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  • 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

  • CIM
    Biological Monitoring and its Use in the Mining Industry

    By S. W. Stogran

    "Chemical and limited biological monitoring of mine and mill effluents are being used by regulatory agencies to monitor and control discharges to the environment. Amendments to the Federal Fisheries A

    Jan 1, 1994

  • CIM
    Biological pre-oxidation to enhance gold and silver recovery from refractory pyritic ores and concentrates

    By R. W. Lawrence, A. Bruynesteyn

    "Pre-oxidation of refractory pyritic concentrates by biological leaching to enhance the recovery of gold and silver in cyan ideation has been investigated. The results of laboratory tests on three con

    Jan 1, 1983

  • CIM
    Biological Preoxidation Leaching for Refractory Gold and Silver

    By R. W. Lawrence

    "Biological leaching can be used to enhance the recovery of gold and silver from refractory ores, concentrates and tailings. The method liberates precious metals associated with sulphide minerals such

    Jan 1, 1985

  • CIM
    Biological reduction of nitrate wastewater using a fluidized-bed bioreactor

    By C. W. Hancher, B. D. Patton, W. W. Pitt

    "There are a number of nitrate-containing wastewater sources, as concentrated as 30 wt % NO3 and as large as 2000 m3/day, in the nuclear fuel cycle. The biological reduction of nitrate in waste water

    Jan 1, 1980

  • CIM
    Biological Sulphide Production for Process and Environmental Applications

    By Lyn Jones, Mike Bratty, Rick Lawrence, David Kratochvil

    "The treatment of water is required at many mining operations to remove metals and prevent the discharge of contaminated water to the environment. In other cases, water treatment is used to provide be

    Jan 1, 2006

  • CIM
    Biomass Carbide Injection into Blast Furnace

    By H. Tsuruta, A. Fujibayashi, I. Sumi, A. Murao, R. Murai

    Injection of biomass into blast furnace as alternative reducing agent is so effective for the purpose of mitigation of carbon dioxide emissions from steel industries, because biomass is considered to

    Jan 1, 2015

  • CIM
    Biomineral Processing of High Apatite Containing Low Grade Indian Uranium Ore

    By Abhilash

    Uranium is conventionally extracted using a process that employs strong acid (H2SO4) and an oxidant (MnO2) as leaching agents. This method often creates environmental problems, requires large amounts

    Aug 1, 2010

  • CIM
    Biooxidation of a High Arsenic-Bearing Refractory Gold Ore

    By Linlin Tong, Xiangling Song, Guobao Chen, Zhenan Jin, Hongying Yang

    Biooxidation of a high arsenic-bearing refractory gold ore was investigated to determine the arsenic removal efficiency by the cultured bacteria and to examine the effect of biological pretreatment on

    Jan 1, 2014

  • CIM
    Biopolymer Addition to Boost Recovery and Throughput in Gold Leaching Processes. A Case Study from Antam Pongkor, Indonesia

    By Rolf Andreas Lauten, Adam Pratomo, Dani Ramdani, Helminton Sitanggang

    A universal challenge for the mineral processing industry is the diminishment of high grade ores. Instead, low grade ores, sometimes also containing problematic gangue minerals is the reality. With lo

    Jan 1, 2014

  • CIM
    Biopolymers for Anti-Scaling Applications in Leaching Processes

    By C. Bergstrand

    "Precipitation of gypsum and the formation of scale may pose a serious challenge in the leaching of several minerals. As an example, precipitated gypsum may form scale in the machines increasing the n

    Jan 1, 2017

  • CIM
    Bioreactor Systems for Treating Acid Mine Drainage

    By W. D. Gould, A. Kapoor

    Acid mine drainage (AMD) is characterized by low pH and high concentrations of sulfate and dissolved metals such as iron, manganese, aluminum, zinc, and copper. Chemical treatment of AMD achieves pH n

    Jan 1, 2004

  • CIM
    Biotechnological Recycling Of Precious and Rare Metals Sourced From End-Of-Life Products and Electronics

    By T. Nomura, N. Saitoh, K. Tamaoki, Y. Konishi

    We have developed new recycling technologies, based upon an eco-friendly biotechnology, in order to extract precious and rare metals sourced from end-of-life products and electronics. We have been foc

    Jan 1, 2014

  • CIM
    Biotechnological Solutions for the Treatment of Pickle Liquors

    By J. L. Huisman

    Bio(hydro)metallurgy is the latest development in the ongoing search for efficient and economic metal winning processes. In addition to bioleaching, other biotechnology-based applications are becoming

    Jan 1, 2006

  • CIM
    Biotechnology Processes for the Treatment of Gold Mill Effluents

    By A. Kapoor

    Gold mill effluents contain toxic pollutants such as cyanide (CN), thiocyanate (CNS), ammonia (NH4-N), and a variety of toxic metals. Various practical and economical technologies are in use for the r

    Nov 1, 2002

  • CIM
    Bird River Chromite Deposits, Manitoba

    By J. D. Bateman

    DURING the summer of 1942 several chromite deposits were discovered in the Lac du Bonnet district about eighty miles northeast of Winnipeg. The deposits are confined to the Bird River complex, a folde

    Jan 1, 1943

  • CIM
    Birdwing-Shaped REE Profiles and Nb/Ta, Hf/Sm Ratios in the Bondy Gneiss Complex, Grenville Province, Québec: Sensitive Geochemical Markers of Fossil Hydrothermal Systems in High-Grade Metamorphic Terrains

    By Weimin Fu

    Chondrite-normalized rare earth elements (REEs) profiles and high field strength elements (HFSEs) in rocks and minerals represent important tracers of geological processes. Of these the birdwing-shape

    May 1, 2003

  • CIM
    Bison and the oil sands industry

    By R. W. Pauls

    "Many tens of thousands of hectares of forested land will be disturbed and reclaimed in the surface mineable Athabasca oil sands area during the next few decades. The surface area disturbed by Syncrud

    Jan 1, 1999

  • CIM
    Bituminous Sands of Alberta

    By S. C. Ells

    Introduction An investigation of the bituminous sands of Alberta was begun by the Mines Branch, Department of Mines, in 1913. This investigation was interrupted during the period 1916-19, but was r

    Jan 1, 1925

  • CIM
    Bituminous Sands of Northern Alberta

    By S. C. Ellis

    THE bituminous sand of northern Alberta has already an extensive literature, and most of the reports dealing with the subject are still available (see Selected Bibliography at end of paper). A phenome

    Jan 1, 1937