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  • CIM
    Lead Blast Furnace Feeding at Cominco

    By E A. Mitchell

    In the fall of 1961, Cominco dis-carded its long-established system of feeding the lead blast furnaces by narrow-gauge tram and V-cars, and installed an elevated monorail bucket system. This system au

    Jan 1, 1963

  • AIME
    Lead Coating of Steel

    By J. L. Bray

    LEAD has often been suggested as a protective coating for iron and steel. Such a protective coating should possess: (1) good adhesion, (2) durability, (3) ease of application, (4) freedom from pinhole

    Jan 1, 1937

  • SME
    Lead Contamination At Old Smelter Sites In The West: The Socorro, New Mexico, Case History

    By G. S. Austin

    Soil next to an abandoned smelter near Socorro, New Mexico, has the highest Pb concentration in the clay-size fraction, although this fraction accounted for only 1 to 3 wt. % of the soil. The depth of

    Jan 1, 1992

  • TMS
    Lead in the 1990s: Continuing Growth or Beginning of the End?

    By Jeffrey L. Zelms

    Environmental issues and how they are addressed -- or not addressed -- by the lead industry in the 1990s will determine the eventual fate of lead mining in both the U.S. and worldwide. Clearly, govern

    Jan 1, 1990

  • AIME
    Lead in the Depression

    By Clinton H. Crane

    IN October, 1925, J. R. Finlay delivered an address entitled, "The Future Price of Lead." Lead was then selling at 8.85c. and Mr. Finlay and most of the rest of us were concerned about the shortage. N

    Jan 1, 1932

  • AIME
    Lead Metallurgists

    By W. T. Isbell

    Although the pressure to meet the heavy demand for lead still took precedence over new metallurgical developments in the field of roasting, smelting, and refining of lead in 1948 there nevertheless ha

    Jan 1, 1949

  • AIME
    Lead Metallurgists Work for Economies

    By G. E. Johnson

    LEAD SMELTERS AND REFINERS in 1932 were confronted with the problem of adjusting operations and costs to curtailed production and consumption at reduced prices, a problem which has been partially solv

    Jan 1, 1933

  • AIME
    Lead Mining In The Mississippi Valley

    The Mississippi river was discovered by French explorers that came southwestward, by way of the Great Lakes, from eastern Canada. Vignan, Joliet, De Champlain, and others of the French pioneers in the

    Jan 1, 1932

  • CIM
    Lead Recovery from Waste CRT Glass by Hydrofluoric Acid and Electrochemical Treatments

    By T Nakamura, M. Itoh

    Most of the used cathode ray tube (CRT) glass in Japan, which contains lead oxide, was exported and recycled in overseas factories of new CRTs. However, domestic treatment and recycling of waste CRT g

    Jan 1, 2011

  • TMS
    Lead Recycling Utilising Short Rotary Furnaces

    By H. Forrest

    Lead smelting at Cookson Industrial Materials was formerly carried out using a combination of Blast and Reverberatory Furnaces. In the late 70' s these furnaces were replaced by two 20 tonne capa

    Jan 1, 1990

  • SME
    Lead Reduction In Ambient Air: Technical Feasibility And Cost Analysis At Domestic Primary Lead Smelters And Refineries

    By R. D. Smith

    The Bureau of Mines (BOM) evaluated the technology, capital investment, and annual operating costs of emission control for further reductions of lead in ambient air at the East Helena, Montana, smelte

    Jan 1, 1986

  • AIME
    Lead Refined Electrolytically at the East Chicago Plant

    By F. C. Smyers, E. W. Merrick

    ALTHOUGH the zinc and pyrite concentrates produced at Midvale go to other companies, the United States Smelting Refining and Mining Company smelts and refines its own lead. Refining is the first step

    Jan 1, 1948

  • AIME
    Lead Refining at the Bunker Hill Smelter of the Bunker Hill and Sullivan Mining and Concentrating Co.

    By Alfred Beasley

    LEAD-REFINING practice at the. Bunker Hill differs to some extent from that of other United States refineries using the Parkes process, in that the Bunker Hill-has reverted to a custom used years ago

    Jan 1, 1930

  • TMS
    Lead Removal by Ion Exchange

    By P. Meyers, F. DeSilva, L. Gottlieb

    A number of tests looking at lead removal using ion exchange resins of various types from various aqueous streams have been undertaken. The tests focused on strong acid cation (SAC) and weak acid cati

    Jan 1, 2000

  • AIME
    Lead Smelter Operation At N. V. Metallurgie Hoboken S. A. Hoboken, Belgium

    By Jean L. Leroy

    The Lead Smelting works of Metallurgie Hoboken S.A. are located on the banks of the river Scheldt a few miles South of Antwerp. Lead refining began at Hoboken in 1687, when it was restricted mainly to

    Jan 1, 1970

  • TMS
    Lead Smelting and Refining its Current Status and Future

    By Kazue Moriya

    At the 1980 TMS-AIME world symposium, Dr. Davey mentioned that the traditional lead blast furnace is now being challenged by direct smelting processes. In the copper smelting field both the blast fur

    Jan 1, 1990

  • AUSIMM
    Lead Smelting at Sulphide Corporation Ltd.'s Cockle Creek Works

    THIS paper is not intended to be a detailed description of the lead, smelting plant at Cockle Creek, as this has been covered in previous papers for the Institute in 1918, Proceedings No. 31, by other

    Jan 1, 1923

  • AIME
    Lead Smelting in Utah

    By B. L. Sackett

    LEAD smelting has been an important industry in Utah for many years. The first lead smelting was done, over 60 years ago, at the Rollins mine in Beaver County, by burning heaps consisting of alternate

    Jan 8, 1925

  • TMS
    Lead Sulfate Scale in a Copper Smelter Acid Plant

    By J. M. Rapkoch

    In late October 1996, an acid plant at a major U.S. copper smelter was faced with unexpected and rapidly increasing pressure drop across the gas cooling tower in the acid plant, indicating a build-up

    Jan 1, 2000

  • CIM
    Lead Through the Ages

    By F. Habashi

    Lead is an ancient metal. The alchemists related it to the planet Saturn. It was largely obtained by smelting galena which generally contains small quantities of silver. That is why the metallurgy of

    Jan 1, 2008