383 - 390 |
A methodology for determining the deportment of cyanide losses in gold plants Adams MD |
391 - 403 |
Immobilization of arsenic in crystalline form from aqueous solution by hydrothermal processing above 483.15K Mambote RCM, Reuter MA, van Sandwijk A, Krijgsman P |
405 - 410 |
Effect of operating conditions on the fungal decomposition of gold impregnated wood chips Martin W, Petersen FW |
411 - 422 |
Thermodynamic modelling of magnesium fluoride precipitation in concentrated zinc sulphate environment Booster JL, Van Sandwijk A, Reuter MA |
423 - 426 |
Cr(VI) generation during milling Beukes JP, Guest RN |
427 - 432 |
Bubble size measurement in flotation machines Chen F, Gomez CO, Finch JA |
433 - 437 |
The recovery of base metals by ion exchange resin Coetzee JW, Rejaldien MZ |
439 - 443 |
Gold losses from cyanide solutions part III: The recovery of absorbed gold from shale material Van Vuuren CPJ |
445 - 448 |
A fast determination of Fe3+/Fe2+ ratio in industrial minerals Mulaba-Bafubiandi AF, Pollak H, Mashlan M, Jancik D, Kholmetskii A |
449 - 450 |
Untitled Sekhar DMR |
450 - 451 |
Flotation rate measurements to optimize an operating circuit Agar GE |
452 - 452 |
Hydrothermal metallurgy: an overview of basic concepts and applications - Reply Mambote CR |