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PEPT Study of Particle Cycle and Residence Time Distributions in a Wurster Fluid Bed

机译:PEPT研究Wurster流化床中的颗粒循环和停留时间分布。

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Particle cycle and residence time distributions are critical factors in determining the coating quality in the Wurster process. Positron emission particle tracking experiments are performed to determine the cycle and residence times of particles in different regions of a Wurster fluid bed. The results show that particles tend to recirculate in and sneak out below from the Wurster tube. The experiments also show that a larger batch size leads to a shorter cycle time and a narrower cycle time distribution (CTD). It is possible to avoid recirculations and obtain a shorter cycle time and a narrower CTD by selecting the operating conditions appropriately or via equipment design. Experiments using binary mixtures of particles with a diameter ratio of 1.5 show that large particles have a longer cycle time than small particles and that the cycle time is shorter for mixtures with approximately equal amounts of small and large particles. (c) 2014 American Institute of Chemical Engineers AIChE J, 61: 756-768, 2015
机译:颗粒周期和停留时间分布是决定Wurster工艺中涂层质量的关键因素。进行正电子发射粒子跟踪实验以确定粒子在Wurster流化床不同区域的循环和停留时间。结果表明,颗粒倾向于从Wurster管中再循环并潜入下面。实验还表明,较大的批处理量会导致更短的循环时间和更窄的循环时间分布(CTD)。通过适当选择操作条件或通过设备设计,可以避免再循环并获得更短的循环时间和更窄的CTD。使用直径比为1.5的颗粒的二元混合物进行的实验表明,大颗粒比小颗粒具有更长的循环时间,并且对于大小相等的小颗粒和大颗粒的混合物,循环时间更短。 (c)2014美国化学工程师学会AIChE J,61:756-768,2015

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