1 - 1 |
Special issue - UEF Conference on Solid-Liquid Separation Systems - Foreword Concha FA |
3 - 12 |
Bridging flocculation studied by light scattering and settling Glover SM, Yan YD, Jameson GJ, Biggs S |
13 - 22 |
Aggregate structures formed via a bridging flocculation mechanism Biggs S, Habgood M, Jameson GJ, Yan YD |
23 - 30 |
The structure and strength of depletion force induced particle aggregates Yan YD, Burns JL, Jameson GJ, Biggs S |
31 - 36 |
Cationic microparticle based flocculation and retention systems Yan ZG, Deng YL |
37 - 42 |
Estimate of sludge floc permeability Wu RM, Tsou GW, Lee DJ |
43 - 49 |
Enhanced flocculation of colloidal dispersions by polymer mixtures Csempesz F |
51 - 63 |
New equipment for detection of polymer induced flocculation of cellulosic fibres by using image analysis - application to microparticle systems Wagberg L, Eriksson J |
65 - 72 |
Optimization of slurry flocculation and dewatering based on electrokinetic and rheological phenomena Dentel SK, Abu-Orf MM, Walker CA |
73 - 79 |
A new method for the reconstruction of the particle radius distribution function from the sedimentation curve Parchevsky KV |
81 - 89 |
Stochastic sedimentation and hydrodynamic diffusion Tory EM |
91 - 104 |
Numerical methods for the simulation of the settling of flocculated suspensions Burger R, Evje S, Karlsen KH, Lie KA |
105 - 117 |
Applications of the phenomenological theory to several published experimental cases of sedimentation processes Burger R, Concha F, Tiller FM |
119 - 133 |
On boundary conditions and solutions for ideal clarifier-thickener units Diehl S |
135 - 140 |
Discrete sedimentation model for ideal suspensions Quispe J, Concha F, Toledo PG |
141 - 148 |
Consolidation and aggregate densification during gravity thickening Farrow JB, Johnston RRM, Simic K, Swift JD |
149 - 155 |
Recent developments in techniques and methodologies for improving thickener performance Farrow JB, Fawell PD, Johnston RRM, Nguyen TB, Rudman M, Simic K, Swift JD |
157 - 165 |
Semi-batch test of sedimentation. Application to design Font R, Laveda ML |
167 - 175 |
Hydrodynamic parameters from the Michaels and Bolger method Font R, Perez M |
177 - 188 |
Phenomenological foundation and mathematical theory of sedimentation-consolidation processes Burger R |
189 - 195 |
Filtration by falling particles Chandler JL |
197 - 201 |
Suspension concentration profiles during rapid gravity filter backwashing Hall D, Fitzpatrick CSB |
203 - 214 |
The uses of non-steady-state membrane characterisation techniques for the study of transport properties of active layers of nanofiltration membranes: theory with experimental examples Yaroshchuk AE, Ribitsch V |
215 - 220 |
Use of material coordinates in porous media solute and water flow Smiles DE |
221 - 231 |
Pore structure and network analysis of filter cake Lin CL, Miller JD |
233 - 236 |
Cake filtration theory and practice Mayer E |
237 - 244 |
Crossflow filtration testing of INEEL radioactive and non-radioactive waste slurries Mann NR, Todd TA |
245 - 249 |
Dynamic cross flow filtration Bott R, Langeloh T, Ehrfeld E |
251 - 256 |
A critical analysis of the fish hook effect in hydrocyclone classifiers Nageswararao K |
257 - 265 |
Axial symmetric flow model for a flat bottom hydrocyclone Collantes J, Concha F, Chine B |
267 - 273 |
Flow patterns in conical and cylindrical hydrocyclones Chine B, Concha F |
275 - 282 |
The hydrodynamics of a hydrocyclone based on a three-dimensional multi-continuum model Nowakowski AF, Kraipech W, Williams RA, Dyakowski T |
283 - 288 |
Sub-micron particle dewatering using hydrocyclones Pasquier S, Cilliers JJ |
289 - 293 |
Experimental hydrocyclone coping models Heiskanen K |
295 - 303 |
Evaluation of hydrocyclone models for practical applications Chen W, Zydek N, Parma F |