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Mathematical model of direct ethanol production from starch in immobilized recombinant yeast culture

机译:固定化重组酵母培养中由淀粉直接产生乙醇的数学模型。

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摘要

A mathematical model of direct ethanol production from starch in immobilized recombinant amylase-producing yeast culture was proposed for estimating the dynamic behavior of cell growth,starch degradation,glucose accumulation,ethanol production,and glucoamylase synthesis by immobilized yeast.The application of the model was compared to the experiments of ethanol production from starch in batch and continuous cultures.The calculated values agreed well with experimental data,regarding concentration of cells,starch,ethanol,and glucoamylase.The profiles of concentration of starch,glucoamylase,cells,and ethanol in the gel bead for estimating the efficient ethanol production were calculated by the model.By comparing the ethanol productivity and the washout dilution rate in an immobilized cell culture with those in a free cell culture,it was confirmed that the immobilized cell culture had a higher ethanol productivity than the free cell culture and produced ethanol continuously with a dilution rate of 0.5 h~(-1),which is about 10 times larger than the washout rate in a free cell culture.
机译:提出了固定化重组淀粉酶生产酵母培养物中淀粉直接生产乙醇的数学模型,用于估计固定化酵母细胞生长,淀粉降解,葡萄糖积累,乙醇生产和葡糖淀粉酶合成的动力学行为。该模型的应用是与分批和连续培养的淀粉生产乙醇的实验相比。计算值与实验数据非常吻合,关于细胞,淀粉,乙醇和葡糖淀粉酶的浓度。淀粉,葡糖淀粉酶,细胞和乙醇的浓度分布该模型计算出了估计乙醇有效产量的凝胶珠。通过比较固定化细胞培养液和游离细胞培养液中乙醇的产率和洗脱稀释率,证实了固定化细胞培养液中乙醇含量较高。生产力高于游离细胞培养,并连续稀释产生乙醇0.5 h〜(-1),比游离细胞培养的洗脱速率大10倍。

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