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Modified mathematical model for gas phase olefin polymerization in fluidized-bed catalytic reactor

机译:流化床催化反应器中气相烯烃聚合的改进数学模型

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A modified model for the gas phase catalyzed olefin polymerization fluidized-bed reactors (FBR) using Ziegler-Natta catalyst is presented in this study. This mathematical model accounts for mass and heat transfer between the bubbles and the clouds without chemical reaction, between the clouds and the emulsion without chemical reaction, and between emulsion and solid with chemical reaction that occurs at the surface of the catalyst particles. The model accounts for the effect of catalyst particles type and porosity on the rate of reaction. In this work, the concentration and temperature profiles in the bubble, and emulsion phases are calculated and the effect of catalyst solid phase on the system is estimated. The effect of important reactor parameters such as superficial gas velocity, catalyst injection rate, and catalyst particle growth on the dynamic behavior of the FBR is investigated and the behavior of mathematical model is compared with the repor.ted models for the constant bubble size model, well-mixed model and bubble growth model . Moreover, the results of the model are compared with the experimental data in terms of molecular weight distribution and polydispersity of the produced polymer at steady state. A good agreement is observed between our model prediction and the actual plant data.
机译:本研究提出了使用齐格勒-纳塔催化剂的气相催化烯烃聚合流化床反应器(FBR)的改进模型。该数学模型解释了在没有化学反应的情况下气泡和云之间,在没有化学反应的情况下云和乳液之间以及在催化剂颗粒表面发生化学反应的乳液和固体之间的质量和热传递。该模型考虑了催化剂颗粒类型和孔隙率对反应速率的影响。在这项工作中,计算了气泡和乳液相中的浓度和温度曲线,并估算了催化剂固相对系统的影响。研究了重要的反应器参数(如表观气体速度,催化剂注入速率和催化剂颗粒的生长)对FBR动力学行为的影响,并将数学模型的行为与恒定气泡尺寸模型的模型进行了比较,充分混合模型和气泡增长模型。此外,将模型的结果与实验数据在稳态下的所得聚合物的分子量分布和多分散性进行了比较。我们的模型预测与实际工厂数据之间观察到很好的一致性。

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