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首页> 外文期刊>Biotechnology Progress >Impact of an Acid Fungal Protease in High Gravity Fermentation for Fthanol Production Using Indian Sorghum as a Feedstock
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Impact of an Acid Fungal Protease in High Gravity Fermentation for Fthanol Production Using Indian Sorghum as a Feedstock

机译:酸性真菌蛋白酶在以印度高粱为原料的高重力发酵生产乙醇中的影响

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This study evaluated the conventional jet cooking liquefaction process followed by simultaneous saccharification and fermentation (SSF) at 30% and 35% dry solids (DS) concentration of Indian sorghum feedstock for ethanol production, with addition of acid fungal protease or urea. To evaluate the efficacy of thermostable a-amylase in liquefaction at 30% and 35% DS concentration of Indian sorghum, liquefact solubility, higher dextrins, and fermentable sugars were analyzed at the end of the process. The liquefact was further subjected to SSF using yeast. In comparison with urea, addition of an acid fungal protease during SSF process was observed to accelerate yeast growth (μ ), substrate consumption (Q_s), ultimately ethanol yield based on substrate (Y_(P/S)) and ethanol productivity based on fermentation time (Q_p). The fermentation efficiency and ethanol recovery were determined for both concentrations of Indian sorghum and found to be increased with use of acid fungal protease in SSF process.
机译:这项研究评估了传统的喷射蒸煮液化过程,然后同时以浓度分别为30%和35%的印度高粱原料的干固体(DS)浓度进行了糖化和发酵(SSF),以生产乙醇,并添加了酸性真菌蛋白酶或尿素。为了评估在30%和35%DS浓度的印度高粱中热稳定的α-淀粉酶在液化中的功效,在过程结束时分析了液化溶解度,较高的糊精和可发酵糖。使用酵母将液化物进一步进行SSF。与尿素相比,在SSF过程中添加酸性真菌蛋白酶可促进酵母生长(μ),底物消耗(Q_s),最终基于底物的乙醇产量(Y_(P / S))和基于发酵的乙醇生产率时间(Q_p)。测定了两种浓度的印度高粱的发酵效率和乙醇回收率,发现在SSF工艺中使用酸性真菌蛋白酶会提高发酵效率和乙醇回收率。

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