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  • TMS
    Systematic Evaluation Of Copper Smelting Alternatives

    By W. P. lmrie

    The recent years have seen many copper smelting operations become uneconomic due to a combination of low metal prices, high energy and labor costs, environmental requirements and high investment costs

    Jan 1, 1983

  • TMS
    Recent Developments In Copper Hydrometallurgy (545152ab-dd31-48f5-87ef-31d1f77ae6a2)

    By John O. Marsden

    The past fifteen years have seen a number of important developments in copper hydrometallurgy, including the commercial application of biological heap leaching of secondary (chalcocite-dominant) coppe

    Jan 1, 2006

  • TMS
    Role Of Viscosity In Conversion Of Lead Slag Wastes Into Commercial Products

    By Ramana G. Reddy

    In the past, many lead-containing slags and wastes were stored in piles or landfills. However, shortages of landfill space as well as increased public, concern about the toxic nature of disposing lead

    Jan 1, 1995

  • TMS
    Production And Processes Of Sodium Pyroantimonate In China

    By Yang Tian-zu

    Sodium pyroantimonate which is widely used as the clarifier in the glass industry and as the synergist in anti-flaming industry respectively has a production history of about 30 years in China. At pr

    Jan 1, 2006

  • TMS
    Optimizing a Cascading Liberator

    By Bradford C. Wesstrom, Omar Araujo

    "Impurities from an electrolytic refinery are typically extracted from the electrolyte utilizing conventional electrowinning cells. These cells are arranged in series with cascading solution flow and

    Jan 1, 2012

  • TMS
    Relation of Process Mineralogy to Energy Issues

    By Jack A. Simon

    My remarks are directed at relating some of the mineralogical approaches mentioned in the preceding presentations to emerging energy issues. The assembling of this symposium on process mineralogy atte

    Jan 1, 1981

  • TMS
    New Clean Technologies to Improve Lead-Acid Battery Recycling

    By C. Frias, M. Garcia, G. Diaz

    Advances in hydrometallurgy promoted by Tecnicas Reunidas are providing increasingly simple and clean means for controlling the entire lead recycling chain. Used in parallel with pyrometallurgy, these

    Jan 1, 2000

  • TMS
    Refinement of the Secondary Lead Received from Accumulator Scrap

    By Viktor Ashikhin, Pavel Arkhipov, Yurii Zaikov

    "Lead alloys electro-winning from chloride melts was under investigation. Impurities concentration in cathode lead is strongly depended on temperature, electrolyte composition, anode current density.

    Jan 1, 2008

  • TMS
    It Is All About Energy (88263647-3ec2-49a5-a47f-99979bcdde6c)

    By Patrick R. Atkins

    Energy issues will have increasing impacts on decision making in all facets of society over the next few decades. Industrial users of energy and producers of products that affect energy use must be f

    Jan 1, 2006

  • TMS
    Disposal of a Lead Sludge

    By R. J. Wesely

    Non-ferrous smelters traditionally have a hot gas handling system. In these systems, the dust is captured as a dry material which is often recycled to the process. Some smelters use wet gas cleaning m

    Jan 1, 2000

  • TMS
    Application Of Ion Exchange Polymers Incopper Cyanide And Acid Mine Drainage

    By W. H. Jay

    Sulphide-containing minerals, particularly iron, lead to acid formation. In turn, the acid generates effluents such as copper acid drainage (AMD). The Berkeley Pit in Butte, Montana, USA and Mt Lyel

    Jan 1, 2003

  • TMS
    Biotechnology For Sustainable Hydrometallurgy

    By Johannes Boonstra

    High rate bacterial catalyzed processes can serve to improve hydrometallurgical operations. These solutions are not only economical but also environmental sustainable. With references around the globe

    Jan 1, 2003

  • TMS
    Recovery of Metal Aluminum from Aluminum Dross in DC Electric ARC Rotary Furnace

    By Biserka Lucheva, Tzonio Tzonev

    "Recycling of aluminum scrap and dross is significant in the economic and energy saving, as well as in the environmental protection. Recovery of metal aluminum depends on many factors. The aim of this

    Jan 1, 2008

  • TMS
    Recovering Heavy Metals from Spent HDP Catalysts

    By Zenon R. Llanos

    "The disposal of spent hydroprocessing (HDP) catalysts in the petroleum refining industry has been a concern in the past due to their classification as listed hazardous wastes. However, because these

    Jan 1, 2008

  • TMS
    Cost-Effective Magnesium Oxide Recycling For Economic Viability Of Magnesium Hydride Slurry Technology For Hydrogen Storage

    By Rachel De Lucas

    Current methods of hydrogen storage are an impediment to the transition of our energy infrastructure from a hydrocarbon to a hydrogen base. The transportation, handling, and storage costs of hydrogen

    Jan 1, 2006

  • TMS
    On-Line Analyzers In Hydrometallurgical Applications

    By Richard Krentz

    Two separate on-line analyzers are operated at the Corefco metals refinery. The first application is an on-line refractometer which measures the ammonium sulphate concentration in the primary feed sl

    Jan 1, 2003

  • TMS
    Comparison of Direct Pressure Leaching with Atmospheric Leaching of Zinc Concentrates

    By M. J. Collins, L. C. Trytten, K. R. Buban, I. M. Masters

    Both pressure leaching of zinc concentrate, in an autoclave, and atmospheric leaching, in stirred tanks, have been employed in the expansion of zinc production at plants employing roast-leach-electrow

    Jan 1, 2000

  • TMS
    New Anode Compositions For Copper Electrowinning And Copper Electrodeposition At High Current Density

    By J. L. Delplancke

    During copper electrowinning in sulphate electrolyte, intense oxygen evolution takes place at the anode. Lead alloy anodes are progressively replaced by dimensionally stable anodes in order to avoid t

    Jan 1, 1999

  • TMS
    High Rate Biotechnology To Produce Low Cost Sulphide For The Selective Recovery Of Metals From Acid Wastewater -Commercial Case Studies

    By R. W. Lawrence

    A high rate biological reduction technology has been developed to provide low cost hydrogen sulphide for various uses in water treatment and metallurgical processes. Commercial operations produce sul

    Jan 1, 2003

  • TMS
    Recovery of Metals from Molybdenite Concentrates by Hydrometallurgical Technologies

    By Kaixi Jiang, Lei Zhang, Sanping Liu, Yufang Wang, Xiaoping Zou

    "Molybdenite concentrates are usually treated by roasting, but low concentration SO2 pollution is a problem. Extraction of molybdenum and rhenium from molybdenite concentrates with a pressure oxidativ

    Jan 1, 2012