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Different hydrodynamic model for gas-phase propylene polymemation in a catalytic fluidized bed reactor

机译:催化流化床反应器中气相丙烯聚合的不同流体力学模型

摘要

A comparative simulation study was carried out using the improved well-mixed, constant bubble size and well mixed models. These fluidized bed reactor models, combined with comprehensive kinetics for propylene homo-polymerization in the presence of a multiple active site Ziegler-Natta catalyst. In the improved model, the effect of the presence of particles in the bubbles and the excess gas in the emulsion phase was taken into account to improve the quantitative understanding of the actual fluidized bed process. The superficial gas velocity and catalyst feed rate have a strong effect on the hydrodynamics and reaction rate, which results in a greater variation in the polymer production rate and reactor temperature. At typical operating conditions the improved well mixed and well mixed models were in good agreement. While the COO!ICU bubble size model was found to over-predict the emulsion phase temperature and underpredict propylene concentration.
机译:使用改进的充分混合,恒定气泡大小和充分混合模型进行了比较模拟研究。这些流化床反应器模型结合了在多个活性中心齐格勒-纳塔催化剂存在下丙烯均聚的综合动力学。在改进的模型中,考虑了气泡中颗粒的存在和乳液相中过量气体的影响,以提高对实际流化床工艺的定量理解。表观气体速度和催化剂进料速率对流体动力学和反应速率具有强烈影响,这导致聚合物生产速率和反应器温度的较大变化。在典型的工作条件下,改进的均匀混合和均匀混合模型非常吻合。虽然发现COO!ICU气泡尺寸模型过高预测了乳液相温度,但过低预测了丙烯浓度。

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