203 - 211 |
Effect of pressure on loop seal operation for a pressurized circulating fluidized bed Cheng LM, Basu P |
212 - 219 |
Shock waves interaction with granular materials Levy A |
220 - 229 |
Investigation of paste flow using positron emission particle tracking Wildman RD, Blackburn S, Benton DM, McNeil PA, Parker DJ |
230 - 242 |
Influence of horizontal tube banks on the behavior of bubbling fluidized beds 1. Bubble hydrodynamics Hull AS, Chen ZM, Fritz JW, Agarwal PK |
243 - 259 |
Detection and characterization of piston flow regime in three-phase fluidized beds Maucci E, Briens CL, Martinuzzi RJ, Wild G |
260 - 264 |
Arsenic removal through the decrepitation of colemanite ores Arslan F, Arslan C, Celik MS |
265 - 273 |
Determination of non-spherical particle terminal velocity using particulate expansion data Arsenijevic ZL, Grbavcic ZB, Garic-Grulovic RV, Zdanski FK |
274 - 285 |
Continuous drying and dehydration of sodium carbonate monohydrate in a fluidized bed Chen ZM, Yang T, Wu WY, Agarwal PK |
286 - 291 |
A theoretical model for estimation of drag force in the flow of non-newtonian fluids around spherical solid particles Ceylan K, Herdem S, Abbasov T |
292 - 296 |
Fine-grinding characteristics of hard materials by attrition mill Shinohara K, Golman B, Uchiyama T, Otani M |
297 - 299 |
Experimental study on the flooding of fine powders Jing S, Li HZ |
300 - 301 |
Moving packed bed phenomenon in three-phase fluidization Fan LS |
301 - 301 |
Moving packed bed phenomenon in three-phase fluidization -Reply Maucci E, Briens CL, Martinuzzi RJ, Wild G |