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A kinetic model and simulation of starch saccharification and simultaneous ethanol fermentation by amyloglucosidase and Zymomonas mobilis

机译:淀粉糖化酶及同时乙醇发酵的动力学模型及氨基葡聚糖酶和Zymomonas Mobilis

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摘要

A mathematical model is described for the simultaneous saccharification and ethanol fermentation (SSF) of sago starch using amyloglucosidase (AMG) and Zymomonas mobilis. By introducing the degree of polymerization (DP) of oligosaccharides produced from sago starch treated with α -amylase, a series of Michaelis-Menten equations were obtained. After determining kinetic parameters from the results of simple experiments carried out at various substrate and enzyme concentrations and from the subsite mapping theory, this model was adapted to simulate the SSF process. The results of simulation for SSF are in good agreement with experimental results.
机译:描述了使用淀粉葡萄糖酶(AMG)和Zymomonas Mobilis的Sago淀粉的同时糖化和乙醇发酵(SSF)的数学模型。通过引入用α-淀粉酶处理的Sago淀粉产生的寡糖的聚合程度(DP),获得了一系列Michaelis-Menten方程。在从各种底物和酶浓度下进行的简单实验的结果中确定动力学参数并从底座映射理论中进行,这种模型适于模拟SSF过程。 SSF的模拟结果与实验结果吻合良好。

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