1 - 9 |
Preparation of iron oxide nanoparticles by mechanical milling Arbain R, Othman M, Palaniandy S |
10 - 18 |
Bioreduction of iron compounds as a possible clean environmental alternative for metal recovery Laguna C, Gonzalez F, Garcia-Balboa C, Ballester A, Blazquez ML, Munoz JA |
19 - 34 |
Computational study of the multiphase flow and performance of dense medium cyclones: Effect of body dimensions Wang B, Chu KW, Yu AB, Vince A, Barnett GD, Barnett PJ |
35 - 41 |
Recovery of germanium from real fly ash leachates by ion-exchange extraction Torralvo FA, Fernandez-Pereira C |
42 - 49 |
New model of screening kinetics Trumic M, Magdalinovic N |
50 - 57 |
The dependency of the critical contact angle for flotation on particle size - Modelling the limits of fine particle flotation Chipfunhu D, Zanin M, Grano S |
58 - 63 |
Cu-S flotation separation via the combination of sodium humate and lime in a low pH medium Chen JH, Li YQ, Chen Y |
64 - 69 |
Leaching of a zinc ore and concentrate using the Geocoat (TM) technology Soleimani M, Petersen J, Roostaazad R, Hosseini S, Mousavi SM, Najafi A, Vasiri AK |
70 - 76 |
The influence of the density of a gas-solid fluidized bed on the dry dense medium separation of lump iron ore Oshitani J, Kawahito T, Yoshida M, Gotoh K, Franks GV |
77 - 81 |
Study of residence time distribution and mill hold-up for a continuous centrifugal mill with various G/D ratios in a dry-grinding environment Cho HC, Kim KH, Lee H, Kim DJ |
82 - 84 |
The flotation separation of scheelite from calcite using a quaternary ammonium salt as collector Hu YH, Yang F, Sun W |
85 - 87 |
Pentlandite oxidation in the flotation of a complex nickel ore in saline water Peng Y, Wang B, Bradshaw D |
88 - 90 |
Effect of magnetic field orientation on high gradient magnetic separation performance Chen LZ |