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首页> 外文期刊>Chemical Engineering Science >Dynamic model development for residence time distribution control in high-impact polypropylene copolymer process
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Dynamic model development for residence time distribution control in high-impact polypropylene copolymer process

机译:高抗冲聚丙烯共聚物工艺中停留时间分布控制的动态模型开发

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Two steps are usually involved in producing high impact polypropylene copolymer in a continuous process.The first is to polymerize propylene using Ziegler-Natta type or more recently metallocene catalyst,and the second is to add ethylene-propylene rubber(EPR).A narrow residence time distribution(RTD)of polymer particles is an important process design and operational target in this process.The broadening of RTD will lead to a widening of copolymer composition distribution in which results in inferior product properties.There are several techniques to obtain a narrower RTD,including by controlling size of particles leaving a well-mixed reactor.In this paper,a dynamic polulation balance model to track polymer particle age and size is presented.The model is applied to a well-mixed slurry reactor linked to a classifier.Polymer particle growth kinetics including catalyst deactivation with particle age are incorporated.The model agrees well with steady-state analytical solutions and process data for particle age and catalyst efficiency.The classifier acts to significantly narrow particle age distribution.However,the system is very sensitive to small change in feed catalyst size,catalyst deactivation can cause build up of small polymer particles trapped in the system if the feed catalyst size is too low.As a 'soft sensor',the RTD information from the validated model provides valuable insight for operational support.Further applications include strategies of reactor control design and optimization of grade transition policy.
机译:连续生产高抗冲聚丙烯共聚物通常涉及两个步骤。第一步是使用Ziegler-Natta型或更新的茂金属催化剂聚合丙烯,第二步是添加乙烯-丙烯橡胶(EPR)。聚合物颗粒的时间分布(RTD)是此过程中的重要工艺设计和操作目标.RTD的扩大将导致共聚物组成分布的扩大,从而导致产品性能变差。本文通过建立动态跟踪平衡模型来追踪聚合物颗粒的年龄和尺寸。该模型适用于与分级机相连的良好混合的淤浆反应器。结合了包括催化剂失活和颗粒年龄在内的颗粒生长动力学。该模型与稳态分析溶液和过程分类器的作用是明显缩小颗粒的年龄分布。但是,该系统对进料催化剂尺寸的微小变化非常敏感,如果进料,催化剂失活会导致系统中捕获的小聚合物颗粒堆积催化剂尺寸太低。作为“软传感器”,来自验证模型的RTD信息为运营支持提供了宝贵的见识。进一步的应用包括反应堆控制设计策略和等级过渡策略优化。

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