By Hede P.D.
During this publication you discover a evaluate of the theoretical stipulations for complex Granulation idea at Particle point.
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Extra resources for Advanced Granulation Theory at Particle Level
46, No. 3, pp. 529-539, 2000. X. : Population balance modelling of granulation with a physically based coalescence kernel, Chemical Engineering Science, No. 57, pp. 21832191, 2002. London. Imperial College London. uk, December 2005. Lödige. High-shear scaling-up meeting at Novozymes A/S by Horst Spittka from Lödige Process Technology, Novozymes A/S Bagsværd, 17th of January 2006. , Falk, L. : Modelling of the agglomeration in suspension process with multi-dimensional kernels, Powder Technology, No.
The behaviour of liquid bridges between two relatively moving particles, Powder Technology, No. 51, pp. 71-83, 1987. : Scale-up considerations in the fluid-bed process for controlled-release products, Pharmaceutical Technology, No. 12, pp. 46-52, 1988. : Problems and progress in particle processing, Development Technology, Chemical Innovation, 2000. : Toward rational design of powder processes, Powder Technology, No. 138, pp. 1-6, 2003. : A multi-scale approach to modelling and simulation of particle formation and handling processes, Proceedings of the 4th International Conference for Conveying and Handling of Particulate Solids, Budapest, Hungary, 2003.
130, pp. 8-13, 2003. : Comments on “the effect of capillary liquid on the force of adhesion between spherical solid particles”, Journal of Colloid Interface Science, No. 26 pp. 249, 1968. S. : Capillary Forces between Two Spheres with a Fixed Volume Liquid Bridge: Theory and Experiment, Langmuir, No. 21, pp. 10992-10997, 2005. , Baert, L. : Scaling up of the fluidized bed granulation process, International Journal of Pharmaceutics, No. 252, 197-206, 2003. : The status of population balances, Chemical Engineering, No.
Advanced Granulation Theory at Particle Level by Hede P.D.