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NONLINEAR MPC FOR RECOMBINANT ZYMOMONAS MOBILIS FED-BATCH ETHANOL FERMENTATION

机译:用于重组Zymomonas Mobilis Fed分批乙醇发酵的非线性MPC

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摘要

This work presents the development of an unstructured kinetic model incorporating the differing degrees of product inhibition on the kinetic rates of recombinant Zymomonas mobilis fermentation. A mechanism for the inhibition of two competing substrates cellular uptake via membrane transport is proposed. The model was utilized in a nonlinear model predictive control (NMPC) algorithm to control product concentration during fed-batch fermentation. Using optimal feeding policy determined online by the NMPC controller, the volumetric productivity of ethanol was improved by 16.6% relative to the equivalent batch operation when the same final ethanol concentration was reached.
机译:这项工作介绍了一种非结构化动力学模型的发展,其含有不同程度的产品抑制对重组Zymomonas Mobilis发酵的动力学率。提出了一种通过膜输送抑制两个竞争底物细胞摄取的机制。该模型用于非线性模型预测控制(NMPC)算法,以控制送入批量发酵期间的产品浓度。使用NMPC控制器在线在线确定的最佳馈送策略,当达到相同的最终乙醇浓度时,乙醇的体积生产率相对于当量分批操作得到16.6%。

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