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Dynamic Modeling of Catalytic Hydrogenation of Pyrolysis Gasoline in Trickle-Bed Reactor

机译:涓流床反应器中热解汽油催化氢化的动态建模

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Development of mathematical models for chemical process simulation has been the main focus of research for many years. In the past trickle bed reactor models for various reaction systems were validated with pilot plant data but the development of a dynamic model based on industrial data is rare. Kittisupakorn and Arpornwichanop (1999) have recently developed a steady state model of an industrial trickle-bed reactor for the above system. However, this model is only applicable to predict steady state conditions and inapplicable to design startup and shutdown as well as control studies. Therefore, in this work, a dynamic model of an industrial trickle-bed reactor for describing the hydrogenation reactions of a pyrolysis gasoline in an olefin plant has been developed based on actual plant data. The model results to a set of partial differential equations which were solved by method of lines with approximate spatial derivative terms by an orthogonal collocation method. The model was used to study the response of the process. The simulation results demonstrated that the dynamic response gave a reasonable path from a transient to steady state condition. This dynamic model will be used in future in the formulation of model based control strategies in order to control the reactor.
机译:化学工艺模拟的数学模型的发展是多年来研究的主要重点。在过去的涓流床反应器模型中,各种反应系统的型号验证了试验工厂数据,但基于工业数据的动态模型的发展是罕见的。 Kittisupakorn和Arpornwichanop(1999)最近开发了一个用于上述系统的工业涓流床反应器的稳态模型。然而,该模型仅适用于预测稳态条件,并且不适用于设计启动和关闭以及对照研究。因此,在这项工作中,基于实际植物数据开发了用于描述烯烃植物中热解汽油氢化反应的工业滴水床反应器的动态模型。该模型产生一组偏微分方程,通过正交搭配方法通过具有近似空间衍生术语的线来解决的部分微分方程。该模型用于研究该过程的响应。仿真结果表明动态响应从瞬态到稳态条件发出合理路径。该动态模型将来将在制定基于模型的控制策略方面使用,以控制反应器。

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