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  • TMS
    Bioleaching of Sulfide Ores- Distinguishing Between Indirect and Direct Mechanisms

    By 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

  • AUSIMM
    Bioleaching of Valuable Metals from Waste Cathode Materials of the Lithium Ion Battery Industry Using Acidithiobacillus ferrooxidans

    By D E. Ralph, D-J Kim, G-J Ahn, Y-H Rhee

    The amount of discarded dry batteries are presently found to be increasing globally and waste cathode active materials of the lithium ion battery industry are among them. Hydrometallurgical operations

    Jan 1, 2006

  • TMS
    Bioleaching of Waste Nickel Condenser Powder

    By Yasuo Kudo, Wu, Hayato Sato, Hiroshi Nakazawa, Shouming

    "In order to recover copper from a waste nickel condenser powder, bioleaching experiments were carried out using Thiobacillus ferrooxidans in a shaking flask. The content of nickel and copper in the w

    Jan 1, 2000

  • AUSIMM
    Bioleaching of Weathered Saprolite - Heavy Metal Adaptation Mechanisms of Aspergillus foetidus

    Bioleaching of Weathered Saprolite - Heavy Metal Adaptation Mechanisms of Aspergillus foetidus Nickel laterite ores remain important to the future supply of Ni and Co as they contain the bulk of know

    Sep 13, 2010

  • IMPC
    Bioleaching Performances Comparison between a Series of Mechanically Agitated Tanks and a Bubble Column

    By F Battaglia-Brunet, D. H. Morin, Foucher S. ’

    In the mineral-processing field, bioleaching of metal sulphide concentrates is currently operated in very large mechanically agitated tanks. Such bioreactors have considerable requirements in terms of

    Jan 1, 2003

  • IMPC
    Bioleaching Performances Comparison Between a Series of Mechanically Agitated Tanks and a Bubble Column (c65c1c77-589b-410b-821a-7910f3ed8f98)

    By Morin D. H., Battaglia-Brunet F., D'Hugues P.

    "In the mineral-processing field, bioleaching of metal sulphide concentrates is currently operated in very large mechanically agitated tanks. Such bioreactors have considerable requirements in terms o

    Jan 1, 2003

  • SME
    Bioleaching Process For Bougainville Copper Limited

    By Kevork Chouzadjian, Gary Davis, Nicholas Katsikaros, Bruce Kelley, Mellie Mavatoi

    A process has been developed to recover gold and copper from two waste materials at the Bougainville Copper Limited mine in Papua New Guinea. It involves the bioleaching, in reactors, of a pyrite conc

    Jan 1, 1990

  • CIM
    Bioleacidng of Fine Low Grade Copper Ores

    By M. Oliazadeh

    The bioleaching of fine low grade copper sulfide ore is described. A sample of ground (> 1 mm) copper ore from Sarcheshmeh, Iran, was subjected to a series of agglomeration procedures and subsequently

    Jan 1, 2007

  • AUSIMM
    BioLix ù An Alternative to Cyanide for the Extraction of Precious Metals From Ore

    By L C. Thompson

    BioLix is the term for a new class of biologically-derived lixiviants for precious metals (gold and silver) recovery. BioLix can be used as an alternative to cyanide on virgin and spent ores. The BioL

    Jan 1, 2004

  • IIMP
    Biolixiviación clorurada como opción tecnológica para tratamiento de minerales sulfurados de cobre

    By Elmer Pabel Huayna Peraltilla

    El proceso de lixiviación es un método para el tratamiento de minerales sulfuros y sulfuros mixtos que consiste en la utilización de un consorcio microbiano acidófilo y una solución rica en cloruro de

    Sep 1, 2013

  • CIM
    Biological Alkalinity Generation in Acid Mine Drainage

    By M. Kalin

    "Ecological Engineering and Biological Polishing technology is a decommissioning approach for inactive coal, uranium and base metal operations. To improve acid mine drainage water some fundamental asp

    Jan 1, 1991

  • SME
    Biological Column Leaching Of Three Kids Manganese Ore

    By D. L. Lampshire

    Biological leaching using native heterotrophic bacteria was studied by the U.S. Bureau of Mines as a means of extracting manganese from a domestic low-grade wad ore. Column heap leaching simulation te

    Jan 1, 1993

  • TMS
    Biological Cyanide Degradation

    By D. J. Adams

    Cyanide heap leaching is the predominant technology used in processing low-grade gold ores. During closure ora heap leach operation, residual cyanide must be removed from the process and waste solutio

    Jan 1, 1998

  • SME
    Biological Cyanide Destruction In Mineral Processing Waters

    By T. Maniatis, T. Pickett, B. Wahlquist

    Biological destruction of cyanide in mining waters has been demonstrated effective in the lab and in the field. Applied Biosciences Corp.’s ABMet water treatment technology is used in the mining and o

    Jan 1, 2004

  • TMS
    Biological Degradation Of Solvent Extraction Circuit Plant Organic

    By Nelson Collao I.

    Loss of the organic phase from solvent extraction circuits is a major cost factor for SXEW operations. Recognized sources of loss include evaporation, entrainment, and biological degradation. The me

    Jan 1, 2003

  • SME
    Biological Environmental Impacts Of Copper-Nickel Development In Minnesota

    By Robert H. Poppe

    The Regional Copper-Nickel Study examined the potential impacts of copper-nickel sulfide mining, concentrating and smelting operations in northeastern Minnesota and gathered extensive monitoring data

    Jan 1, 1980

  • SME
    Biological Field Treatment Applications in Gold Heap Leach Closures

    By Leslie C. Thompson

    The heap leach process used for recovering gold from oxide and sulfide ores is operated as a closed circuit system in which the cyanide process solutions are continuously recy­cled. In a well-designed

    Jan 1, 1990

  • TMS
    Biological Fluegasdesulpurization: Sustainable, Effective And Cost-Efficient

    By J. Huisman

    With the introduction of ever-stricter environmental operating guidelines, capital expenditure restrictions and operational budget cutbacks, the biological method of SO2 removal becomes more and more

    Jan 1, 2005

  • SME
    Biological Leaching Of Manganese Ores

    By E. G. Noble

    Microbial leaching is being investigated as a method for recovering the metal values from a domestic low-grade manganese wad ore. Early work showed that heterotrophic microorganisms present in the ore

    Jan 1, 1991

  • CIM
    Biological Leaching of Mill Products

    By C. C. Walden, D. W. Duncan, P. C. Trussell

    Thiobacillus ferrooxidans released copper from -400-mesh chalcopyrite at a rate of 54 mg/I/hr. Any flotation chemicals remaining on the concentrate did not inhibit the leach rate. Zinc rougher tailing

    Jan 1, 1966