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A framework for innovation in process development for heterogeneously catalysed gas- phase reaction systems

机译:用于异构催化气相反应系统的过程开发的创新框架

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There is an increasing need for novel technologies to effectively identify highly efficient chemistries and to enable the quick and reliable development of novel, innovative and sustainable high-performance processes to exploit these. This requires the systematic integration and coordination of R&D activities from chemistry through to process engineering. This paper reports on technology developments in the form of process synthesis methods that will be required to enable the integrated synthesis of heterogeneously catalysed gas-phase reacting processes in parallel to kinetic investigations. The methods are based upon process network representations that can process the information generated in the kinetics investigation activities and embed the vast number of conceptual process design options that are possible for a given system whilst taking into account the practical constraints associated with such systems. The networks are searched using robust optimisation technology in the form of Tabu Search to identify the best processing schemes and operating regions for a given chemistry. This information on the optimal design regions can be constantly fed back to the kinetics development team to guide experimental efforts so that the kinetics match the optimal operating regions of the process. The process synthesis technology developments are illustrated with a complex application in the production of acetic acid.
机译:新颖技术越来越需要有效地识别高效化学,并能够快速可靠地开发新颖,创新和可持续的高性能流程来利用这些。这需要从化学通过化学通过化学过程进行系统的整合和协调来处理工程。本文报告了工艺合成方法形式的技术发展,这将需要与动力学研究平行的异均匀催化的气相反应过程进行综合合成。该方法基于过程网络表示,该过程可以处理在动力学调查活动中生成的信息,并嵌入给定系统的大量概念过程设计选项,同时考虑到与此类系统相关联的实际限制。使用禁忌搜索形式使用鲁棒优化技术搜索网络,以确定给定化学的最佳处理方案和操作区域。这些关于最佳设计地区的信息可以不断送回动力学开发团队,以指导实验努力,以便动力学与过程的最佳操作区域匹配。该过程合成技术的发展被用作乙酸的生产中的复杂应用。

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