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Modelling of the oxygen level response to feed rate perturbations in an industrial scale fermentation process

机译:工业规模发酵过程中氧气水平对进料速率扰动响应的建模

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摘要

A study of the feasibility of perturbation-based control methods in industrial fed-batch fermentations based on experiments in industrial production scale bioreactors (>100 m(3)) is presented, as well as modelling of the relation between substrate feed rate and dissolved oxygen level in such a process. Several different types of perturbation-based control methods have been suggested for control of this type of process but it has been reported that perturbations in the feed rate may cause decreased productivity in fermentations. The results of this study show that perturbations in the feed rate of production scale fermentations can achieve significant dissolved oxygen level responses without decreased productivity. A model based on data for dissolved oxygen responses and a simulation using a simple observer are given, showing that it is possible to model industrial mixing dynamics in a simple way and that this can be used for perturbation-based on-line estimation of the metabolic state of the system in regard to overflow metabolism. A frequency region where the model can be used has been identified, indicating which frequencies would be suitable for perturbation-based control in industrial fermentations. (C) 2015 Elsevier Ltd. All rights reserved.
机译:基于工业生产规模生物反应器(> 100 m(3))的实验,对基于摄动的分批控制方法在工业补料分批发酵中的可行性进行了研究,并对底物进料速率与溶解氧之间的关系进行了建模在这样一个过程中的水平。已经建议了几种不同类型的基于扰动的控制方法来控制这种类型的过程,但是据报道,进料速率的扰动可能会导致发酵生产率下降。这项研究的结果表明,生产规模发酵进料速率的扰动可以实现显着的溶解氧水平响应,而不会降低生产率。给出了基于溶解氧反应数据的模型和使用简单观察器的模拟,该模型表明可以以简单的方式对工业混合动力学进行建模,并且可以将其用于基于扰动的代谢在线估算关于溢流代谢的系统状态。已经确定了可以使用该模型的频率区域,指示哪些频率适合工业发酵中基于扰动的控制。 (C)2015 Elsevier Ltd.保留所有权利。

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