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Modelling the production of soluble hydrogenase in Ralstonia eutropha by on-line optimal experimental design

机译:通过在线最佳实验设计模拟Ralstonia Eutropha中可溶性氢酶的生产

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This paper presents a case study on integrating a new model extension describing the production of the enzyme soluble hydrogenase (SH) into an already existing model by means of on-line optimal experimental design (OED). These investigations were done on the autotrophic cultivation system and process model of Ralstonia eutropha, i.e., a cultivation where aeration by air is replaced by a gas consisting of H_2/O_2/CO_2. Prior to the experiment, three different structures of the new model extension are postulated and coarsely identified. Off-line OED with the best model yields initial feeding trajectories. During the experiment, a repetitive model refinement is performed. This consists of identifying the parameters of the new model extension for all three models, selecting the best model and recalculating optimal feeding trajectories. It is shown that on-line OED in the early modelling stage followed by a manual modelling step results in an acceptable quality of the description of SH production.
机译:本文通过在线最佳实验设计(OED)对将酶可溶性氢化酶(SH)的生产中的新模型扩展集成了一种新模型扩展的案例研究。这些研究是对Ralstonia Eutropha的自养培养系统和过程模型进行的,即,通过由H_2 / O_2 / CO_2组成的气体替代空气的培养。在实验之前,假设新模型延伸的三种不同的结构并粗略地识别。带有最佳型号的离线OED会产生初始喂养轨迹。在实验期间,进行重复模型细化。这包括识别所有三种模型的新模型扩展的参数,选择最佳模型和重新计算最佳馈送轨迹。结果表明,在早期建模阶段的在线OED,然后是手动建模步骤导致SH生产的描述的可接受质量。

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