Liu Huolong, Li Mingzhong
School of pharmacy, De Montfort University, Leicester LE1 9BH, UK.
School of pharmacy, De Montfort University, Leicester LE1 9BH, UK.
Int J Pharm. 2014 Nov 20;475(1-2):256-69. doi: 10.1016/j.ijpharm.2014.08.057. Epub 2014 Aug 30.
In this work a two-compartmental population balance model (TCPBM) was proposed to model a pulsed top-spray fluidized bed granulation. The proposed TCPBM considered the spatially heterogeneous granulation mechanisms of the granule growth by dividing the granulator into two perfectly mixed zones of the wetting compartment and drying compartment, in which the aggregation mechanism was assumed in the wetting compartment and the breakage mechanism was considered in the drying compartment. The sizes of the wetting and drying compartments were constant in the TCPBM, in which 30% of the bed was the wetting compartment and 70% of the bed was the drying compartment. The exchange rate of particles between the wetting and drying compartments was determined by the details of the flow properties and distribution of particles predicted by the computational fluid dynamics (CFD) simulation. The experimental validation has shown that the proposed TCPBM can predict evolution of the granule size and distribution within the granulator under different binder spray operating conditions accurately.
在这项工作中,提出了一种双室总体平衡模型(TCPBM)来模拟脉冲顶喷流化床制粒过程。所提出的TCPBM通过将制粒机划分为润湿室和干燥室这两个完全混合的区域,考虑了颗粒生长的空间非均匀制粒机制,其中在润湿室假定为团聚机制,在干燥室考虑破碎机制。在TCPBM中,润湿室和干燥室的尺寸是恒定的,其中床层的30%为润湿室,70%为干燥室。润湿室和干燥室之间颗粒的交换速率由计算流体动力学(CFD)模拟预测的颗粒流动特性和分布细节确定。实验验证表明,所提出的TCPBM能够准确预测在不同粘结剂喷雾操作条件下制粒机内颗粒尺寸和分布的演变。