Citation: Ta. Fowler et Fk. Crundwell, The role of Thiobacillus ferrooxidans in the bacterial leaching of zinc sulphide, PROCESS MET, 9, 1999, pp. 273-282
Citation: R. Guay et al., Chalcopyrite leaching by Thiobacillus ferrooxidans : effect of shock activation on chalcopyrite surface characteristics and copper solubilization, PROCESS MET, 9, 1999, pp. 327-336
Citation: T. Cabral et I. Ignatiadis, Mechanistic study of the pyrite-solution interface during the oxidative bacterial dissolution of pyrite (FeS2) by using electrochemical techniques, PROCESS MET, 9, 1999, pp. 357-366
Citation: W. Krebs et al., Optimization of metal leaching efficiency of fly ash from municipal solid waste incineration by sulfur oxidizing bacteria, PROCESS MET, 9, 1999, pp. 377-386
Citation: D. Kupka et I. Kupsakova, Iron (II) oxidation kinetics in Thiobacillus ferrooxidans in the presence of heavy metals, PROCESS MET, 9, 1999, pp. 387-396
Authors:
Wiertz, JV
Lunar, R
Maturana, H
Escobar, B
Citation: Jv. Wiertz et al., Bioleaching of copper and cobalt arsenic-bearing ores: a chemical and mineralogical study, PROCESS MET, 9, 1999, pp. 397-404
Citation: C. Loayza et al., Laboratory biooxidation tests of arsenopyrite concentrate for the Tamboraque industrial plant, PROCESS MET, 9, 1999, pp. 405-410
Citation: Rm. Nyashanu et al., The effect of ore mineralogy on the speciation of arsenic in bacterial oxidation of refractory arsenical gold ores., PROCESS MET, 9, 1999, pp. 431-441
Citation: N. Deo et al., Selective biodissolution of calcium and iron from bauxite in the presence of Bacillus polymyxa, PROCESS MET, 9, 1999, pp. 463-472
Authors:
Mazuelos, A
Palencia, I
Romero, R
Rodriguez, G
Carranza, F
Citation: A. Mazuelos et al., Design variables in high efficiency reactors for the biooxidation of ferrous iron in solution, PROCESS MET, 9, 1999, pp. 501-510