首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Kinetic study of gas phase olefin polymerization with a TiCl4/MgCl2 catalyst .2. Kinetic parameter estimation and model building
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Kinetic study of gas phase olefin polymerization with a TiCl4/MgCl2 catalyst .2. Kinetic parameter estimation and model building

机译:TiCl4 / MgCl2催化剂气相烯烃聚合的动力学研究.2。动力学参数估计和模型建立

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摘要

Monomer transport and polymerization kinetics are two key phenomena in olefin polymerization with heterogeneous transition metal catalysts. To have a better understanding of these interrelated kinetics and diffusion phenomena, a quantitative calculation of the monomer diffusion directly from experimental study is essential. In this work, a novel temperature-perturbation technique is developed to systematically study the kinetic and diffusion limitations in catalyzed gas phase olefin polymerization. A physical model of the particle growth mechanism as well as its mathematical representation is presented and the diffusion limitations occurring in the system at high temperature are characterized and quantitatively analyzed. Finally, the practical implications of the results of this study on the operation of industrial scale polyolefin reactors are examined. (C) 1997 John Wiley & Sons, Inc.
机译:单体的运输和聚合动力学是异质过渡金属催化剂在烯烃聚合中的两个关键现象。为了更好地了解这些相互关联的动力学和扩散现象,直接从实验研究中定量计算单体扩散至关重要。在这项工作中,开发了一种新型的温度摄动技术,以系统地研究催化气相烯烃聚合反应中的动力学和扩散限制。提出了粒子生长机理的物理模型及其数学表示,并对高温下在系统中发生的扩散限制进行了表征和定量分析。最后,研究了这项研究结果对工业规模聚烯烃反应器运行的实际意义。 (C)1997年John Wiley&Sons,Inc.

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