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甘蔗渣和秸秆的酶解和乙醇发酵的铣削预处理。

Milling pretreatment of sugarcane bagasse and straw for enzymatic hydrolysis and ethanol fermentation.

机构信息

Chemistry Institute, Federal University of Rio de Janeiro (UFRJ), Rio de Janeiro, Brazil.

出版信息

Bioresour Technol. 2010 Oct;101(19):7402-9.

Abstract

The effectiveness of ball milling (BM) and wet disk milling (WDM) on treating sugarcane bagasse and straw were compared. Pretreated materials were characterized by wide angle X-ray diffraction analysis, particle-size distribution and scanning electron microscopy and the effectiveness of pretreatments was evaluated by enzymatic hydrolysis and fermentation. Glucose and xylose hydrolysis yields at optimum conditions for BM-treated bagasse and straw were 78.7% and 72.1% and 77.6% and 56.8%, respectively. Maximum glucose and xylose yields for bagasse and straw using WDM were 49.3% and 36.7% and 68.0% and 44.9%, respectively. BM improved the enzymatic hydrolysis by decreasing the crystallinity, while the defibrillation effect observed for WDM samples seems to have favored enzymatic conversion. Bagasse and straw BM hydrolysates were fermented by Saccharomyces cerevisiae strains. Ethanol yields from total fermentable sugars using a C6-fermenting strain reached 89.8% and 91.8% for bagasse and straw hydrolysates, respectively, and 82% and 78% when using a C6/C5 fermenting strain.

摘要

比较了球磨(BM)和湿盘磨(WDM)处理甘蔗渣和秸秆的效果。通过广角 X 射线衍射分析、粒度分布和扫描电子显微镜对预处理材料进行了表征,并通过酶水解和发酵评估了预处理的效果。在 BM 处理的蔗渣和秸秆的最佳条件下,葡萄糖和木糖的水解收率分别为 78.7%和 72.1%,77.6%和 56.8%。使用 WDM 时,蔗渣和秸秆的最大葡萄糖和木糖收率分别为 49.3%和 36.7%,68.0%和 44.9%。BM 通过降低结晶度来提高酶水解效率,而 WDM 样品的纤维细化效果似乎有利于酶转化。将蔗渣和秸秆的 BM 水解物用酿酒酵母菌株发酵。使用 C6 发酵菌株时,从总可发酵糖中获得的乙醇产量分别为蔗渣和秸秆水解物的 89.8%和 91.8%,而使用 C6/C5 发酵菌株时则为 82%和 78%。

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