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  • AIME
    Papers - Non-Metalic Minerals - Milling Methods and Costs at the No. 2 Concentrator of the Phosphate Recovery Corporation (With Discussion)

    By H. S. Martin

    The Phosphate Recovery Corporation operates three flotation plants, NOS. 1 and 2 concentrators about three miles northeast of Mulberry, Florida, and No. 3 plant at Wales, Tennessee. These plants repre

    Jan 1, 1934

  • AIME
    Papers - Non-Metalic Minerals - Uses of Coal in the Ceramic Industry (Abstract)

    By H. E. Nold

    High-volatile coals are most desirable for kiln firing. Low-volatile and even anthracite coals can be used successfully. Most periodic kilns use coal and are hand fired. A few stoker installations hav

    Jan 1, 1934

  • AIME
    Papers - Non-Metalic Minerals - Vermiculite-Production and Marketing by the Zonolite Company

    By W. S. Steele

    Vermiculite is a nonmetallic mineral of the mica family, probably related to biotite mica. Its occurrence has been noted at numerous places in the United States and in some foreign countries, but it c

    Jan 1, 1934

  • AIME
    Papers - Nonferrous Metallurgy - A Petrographic Study of Lead and Copper Furnace Slags (With Discussion)

    By Roy D. McLellan

    Electrolytic production of cadmium at the Great Falls plant started in the first part of the year 1925. Prior to that time, an experimental unit had been in operation for a few months during the year

    Jan 1, 1930

  • AIME
    Papers - Nonferrous Metallurgy - Arsenic Elimination in the Reverberatory Refining of Native Copper (With Discussion)

    By C. T. Eddy

    The refining of native copper in the reverberatory furnace, as practiced in the Lake Superior district of Michigan, is very similar to the reverberatory melting and refining of cathodes, but the prese

    Jan 1, 1931

  • AIME
    Papers - Nonferrous Metallurgy - Electrolytic Cadmium Plant of Anaconda Copper Mining Co. at Great Falls, Montana (With Discussion)

    By W. E. Mitchell

    The ore that is being treated by the present plant lies between the leached zone, or capping, and the mixed sulfide and oxide zone. The principal copper minerals are chalcanthite (CuS04.5H20), brochan

    Jan 1, 1930

  • AIME
    Papers - Nonferrous Metallurgy - Extraction of Tantalum and Columbium from Their Ores

    By Colin G. Fink, Leslie G. Jenness

    Tantalum and columbium occur together in tantalite and columbite ores, which may be considered as ferrotantalate (FeTaz06), with part of the iron and tantalum replaced by manganese and columbium respe

    Jan 1, 1931

  • AIME
    Papers - Nonferrous Metallurgy - Failures of Cast-iron Kettles in Lead Refining (With Discussion)

    By Carl E. Swartz

    For many years kettles used in the melting and refining of lead and other nonferrous metals and alloys have been made of cast iron. The logic of this probably lies in the fact that cast iron has been

    Jan 1, 1931

  • AIME
    Papers - Nonferrous Metallurgy - High-silica Retorts at the Rose Lake Smelter (With Discussion)

    By G. L. Spencer

    There is no question as to the importance of the part played by the retort in modern zinc smelting. A satisfactory retort should have properties that will result in resistance to slagging action and f

    Jan 1, 1931

  • AIME
    Papers - Nonferrous Metallurgy - Improvements in the Metallurgy of Quicksilver (With Discussion)

    By L. H. Duschak

    Electrolytic zinc produced from sulfate solution and with pure lead anodes is always contaminated with a small and varying percentage of lead. The purpose of this investigation is to determine the cha

    Jan 1, 1930

  • AIME
    Papers - Nonferrous Metallurgy - Investigation of Anodes for Production of Electrolytic Zinc (With Discussion)

    By H. R. Hanley, D. F. Walsh, C. Y. Clayton

    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 o

    Jan 1, 1930

  • AIME
    Papers - Nonferrous Metallurgy - Investigation of Anodes for Production of Electrolytic Zinc, II

    By H. R. Hanley

    The characteristics of alloyed anodes and their influence on the products of electrolysis and power consumption have been noted previosly ously in the literature.' This paper presents data in con

    Jan 1, 1931

  • AIME
    Papers - Nonferrous Metallurgy - Lead Refining at the Bunker Hill Smelter of the Bunker Hill & Sullivan Mining & Concentrating Co. (With Discussion)

    By Alfred F. Beasley

    The slags derived from the smelting of lead and copper ores are composed essentially of silicates. The problems arising from the smelting of these ores consequently involve the study of silicate fusio

    Jan 1, 1930

  • AIME
    Papers - Nonferrous Metallurgy - Progress in Production and Use of Tantalum (With Discussion)

    By George W. Sears

    In preparing this symposium, our ambition was to elicit authoritative expression of opinion concerning important selected phases of the industry from men active in it. Responses to requests for contri

    Jan 1, 1930

  • AIME
    Papers - Nonferrous Metallurgy - The Leaching Process at Chuquicamata, Chile (With Discussion)

    By Charles W. Eichrodt

    So much has already been wimitten on this vast subject of ground movement and subsidence, and so many data collected and commented upon, that in this paper the author proposes to confine himself to th

    Jan 1, 1930

  • AIME
    Papers - Nonferrous Metallurgy - The Present Status of Our Quicksilver Industry, Symposium Arranged by Charles G. Maier (With Discussion)

    During the war period of quicksilver activity there were a number of departures from what may be termed the classical quicksilver metallurgy. Attempts were made to beneficiate low-grade ores by gravit

    Jan 1, 1930

  • AIME
    Papers - Nonferrous Reduction Metallurgy - Adherence of Electrodeposited Zinc to Aluminum Cathodes (Metals Technology, Oct. 1938)

    By H. R. Hanley, Charles Y. Clayton

    One of the most important contributions to the art of electrolytic zinc production has been the aluminum cathode. This has been used in all major production since its commercial development in 1916. T

    Jan 1, 1943

  • AIME
    Papers - Nonferrous Reduction Metallurgy - Adherence of Electrodeposited Zinc to Aluminum Cathodes (Metals Technology, Oct. 1938)

    By H. R. Hanley, Charles Y. Clayton

    One of the most important contributions to the art of electrolytic zinc production has been the aluminum cathode. This has been used in all major production since its commercial development in 1916. T

    Jan 1, 1943

  • AIME
    Papers - Nonferrous Reduction Metallurgy - An Investigation into Anode-furnace Refining of High-nickel Blister Copper (Metals Technology, Feb. 1938)

    By Frederic Benard

    This paper constitutes a preliminary report on experimental work done to date on the anode-furnace treatment of blister copper containing relatively high percentages of nickel. The investigation has n

    Jan 1, 1943

  • AIME
    Papers - Nonferrous Reduction Metallurgy - An Investigation into Anode-furnace Refining of High-nickel Blister Copper (Metals Technology, Feb. 1938)

    By Frederic Benard

    This paper constitutes a preliminary report on experimental work done to date on the anode-furnace treatment of blister copper containing relatively high percentages of nickel. The investigation has n

    Jan 1, 1943