137 - 137 |
Special Issue: 3rd International Workshop on Granulation: Granulation Across the Length Scales - Foreword Salman AD, Hounslow M |
138 - 140 |
Agglomeration from the sharp end Discussion York DW |
141 - 148 |
Manufacturing pharmaceutical granules: Is the granulation end-point a myth? Leuenberger H, Puchkov M, Krausbauer E, Betz G |
149 - 157 |
The kinetics of the granulation process: Right from the early stages Le PK, Avontuur R, Hounslow MJ, Salman AD |
158 - 164 |
Wet granule breakage in a breakage only high-hear mixer: Effect of formulation properties on breakage behaviour Liu LX, Smith R, Litster JD |
165 - 171 |
Quantitative proof of liquid penetration-involved granule formation in a high shear mixer van den Dries K, Vromans H |
172 - 176 |
A narrow size distribution on a high shear mixer by applying a flux number approach Boerefijn R, Juvin PY, Garzon P |
177 - 189 |
Kinetic models for granule nucleation by the immersion mechanism Hounslow MJ, Oullion M, Reynolds GK |
190 - 201 |
A combined experimental and computational study of wet granulation in a Wurster fluid bed granulator Rajniak P, Stepanek F, Dhanasekharan K, Fan R, Mancinelli C, Chern RT |
202 - 217 |
Comparison of fibre optical measurements and discrete element simulations for the study of granulation in a spout fluidized bed Link JM, Godlieb W, Tripp P, Deen NG, Heinrich S, Kuipers JAM, Schonherr M, Peglow M |
218 - 229 |
Comparison of numerical methods for solving population balance equations incorporating aggregation and breakage Kumar J, Warnecke G, Peglow M, Heinrich S |
230 - 237 |
Nucleation and growth in fluidised hot melt granulation Zhai H, Li S, Andrews G, Jones D, Bell S, Walker G |
238 - 244 |
Spheronization of solid lipid extrudates Reitz C, Kleinebudde P |
245 - 252 |
Particle-particle coating in a cyclomix impact mixer Ouabbas Y, Dodds J, Galet L, Chamayou A, Baron M |
253 - 262 |
Granulation of hydrophobic powders Hapgood KP, Khanmohammadi B |
263 - 269 |
Influence of mixing characteristics for water encapsulation by self-assembling hydrophobic silica nanoparticles Forny L, Saleh K, Pezron I, Komunjer L, Guigon P |
270 - 275 |
Effective Kawakita parameters for binary mixtures Frenning G, Nordstrom J, Alderborn G |
276 - 284 |
The effect of processing parameters on pharmaceutical tablet properties Sinka IC, Motazedian F, Cocks ACF, Pitt KG |
285 - 294 |
A comparative study of compaction properties of binary and bilayer tablets Wu CY, Seville JPK |
295 - 303 |
Steady states in granulation of pharmaceutical powders with application to scale-up Michaels JN, Farber L, Wong GS, Hapgood K, Heidel SJ, Farabaugh J, Chou JH, Tardos GI |
304 - 312 |
Effect of granulation scale-up on the strength of granules Hassanpour A, Kwan CC, Ng BH, Rahmanian N, Ding YL, Antony SJ, Jia XD, Ghadiri M |
313 - 317 |
Scale-up and control of binder agglomeration processes - Flow and stress fields Mort PR |
318 - 326 |
Influence of material properties on the agglomeration of water-soluble amorphous particles Palzer S |
327 - 331 |
Aspects of granulation in the chemical industry Flore K, Schoenherr M, Feise H |
332 - 342 |
ProCell technology: Modelling and application Jacob M |
343 - 356 |
Process Parameter Analysis and process understanding - Some industrial examples Nagy TA, Meszena ZG |
357 - 364 |
Single drop behaviour in a high shear granulator Chouk V, Reynolds G, Hounslow M, Salman A |
365 - 375 |
Microscopic interpretation of granule strength in liquid media Cheong YS, Adams MJ, Hounslow MJ, Salman AD |
376 - 384 |
Distribution and accessibility of binder in wet granules Stepanek F, Rajniak P, Mancinelli C, Chern RT, Ramachandran R |
385 - 393 |
LAS acid reactive binder: Wettability and adhesion behaviour in detergent granulation Germana S, Simons S, Bonsall J, Carroll B |