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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >An approach to optimization of enzymatic hydrolysis from sugarcane bagasse based on organosolv pretreatment
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An approach to optimization of enzymatic hydrolysis from sugarcane bagasse based on organosolv pretreatment

机译:基于有机溶剂预处理的甘蔗渣酶解工艺优化

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BACKGROUND: The organosolv pretreatment followed by enzymatic hydrolysis of the pretreated material and subsequent fermentation of the hydrolysate produced, was the strategy used for ethanol production from sugarcane bagasse. The effect of different operational variables affecting the pretreatment (the catalyst type and its concentration, and the pretreatment time) and enzymatic hydrolysis stage (substrate concentration, cellulase loading, addition of xylanase and Tween 20, and the cellulase/β-glucosidase ratio), were investigated. RESULTS: The best values of glucose concentration (28.8 g L ~(-1)) and yield (25.1 g per 100 g dry matter) were obtained when the material was pretreated with 1.25% (w/w) H_2SO_4 for 60min, and subsequently hydrolyzed using 10% (w/v) substrate concentration in a reaction medium supplemented with xylanase (300 UI g~(-1)) and Tween 20 (2.5% w/w). Fermentation of the broth obtained under these optimum conditions by Saccharomyces cerevisiae resulted in an ethanol yield of 92.8% based on the theoretical yield, after 24 h. CONCLUSION: Organosolv pretreatment of sugarcane bagasse under soft conditions, and subsequent enzymatic hydrolysis of the pretreated material with a cellulolytic system supplemented with xylanase and Tween 20, is a suitable procedure to obtain a glucose rich hydrolysate efficiently fermentable to ethanol by Sacharomyces cerevisiae yeasts.
机译:背景:有机溶剂预处理,酶促水解预处理的材料以及随后发酵产生的水解产物是从甘蔗渣中生产乙醇的策略。不同操作变量对预处理(催化剂类型及其浓度和预处理时间)和酶促水解阶段(底物浓度,纤维素酶负载,木聚糖酶和吐温20的添加以及纤维素酶/β-葡萄糖苷酶比)的影响,被调查了。结果:将材料用1.25%(w / w)H_2SO_4预处理60分钟,然后进行后续处理,可获得最佳的葡萄糖浓度值(28.8 g L〜(-1))和产量(每100 g干物质25.1 g)。在添加木聚糖酶(300 UI g〜(-1))和吐温20(2.5%w / w)的反应介质中,使用10%(w / v)底物浓度水解。在24小时后,通过酿酒酵母在这些最佳条件下发酵得到的肉汤的乙醇收率为理论收率的92.8%。结论:在柔和条件下对甘蔗渣进行有机溶剂预处理,然后用纤维素酶系统和木聚糖酶和吐温20进行纤维素酶水解处理后的材料,是一种合适的方法,可通过酿酒酵母获得可有效发酵为乙醇的富含葡萄糖的水解产物。

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