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Industrial Loop Reactor for Catalytic Propylene Polymerization: Dynamic Modeling of Emergency Accidents

机译:工业循环反应器催化丙烯聚合:动态建模的紧急事故

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In industrial loop reactors for catalytic propylene polymerization, the reactor pressure can influence the polymerization rate, feed flow rate, and product properties, especially safe operation of the reactor. To predict the pressure change during polymerization and check the performance of pressure-relief devices in response to emergency accidents, a dynamic model was developed based on mass and energy balances as well as thermodynamics and kinetics. In this model, the pressure was related to the temperature by a state equation for high-pressure liquid. The pipeline equations of the reactors described by the conservation of mechanical energy were incorporated into the model to better predict the pressure. In addition to the pressure, the model can also predict other variables, such as temperature, slurry density, and solids holdup in the reactors. Dynamic data from an industrial plant were used for model validation. Furthermore, the application of the model was demonstrated by simulating several typical emergency accidents.
机译:在工业催化循环反应堆丙烯聚合,反应堆的压力会影响聚合速率、饲料流率和产品属性,特别是安全操作的反应堆。改变聚合过程中,检查减压装置的性能应对紧急事故,一个动态模型开发了基于质量和能量平衡热力学和动力学。模型,相关的压力温度对高压状态方程液体。所描述的机械保护能量被纳入模型更好预测的压力。压力,该模型可以预测变量,如温度、泥浆密度,和固体抢劫反应堆。从一个工厂被用于模型验证。模型证明了模拟几个典型的紧急事故。

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