量,而对照为 29.0%。

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