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  • TMS
    Improvements In Smelting And Refining Of Lead At Brunswick Smelting

    By M. D. Street

    Lead and zinc production commenced in 1966 at Brunswick Smelting using the Imperial Smelting Process. In 1972 the blast furnace was modified to produce lead bullion only which was refined to corroding

    Jan 1, 1983

  • TMS
    Principles of Sulfiae Smelting

    By N. J. Themelis

    The basic chemical, thermal and transport principles that underlie sulfide smelting of. copper, nickel and lead are reviewed. Two basic types of modern smelting processes are distinguished?: flash-sme

    Jan 1, 1983

  • TMS
    Catalysis And Synergism In The Reduction Smelting Of Lead Sulfide With Carbon And Lime

    By Y. K. Rao

    The direct reduction of lead sulfide with carbon in the presence of lime was investigated at several temperatures and under two different inert gas atmospheres. The catalyzed reduction kinetics were d

    Jan 1, 1983

  • TMS
    Lime-Enhanced Reduction of Metal Sulfides

    By P. M. Prasad

    The last two decades have witnessed the emergence of numerous hydrometallurgical and direct processing techniques for the extraction of some metals from pocketed/lean/complex sulfide ore deposits. A n

    Jan 1, 1983

  • TMS
    Current ,Commercial Sulphide Smelter Operations

    By V. P. Keran

    The lead and copper smelting processes employed by Mount Isa Mines Limited, Mount Isa, Australia, are used to illustrate an operating viewpoint of some problems and solutions encountered in existing c

    Jan 1, 1983

  • TMS
    Improved Processing Of Copper/Nickel Mattes

    By E. L. Frueh

    AMAX Base Metals Research & Development, Inc. has developed a process for treating copper-nickel mattes to produce copper cathodes and a pure nickel sulfate solution. In this process, the input matte

    Jan 1, 1983

  • TMS
    Oxygen Sprinkle Smelting At The Morenci Smelter

    By R. E. Johnson

    The No. 3 reverberatory furnace at Phelps Dodge. Corporation's Morenci, Arizona copper smelter first received oxygen from a new oxygen plant during October 1982 and began operation with oxygen-fu

    Jan 1, 1983

  • TMS
    Selective Roasting Of Complex Sulfide Material

    By Ph. Cauwe

    This paper presents the experience that NESA and MECHIM have gained about recovery of non ferrous and precious metals from complex sulfide materials. Processed materials are from natural deposits or

    Jan 1, 1983

  • TMS
    Activity Coefficient of Oxygen in Copper-Sulfur Melts

    By Shinya Otsuka

    Activity coefficient of oxygen in sulfide-rich and metal-rich melts in copper-sulfur binary were determined at 1423 and 1523 K by means of a modified coulometric titration technique using the followin

    Jan 1, 1983

  • TMS
    Converting Of Low-Copper High-Sodium Mattes

    By C. Ek

    In bismuth metallurgy, low-copper high-sodium mattes are by-produced. Different charges containing mixtures- of crude mattes, oxidized matte, and/or copper sulfide concentrate and/or copper silicate o

    Jan 1, 1983

  • TMS
    The Qsl-Process: A New Lead Smelting RouteReady For Commercialization

    By Peter Fischer

    A demonstration plant for QSL technology with a continuous through-put of up to 10 t/h concentrate has been in operation at the Berzelius smelter, Duisburg, Germany since early 1981. In the QSL-proces

    Jan 1, 1983

  • TMS
    Reduction Roasting Of Chalcopyrite Without SO2 Formation

    By A. R. Udupa

    The reduction roasting behavior of chalcopyrite has been investigated using various combinations of a desulfurizing agent, i.e., CaO or Na2CO3, and a reductant, i.e., CO, H2 or C. Using these, combina

    Jan 1, 1983

  • TMS
    Effects of caF2 and CaCl2 on Distribution of S Between Molten Copper and CaO-Fluxes

    By M. Hashimoto

    The equilibrium distribution ratios of sulfur between molten copper and CaO-fluxes containing caF2 and caC12 were determined in the range of 1300° to 1400° C under carbon monoxide. The rate of approac

    Jan 1, 1983

  • TMS
    Copper Pyrometallurgy: The Quest For An Environmentally Acceptable Continuous Process

    By J. C. Yannopoulos

    The quest for a continuous copper smelting and converting process, which has been going on for a long time, has not as yet reached its objective. The most recent efforts for the development of a cont

    Jan 1, 1983

  • TMS
    Studies Of The Vaporization Chemistry Of Arsenic In Sulfide Smelting Phases

    By R. D. Brittain

    In order to analyze and control the transport of harmful trace-element impurities in various smelting processes, it is necessary to have fundamental information about the chemical thermodynamic proper

    Jan 1, 1983

  • TMS
    Activities Of Pbs And Ags0.5 In High-Grade Copper Mattes

    By S. N. Sinha

    The distribution coefficients of lead and silver between copper and matte phases have been measured at two different temperatures. Experiments covered the ranges of 0.009-1.8, 0.07-0.13, and 0-11 wt p

    Jan 1, 1983

  • TMS
    Advances In Gas Cleaning Technology

    By P. D. Nolan

    Smelters operating under pollution control orders have become increasingly dependent upon the reliable operation of sulphuric acid plants and no factor affects the long term reliability of those plant

    Jan 1, 1983

  • TMS
    Availability Of Toxic Metals From Non-Ferrous Metallurgical Slags Using Various Testing Procedures

    By D. A. Robbins

    The Resource Conservation and Recovery Act. of 1976 (RCRA) requires testing of waste materials as part of the determination of whether these materials are classified and managed as hazardous wastes. T

    Jan 1, 1983

  • TMS
    Thermodynamics And Kinetics Of Cyclones Melting Of Metal Sulphides

    By I. Barin

    The thermodynamics of cyclone smelting of sulphidic copper ores is described using as example the production of copper matte with 75 wt % Cu. Equilibrium calcualtions and material and energy balances

    Jan 1, 1983

  • TMS
    Economics Of Copper Smelting And Pollution Control

    By R. M. Nadkarni

    This paper examines the broad' economic parameters of copper smelting by conventional and new smelting technology. Location, transportation of products to market and pollution control options are

    Jan 1, 1983