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Bioleaching of Chalcopyrite with Thermophiles: Temperature-pH-ORP DependenceBy J. Vilcáez
The copper extraction yield from thermophilic bioleaching of chalcopyrite depends on temperature, pH, and the oxidation-reduction potential (ORP), as well as the activity of the microbe used. We studi
Jan 1, 2014
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Bioleaching of Copper Sulphides Flotation Concentrate Using Consorptium of Mesophiles and Termophiles MicroorganismsBy Carlos Eduardo Gomes de Souza, Luis G. S. Sobral, Paulo A. Medeiros da Silva, Selma G. F. Leite, Renata de B. Lima
"The use of mixed cultures of acidophilus microorganisms that act in different temperature ranges, aims at speeding up the digestion of chalcopyrite, highly refractory sulphide mineral, the major mine
Jan 1, 2008
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Bioleaching of Copper Sulphides in the Presence of Fluoride-Containing Gangue MineralsBy V. A. Leão, M. L. M. Rodrigues, L. C. Sicupira, I. C. B. Rodrigues, T. C. Veloso
Brazilian sulphide ores can contain a significant content of chloride and fluoride, which are harmful to bacteria and thus bioleaching. This work summarizes a four-year research investigation on the e
Jan 1, 2014
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Bioleaching of electrolytic manganese residue by silicate bacteria, and optimization of parameters during the leaching process Mining, Metallurgy and ExplorationBy Y. Lv, H. Ye, D. Du
Electrolytic manganese residue (EMR) is a kind of industrial solid waste with high silicon content that contains harmful metal elements such as chromium (Cr), copper (Cu), lead (Pb), cadmium (Cd), nic
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Bioleaching Of Gold Pyrite Tailings With Adapted BacteriaBy Y. A. Attia
Auriferous sulfide ores often contain very finely disseminated gold and other precious metal particles inside the sulfide crystals. The encapsulation of precious metal particles gives rise to the refr
Jan 1, 1987
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Bioleaching of Gold Refractory Arsenopyrite Rich Sulphide Concentrate: Laboratory and Pilot Case StudiesBy D. Morin
A general study of gold refractory arsenopyrite-pyrite concentrate bioleaching has been carried out including two continuous bioleach testworks at different sizes, namely one at a laboratory scale wit
Jan 1, 1991
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Bioleaching of iron-stained sandsBy A. F. Neil, A. S. Bahaj, P. Watkins, P. M. Hyslop, C. E. Kirby, P. A. B. James
The results of initial work indicate that for 3 of the 5 quarry sands bioleaching reduces the iron oxide content to a commercially acceptable 0.035 wt% Fe20 3, although the time taken to achieve this
Jun 18, 1905
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Bioleaching of Low Grade Sulphide Ore in Column ReactorsBy Jae-Chun Lee, Sadia Ilyas
We investigate the technical feasibility of bioleaching of metals from low grade sulphidic ore. Experiments were conducted with an adapted consortium of Sulfobacillus thermosulfidooxidans and Thermopl
Jan 1, 2014
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Bioleaching of Manganese from Ores Using Heterotrophic MicroorganismsBy E. G. Noble
The potential for using heterotrophic microorganisms to solubilize manganese from low-grade domestic ores is being assessed at the Reno Research. center, U.S. Bureau of Mines. More than 90 pct of the
Jan 1, 1991
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Bioleaching of Marmatite Using Moderately Thermophilic BacteriaBy H. B. Zhou
The process of bioleaching marmatite using moderately thermophilic bacteria has been studied in this research by comparing marmatite leaching performance of mesophilic bacteria and moderately thermoph
Jan 1, 2014
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Bioleaching of Marmatite with Various Mixed Cultures of MicroorganismsBy Z. Y. Lan
Bioleaching of marmatite with various mixed cultures of microorganisms was investigated. The experiments were carried out in shaking flasks with iron-free nutrient and the pulp density of 10% wt/vol a
Jan 1, 2014
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Bioleaching of Nickel from Olivine Using Chemoheterotrophic Fungi and BacteriaBy A. Monballiu, J. A. Martens, Y. W. Chiang, A. Van Audenaerde, R. M. Santos, T. Van Gerven, B. Meesschaert
In this work, bioleaching of non-sulphidic materials by applying chemoheterotrophic bacteria and fungi is studied. It was found that the tested fungus, Aspergillus niger, leached substantially more ni
Jan 1, 2014
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Bioleaching Of Nickel Laterite Ore Using Halotolerant Aspergillus Foetidus Under Saline ConditionsBy Vijaya Thangavelu
Biological leaching of low-grade nickel laterite is based on a non-traditional leaching of oxide minerals using heterotrophic micro-organisms. The organisms solubilise metals by excreting organic acid
Jan 1, 2006
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Bioleaching of Nickel-Cobalt Oxide OresBy P Tzeferis
An exploratory laboratory work was carried out on microbial leaching of poor non-sulphide nickel ores, not amenable to conventional mineral processing operations. The results have shown that domestic
Jan 1, 1997
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Bioleaching of Pyrrhotite Tailings for Ni Extraction- Insights into an Adaptive Evolution StudyBy Cheryl Devine, Radhakrishnan Mahadevan, Vladimiros G. Papangelakis, Srinath Garg
The microbial-mediated recovery of valuable metals locked in mining wastes presents an economical alternative to conventional hydrometallurgical processes. The present study investigated the bioleachi
Jan 1, 2015
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Bioleaching of Pyrrhotite Tailings for Ni Extractioninitial Scoping TestsBy E. Krause, V. G. Papangelakis, S. Garg, R. Mahadevan, E. Edwards
"Bioleaching uses iron and sulfur-oxidizing bacteria to extract base metals from sulfide minerals. As bioleaching involves breaking the iron-sulfur bonds by ferric attack, the biologically mediated ra
Jan 1, 2012
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Bioleaching Of Refractory Gold Concentrates At High Pulp Densities In A Non-Conventional Rotating Drum ReactorBy M. N. Herrera
The bioleaching of mineral sulfide pulps in a bench-scale rotating drum reactor has been studied. The reactor includes horizontal paddles in the inner wall for lifting of the mineral pulp. The perform
Jan 1, 1997
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Bioleaching of Sulfide Concentrates and Ores: Study of Refractory Gold and Non-Ferrous Base Metals OresBy Pierre Ollivier, Dominique Morin
A general study of gold refractory arsenopyrite pyrite concentrate bioleaching has been carried out including two continuous bioleach testworks at different sizes, namely one at a laboratory scale wit
Jan 1, 1990
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Bioleaching of Sulfide Ores- Distinguishing Between Indirect and Direct MechanismsBy Michael L. Free
Bacterial oxidation of an arsenopyritic gold-ore .concentrate was carried out with continuous-flow .operation in 14-liter, mechanically agitated reactors. Samples from the slurry reactors were separat
Jan 1, 1991