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首页> 外文期刊>Journal of Applied Polymer Science >PARTICLE GROWTH MODELING OF GAS PHASE POLYMERIZATION OF BUTADIENE
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PARTICLE GROWTH MODELING OF GAS PHASE POLYMERIZATION OF BUTADIENE

机译:丁二烯气相聚合的颗粒生长模拟

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摘要

Butadiene polymerization in the gas phase is modeled by a polymeric multilayer model. Intraparticle mass and heat transfer effects are studied. The effects of catalyst size and diffusivity of butadiene on the radial profile of monomer concentration in polymeric particles and on the rate of particle growth are significant. Intraparticle temperature gradients do appear to be negligible under normal reaction conditions. External boundary layer heat effects are studied for various operation conditions. The model predicts that there is no significant temperature rise of the polymeric particles, even in the case of large catalyst particles. The effect of deactivation of active sites on the rate of particle growth is also studied. (C) 1997 John Wiley & Sons, Inc. [References: 16]
机译:气相中的丁二烯聚合通过聚合物多层模型进行建模。研究了颗粒内质量和传热效果。催化剂尺寸和丁二烯扩散率对聚合物颗粒中单体浓度的径向分布以及颗粒生长速率的影响是显着的。在正常反应条件下,颗粒内的温度梯度似乎可以忽略不计。研究了各种操作条件下的外边界层热效应。该模型预测,即使在大催化剂颗粒的情况下,聚合物颗粒也不会出现明显的温度升高。还研究了活性位点失活对颗粒生长速率的影响。 (C)1997 John Wiley&Sons,Inc. [参考:16]

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