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A joint model-based experimental design approach for the identification of kinetic models in continuous flow laboratory reactors

机译:基于联合模型的实验设计方法,用于鉴定连续流实验室反应器中的动力学模型

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摘要

Continuous flow laboratory reactors are typically used for the development of kinetic models for catalytic reactions. Sequential model-based design of experiments (MBDoE) procedures have been proposed in literature where experiments are optimally designed for discriminating amongst candidate models or for improving the estimation of kinetic parameters. However, the effectiveness of these procedures is strongly affected by the initial model uncertainty, leading to suboptimal design solutions and higher number of experiments to be executed. A joint model-based design of experiments (j-MBDoE) technique, based on multi-objective optimization, is proposed in this paper for the simultaneous solution of the dual problem of discriminating among competitive kinetic models and improving the estimation of the model parameters. The effectiveness of the proposed design methodology is tested and discussed through a simulated case study for the identification of kinetic models of methanol oxidation over silver catalyst.
机译:连续流实验室反应器通常用于开发催化反应动力学模型。在文献中已经提出了基于顺序模型的实验设计(MBDoE)程序,其中最优地设计了实验以区分候选模型或改进动力学参数的估计。但是,这些过程的有效性在很大程度上受到初始模型不确定性的影响,从而导致设计方案不理想以及要执行的实验数量更多。本文提出了一种基于模型的联合实验设计(j-MBDoE)技术,基于多目标优化,用于同时解决区分竞争动力学模型和改进模型参数估计的双重问题。通过模拟案例研究对提出的设计方法的有效性进行了测试和讨论,以识别在银催化剂上甲醇氧化的动力学模型。

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