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Population balance modelling of granulation with a physically based coalescence kernel
Authors:L. X. LiuJ. D. Litster
Affiliation:Department of Chemical Engineering, University of Queensland, St Lucia, Queensland 4072, Australia
Abstract:It was previously published by the authors that granules can either coalesce through Type I (when granules coalesce by viscous dissipation in the surface liquid layer before their surfaces touch) or Type II (when granules are slowed to a halt during rebound, after their surfaces have made contact) (AIChE J. 46 (3) (2000) 529). Based on this coalescence mechanism, a new coalescence kernel for population balance modelling of granule growth is presented. The kernel is constant such that only collisions satisfying the conditions for one of the two coalescence types are successful. One constant rate is assigned to each type of coalescence and zero is for the case of rebound. As the conditions for Types I and II coalescence are dependent on granule and binder properties, the coalescence kernel is thus physically based. Simulation results of a variety of binder and granule materials show good agreement with experimental data.
Keywords:Granulation   Coalescence   Rebound   Population balance model   Coalescence kernel   Granule size distribution
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