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Dynamic modeling and Molecular Weight Distribution of ethylene copolymerization in an industrial gas-phase Fluidized-Bed Reactor

机译:工业气相流化床反应器中乙烯共聚的动力学模型和分子量分布

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摘要

A dynamic model for ethylene copolymerization in an industrial Fluidized-Bed Reactor (FBR) is developed to describe its behavior and calculate the properties of polyethylene. The presented model considers particle entrainment and polymerization reaction in two phases. Two-site kinetic and hydrodynamic models in combination, provide a comprehensive model for the gas phase fluidized-bed polyethylene production reactor. The governing moment and hydrodynamic differential equations were solved simultaneously and the results compared with a similar work, as well as industrial data. The dynamic model showed accurate results for predicting Polydispersity Index (PDI), Molecular Weight Distribution (MWD), reactor temperature and polymer production rate.
机译:建立了工业流化床反应器(FBR)中乙烯共聚的动力学模型,以描述其行为并计算聚乙烯的性能。提出的模型考虑了两个阶段的粒子夹带和聚合反应。两点动力学模型和流体动力学模型相结合,为气相流化床聚乙烯生产反应器提供了一个综合模型。同时求解了控制力矩和流体动力微分方程,并将结果与​​类似的工作以及工业数据进行了比较。该动力学模型显示出准确的结果,可预测多分散指数(PDI),分子量分布(MWD),反应器温度和聚合物生产率。

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