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Reproduction, Optimization, and Translation of a Dynamic Model of High Biomass Ethanol Fermentation to Support Variable Temperature

机译:高生物质乙醇发酵动态模型的再现,优化和翻译,以支持可变温度

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In this paper, the effect of a variable temperature fermentation model was studied. We identified a model which considers substrate, product, and biomass inhibition, as well as an active and inactive cell phase of the yeast Saccharomyces cerevisiae. The model was evaluated using MATLAB at five different temperatures (28, 31, 34, 37, and 40°C). In the proposed model, we optimized the results through parameter fitting and compared it to the initial model which failed to simulate cell death. Through this work, we were able to improve the fit of the model considerably by 33% decrease, in the residual standard deviation. We also found that a smaller range of temperature performs better by maintaining the ethanol concentration and decreasing the temperature through the fermentation. Our model can show fermentation over a change in temperature over time and can show how fermentations will perform with temperature change.
机译:本文研究了可变温度发酵模型的效果。 我们鉴定了一种模型,其考虑底物,产品和生物质抑制,以及酵母酿酒酵母的活性和无活性细胞相。 使用MATLAB在五个不同温度(28,31,34,37和40℃)下评估模型。 在拟议的模型中,我们通过参数拟合优化了结果,并将其与未能模拟细胞死亡的初始模型进行比较。 通过这项工作,我们能够在剩余标准偏差下显着提高33%的模型的拟合。 我们还发现,通过维持乙醇浓度并通过发酵降低温度,较小的温度范围更好地表现更好。 我们的模型可以随着时间的推移而在温度变化下显示发酵,并且可以显示发酵如何进行温度变化。

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