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首页> 外文期刊>Journal of Cereal Science >Small-scale mashing procedure for predicting ethanol yield of sorghum grain.
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Small-scale mashing procedure for predicting ethanol yield of sorghum grain.

机译:用于预测高粱谷物乙醇产量的小规模制浆程序。

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A small-scale mashing (SSM) procedure requiring only 300 mg of samples was investigated as a possible method of predicting ethanol yield of sorghum grain. The initial SSM procedure, which was conducted similarly to the mashing step in a traditional fermentation test, hydrolyzed just 38.5-47.2% of total sorghum starch to glucose. The initial procedure was simplified to contain only one liquefaction step, which did not influence subsequent saccharification. Thereafter, parameters such as temperature, pH, enzyme dosage, and saccharification time were optimized. Results showed that 91.2-97.5% of the total starch in 18 sorghum hybrids had been hydrolyzed to glucose using the following conditions: liquefaction at 86 degrees C for 90 min, 20 mul of alpha-amylase per 30 g of sample; pH adjustment by adding 50 mul of 2M acetate buffer at pH 4.2 to each microtube; saccharification at 68 degrees C for 90 min, 200 mul of amyloglucosidase per 30 g of sample. There were strong linear correlations between completely hydrolyzed starch (CHS) from SSM and ethanol yields from both traditional (R2 = 0.86) and simultaneous saccharification and fermentation (SSF, R2 = 0.93) procedures. CHS was a better indicator for predicting ethanol yield in fermentation than total starch. All rights reserved, Elsevier.
机译:研究了仅需要300 mg样品的小规模捣碎(SSM)程序,作为预测高粱谷物乙醇产量的一种可能方法。最初的SSM程序与传统发酵试验中的糖化步骤相似,仅将总高粱淀粉的38.5-47.2%水解为葡萄糖。简化了初始程序,使其仅包含一个液化步骤,这不会影响随后的糖化作用。此后,诸如温度,pH,酶剂量和糖化时间的参数被优化。结果显示,在以下条件下,18个高粱杂交种中91.2-97.5%的淀粉已被水解为葡萄糖:在86摄氏度下液化90分钟,每30 g样品20 mulα-淀粉酶;通过向每个微管中添加50 mul的pH 4.2的2M乙酸盐缓冲液来调节pH;在68°C糖化90分钟,每30 g样品中200 mul淀粉葡萄糖苷酶。 SSM的完全水解淀粉(CHS)与传统(R2 = 0.86)以及同时糖化和发酵(SSF,R2 = 0.93)程序的乙醇产量之间存在很强的线性相关性。与总淀粉相比,CHS是预测发酵中乙醇产量的更好指标。保留所有权利,Elsevier。

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