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Systematic Development of Miniaturized (Bio)Processes using Process Systems Engineering (PSE) Methods and Tools

机译:使用过程系统工程(PSE)方法和工具对小型化(生物)过程进行系统开发

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The focus of this work is on process systems engineering (PSE) methods and tools, and especially on how such PSE methods and tools can be used to accelerate and support systematic bioprocess development at a miniature scale. After a short presentation of the PSE methods and the bioprocess development drivers, three case studies are presented. In the first example it is demonstrated how experimental investigations of the bi-enzy-matic production of lactobionic acid can be modeled with help of a new mechanistic mathematical model. The reaction was performed at lab scale and the prediction quality analyzed. In the second example a computational fluid dynamic (CFD) model is used to study mass transfer phenomena in a microreactor. In this example the model is not only used to predict the transient dynamics of the reactor system but also to extract material properties like the diffusion velocities of substrate and product, which is otherwise difficult to access. In the last example, a new approach to the design of microbioreactor layouts using topology optimization is presented and discussed. Finally, the PSE methods are carefully discussed with respect to the complexity of the presented approaches, the applicability with respect to practical considerations and the opportunity to analyze experimental results and transfer the knowledge between different scales.
机译:这项工作的重点是过程系统工程(PSE)方法和工具,尤其是如何使用此类PSE方法和工具来加速和支持微型规模的系统生物过程开发。在简短介绍了PSE方法和生物过程发展驱动因素之后,提出了三个案例研究。在第一个示例中,演示了如何借助新的机械数学模型来模拟乳糖酸双酶生产的实验研究。反应在实验室规模进行,并分析了预测质量。在第二个示例中,计算流体动力学(CFD)模型用于研究微反应器中的传质现象。在该示例中,该模型不仅用于预测反应器系统的瞬态动力学,而且还用于提取材料特性(如基材和产品的扩散速度),否则很难访问。在最后一个示例中,提出并讨论了一种使用拓扑优化设计微生物反应器布局的新方法。最后,针对提出的方法的复杂性,针对实际考虑的适用性以及分析实验结果和在不同规模之间转移知识的机会,认真讨论了PSE方法。

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