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Pilot scale simultaneous saccharification and fermentation at very high gravity of cassava flour for ethanol production.

机译:在木薯粉极高的重力下进行中试规模的糖化和发酵,以生产乙醇。

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摘要

We developed a simultaneous saccharification and fermentation (SSF) process of cassava flour at very high gravity (VHG). Cassava flour (CF) was dissolved in water to reach 315.4 g/l dry matter, and then the mixture was liquefied at 80 degrees C for 90 min by using alpha-amylase (3532 AAU/kg CF) and beta-glucanase (2812 U/kg CF). SSF of liquefied mash of cassava was performed at 30 degrees C with the simultaneous addition of two glucoamylases (Distillase ASP at 540 GAU/kg CF and Amigase Mega L at 0.035% w/w), active dry yeast (1.5x107 cells/l), urea (12 mM) and KH2PO4 (4 mM). Under these conditions, the SSF process finished after 72 h. The ethanol content achieved 17.2% v/v corresponding to 86.1% of the theoretical ethanol yield at lab scale and decreased to 16.5% v/v corresponding to 83.6% of the theoretical ethanol yield at pilot scale. Therefore, the SSF of cassava flour under VHG condition could have a great potential for the ethanol industry in Vietnam and South East Asia.
机译:我们开发了木薯粉在非常高的重力下(VHG)的同时糖化和发酵(SSF)工艺。将木薯粉(CF)溶解在水中以达到315.4 g / l干物质,然后通过使用α-淀粉酶(3532 AAU / kg CF)和β-葡聚糖酶(2812 U)在80摄氏度下将混合物液化90分钟/ kg CF)。在30°C下进行木薯液化液的SSF,同时添加两种葡糖淀粉酶(540 GAU / kg CF的Distillase ASP和0.035%w / w的Amigase Mega L),活性干酵母(1.5x10 7 cells / l),尿素(12 mM)和KH 2 PO 4 (4 mM)。在这些条件下,SSF过程在72小时后完成。乙醇含量达到17.2%v / v,相当于实验室规模的理论乙醇收率的86.1%,降低到16.5%v / v,相当于实验室规模的理论乙醇收率的83.6%。因此,在VHG条件下木薯粉的SSF可能对越南和东南亚的乙醇工业具有巨大的潜力。

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