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Modeling a fluidized-bed reactor for the catalytic polymerization of ethylene:particle size distribution effects

机译:模拟乙烯催化聚合的流化床反应器:粒度分布效应

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Particle size distributions in the output stream of commercial,fluidized-bed reactors for ethylene polymerization are analyzed using a mathematical model.The impact on the overall reactor performance of the universe of sizes for the particles in the bed,with only a fraction of them being extracted in the product flow,is studied.For the output stream,product size distribution is modeled using both triangular and generalized gamma functions.Extraction system parameters are employed to model the particle quantity and sizes.The importance of the proper modeling of the extraction system is shown through the analysis of the effects several output schemes have on the particle size distribution inside the fluidized-bed.Some of the main reactor variables,such as yield and temperature,are studied for several distributions.Operating variables,such as catalyst feed rate,are varied according to the reactor capacity in a typical,12 meter bed,130,000 ton/year reactor.Predictions indicate higher output rates for higher catalyst loads,as expected.A shift towards smaller particle sizes in the product and in the bed is observed when increasing catalyst load.Bed fluidization and heat exchange conditions are shown as affected by size distributions.Results show that it is appropriate to include both product and bed particle diameter distribution when studying the reactor performance.
机译:使用数学模型分析了用于乙烯聚合的工业化流化床反应器输出流中的粒度分布。床中颗粒尺寸对宇宙整体整体反应器性能的影响,其中只有一小部分是对于输出流,使用三角函数和广义伽玛函数对产品尺寸分布进行建模。采用萃取系统参数对颗粒数量和尺寸进行建模。正确建模萃取系统的重要性通过分析几种输出方案对流化床内部粒度分布的影响来显示。研究了一些主要反应器变量(例如产率和温度)的几种分布。操作变量(例如催化剂进料速率)在一个典型的12米床,130,000吨/年的反应堆中,反应堆的容量因反应堆容量而异。如所预期的,较高的催化剂负载量的t速率。当增加催化剂负载量时,观察到产物和床中的颗粒尺寸向较小的方向移动。床的流化和热交换条件受尺寸分布的影响。结果表明它是合适的研究反应堆性能时,应包括产品和床的粒径分布。

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