1350 - 1360 |
The use of air tabling and triboelectric separation for separating a mixture of three plastics Dodbiba G, Sadaki J, Okaya K, Shibayama A, Fujita T |
1361 - 1372 |
Effect of carbon coatings on gold dissolution in the presence of sulphide and lead Tan H, Feng D, Lukey GC, van Deventer JSJ |
1373 - 1377 |
Collection zone kinetic model for industrial flotation columns Yianatos J, Bucarey R, Larenas J, Henriquez F, Torres L |
1378 - 1385 |
Interfacial studies of liquid sulphur during aqueous pressure oxidation of nickel sulphide Brown JA, Papangelakis VG |
1386 - 1391 |
Discrete element method (DEM) modelling of evolving mill liner profiles due to wear. Part I: DEM validation Kalala JT, Bwalya MM, Moys MH |
1392 - 1397 |
Discrete element method (DEM) modelling of evolving mill liner profiles due to wear. Part II. Industrial case study Kalala JT, Bwalya M, Moys MH |
1398 - 1404 |
Influence of aggregate stemming in blasting on the SAG mill performance Kojovic T |
1405 - 1411 |
Particle bed charge decay behaviour under high tension roll separation Ziemski M, Holtham PN |
1412 - 1420 |
Application of image processing and radial basis neural network techniques for ore sorting and ore classification Singh V, Rao SM |
1421 - 1422 |
Bio-leaching of valuable metals from marine nodules under anaerobic condition Li HR, Feng YL, Lu SC, Du ZW |
1423 - 1424 |
Re: "Coal-oil assisted flotation for the gold recovery" by Sen, S., Seyrankaya, A., Cilingir, Y., 2005. Minerals Engineering 18 (11), 1086-1092. Akcil A |
1424 - 1424 |
This letter is a response to Dr. Akeil's comments concerning a paper "Coal-oil assisted flotation for the gold recovery" Minerals Engineering 18 (11) (2005) 1086-1092. Seyrankaya A |