847 - 853 |
Assessment of true flotation and entrainment in the flotation of submicron particles by fine bubbles George P, Nguyen AV, Jameson GJ |
855 - 863 |
Flotation separation of carbonate from sulfide minerals, I: flotation of single minerals and mineral mixtures Liu Y, Liu Q |
865 - 878 |
Flotation separation of carbonate from sulfide minerals, II: mechanisms of flotation depression of sulfide minerals by thioglycollic acid and citric acid Liu Y, Liu Q |
879 - 890 |
Quantifying hydrophobicity of pyrite after copper activation and DTPI addition under electrochemically controlled conditions Hicyilmaz C, Altun NE, Ekmekci Z, Gokagac G |
891 - 896 |
The Magotteaux Mill((R)): investigating the effect of grinding media on pulp chemistry and flotation performance Greet CJ, Small GL, Steinier P, Grano SR |
897 - 901 |
The effect of hydrophobicity on the drainage of gangue minerals in flotation froths Ata S, Ahmed N, Jameson GJ |
903 - 911 |
Biosorption of Ni2+ from aqueous solution by a NaOH-treated bacterial dead Streptomyces rimosus biomass Selatnia A, Madani A, Bakhti MZ, Kertous L, Mansouri Y, Yous R |
913 - 923 |
Process for the recovery of cobalt and nickel in the presence of magnesium from sulphate solutions by Cyanex 272 and Cyanex 302 Tsakiridis PE, Agatzini-Leonardou S |
925 - 932 |
Precipitation of mixed metal residues from wastewater utilising biogenic sulphide Bhagat M, Burgess JE, Antunes APM, Whiteley CG, Duncan JR |
933 - 937 |
The application of natural zeolites for mercury removal: from laboratory tests to industrial scale Chojnacki A, Chojnacka K, Hoffmann J, Gorecki H |
939 - 942 |
Solvent extraction of Hf(IV) from acidic chloride solutions using Cyanex 302 Reddy BR, Kumar JR, Raja KP, Reddy AV |
943 - 947 |
Kinetic modeling for the bacterial leaching of chalcopyrite catalyzed by silver ions Wang M, Zhang Y, Deng T, Wang K |
949 - 951 |
Recovery of copper, nickel and cobalt from the leach liquor of a sulphide concentrate by solvent extraction Sahu SK, Agrawal A, Pandey BD, Kumar V |
953 - 956 |
Weibull partition surface representation for gravity concentrators Rao BV |