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Computational Fluid Dynamics Modeling of Temperature Distribution in Fluidized Bed Polymerization Reactor for Polypropylene Production

机译:聚丙烯生产流化床聚合反应器温度分布的计算流体动力学建模

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Propylene polymerization process is one of the chemical processes that take place in the fluidized bed reactor. The gas monomer is fed through the distributor to react with the solid catalyst particles inside the reactor. The polymer particles are produced from the heterogeneous exothermic polymerization reaction. Although the fluidized bed polymerization reactor has high heat and mass transfer rate, the thermal efficiency is usually limited due to the formation of hot spots and improper mixing. In this research, a computational fluid dynamics (CFD) model of the fluidized bed polymerization reactor for polypropylene production is developed in order to study the temperature distribution within the reactor. The polymer growth rate and particle size distribution are included in the CFD model development. The heat is generated from highly exothermic polymerization reaction and removed in the heat exchanger. By proper adjusting the monomer feed velocity, the uniform temperature distribution inside the reactor is obtained in axial and radial directions. Additionally, the temperature of the outlet gas stream can be reduced, thus reducing the external cooling duty.
机译:丙烯聚合方法是在流化床反应器中发生的化学过程之一。通过分配器馈送气体单体以与反应器内的固体催化剂颗粒反应。聚合物颗粒由非均相放热聚合反应产生。尽管流化床聚合反应器具有高热和传质速率,但由于形成热点和混合不当,热效率通常受限。在该研究中,开发了用于聚丙烯生产的流化床聚合反应器的计算流体动力学(CFD)模型,以研究反应器内的温度分布。聚合物生长速率和粒度分布包括在CFD模型开发中。从高热聚合反应产生热量并在热交换器中除去。通过适当调整单体进料速度,在轴向和径向方向上获得反应器内的均匀温度分布。另外,可以降低出口气流的温度,从而降低了外部冷却占空比。

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