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Arrowroot as a novel substrate for ethanol production by solid state simultaneous saccharification and fermentation

机译:葛粉作为固态同时糖化和发酵生产乙醇的新型底物

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Ethanol production from Canna edulis Ker was successfully carried out by solid state simultaneous saccharification and fermentation. The enzymatic hydrolysis conditions of C. edulis were optimized by Plackett-Burman design. The effect of inert carrier (corncob and rice bran) on ethanol fermentation and the kinetics of solid state simultaneous saccharification and fermentation was investigated. It was found that C. edulis was an alternative substrate for ethanol production, 10.1% (v/v) of ethanol concentration can attained when 40 g corncob and 10 g rice bran per 100 g C. edulis powder were added for ethanol fermentation. No shortage of fermentable sugars was observed during solid state simultaneous saccharification and fermentation. There was no wastewater produced in the process of ethanol production from C. edulis with solid state simultaneous saccharification and fermentation and the ethanol yield of more than 0.28 tonne per one tonne feedstock was achieved. This is first report for ethanol production from C. edulis powder.
机译:通过固态同时糖化和发酵成功地从Canna edulis Ker生产了乙醇。通过Plackett-Burman设计优化了毛孢梭菌的酶水解条件。研究了惰性载体(玉米芯和米糠)对乙醇发酵的影响以及固态同时糖化和发酵的动力学。已发现可食的C. edulis是生产乙醇的另一种底物,每100 g的可食的C. eduss粉末添加40 g玉米芯和10 g的米糠用于乙醇发酵,可达到10.1%(v / v)的乙醇浓度。在固态同时糖化和发酵期间未观察到可发酵糖的短缺。在通过固态同时糖化和发酵的蓝靛果生产乙醇的过程​​中,没有产生废水,每1吨原料的乙醇产量超过0.28吨。这是关于从可食假丝酵母粉末生产乙醇的首次报道。

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