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  • AIME
    Minnesota School of Mines and Metallurgy, Experiment Station

    Minnesota School of Mines Experiment Station, University of Minnesota, Minneapolis, Minn For copies of Bulletins or a list of publications, address The Director Bulletins available are Bulletin 1,

    Jan 1, 1933

  • SME
    Minnesota SME Section meeting lays out strategies for a new generation of mining

    Two key strategies for a new generation of mining are developing domestic raw material production and doing so in an environmentally responsible way, according to presenters at the 83rd annual meeting

    Jul 1, 2010

  • AIME
    Minnesota State Geological Survey

    Geological and Natural History Survey of Minnesota, Minneapolis, Minn W. H Emmons, Director A list of publications will be sent upon application Orders for publications should be addressed to The U

    Jan 1, 1933

  • AIME
    Minnesota's Iron Mining Industry

    By AIME AIME

    APROXIMATELY one third of the world's iron ore is mined in the United States; and about 80 per cent of this third is mined in the Lake Superior ore region, and about 60 per cent in Minnesota. Th

    Jan 1, 1941

  • SME
    Minnesota's Vibrant Mining Industry Ranks Third In Revenues Generated

    By Greg Beckstrom

    Minnesota is a major mining state. This statement is not a dream or stretch goal but is a fact. As reported in a recent edition of Mining Engineering magazine, Minnesota ranks as the third largest sta

    Jan 1, 2012

  • SME
    Minntac Phase III - Heat Recuperation

    By R. D. Lopez

    The concept of "heat recuperation" for the grate-kiln pelletizing system was first implemented at the Sydvaranger plant in Norway in 1974. Essentially, heat recuperation involves bringing hot air from

    Jan 1, 1980

  • TMS
    Minor Element Control by Flue Dust Treatment in Copper Smelting

    By Roberto Parra, Roberto Parada

    "A novel process for minor elements control in copper pyrometallurgical production is proposed based on a theoretical analysis and the results of an experimental program. Its application can solves op

    Jan 1, 2008

  • TMS
    Minor Element Control By Vacuum Calcination And Recycling Of Copper Smelter Dust

    By Jin Qiu

    Experiments were performed to determine the extent of minor element elimination that occurred when mixtures of copper smelter dust and copper concentrate, were calcined under vacuum. Almost complete

    Jan 1, 2005

  • SME
    Minor Element Distribution In Wall Rocks From The Mascot-Jefferson City Zinc District, Tennessee

    By J. F. Snyder

    Minor elements determined by atomic absorption spectroscopy include: zinc, cadmium, copper, cobalt, nickel, chromium, manganese, and iron. Of these elements, only three; zinc, cadmium, and copper are

    Jan 1, 1977

  • CIM
    Minor Element Tolerance and Control in Copper Smelting

    By A. E. Wraith, R. Harris, J. Qiu, R. Parra

    Small pilot scale experiments have shown that it is possible to almost fully eliminate the minor elements (ME), namely As, Sb, Bi and Pb contained in smelter dusts by vacuum calcination of mixtures of

    Jan 1, 2007

  • AIME
    Minor Elements in Mississippi Valley- Type Ore Deposits

    By Richard D. Hagni

    Mississippi Valley-type ore deposits contain significant quantities of minor elements, which are present partly in the form of separate mineral phases and partly in solid solution in the major sulfide

    Jan 1, 1983

  • SME
    Minor Elements In Pyrites From Some Porphyry-Type Deposits, British Columbia

    By A. J. Sinclair

    One hundred and eleven pyrite samples from 3 porphyry-type deposits in the Canadian cordillera were analyzed (many in duplicate) by AA spectrophotometry for Co, Ni, Cu, Pb, Zn and Mn. All elements hav

    Jan 1, 1976

  • AIME
    Minor Elements In Pyrites From Some Porphyry-Type Deposits, British Columbia (34afec2d-ecbb-4b24-ad94-dc5f7ded345c)

    By A. Bentzen, S. S. Wong, W. K. Fletcher, B. J. Price, A. J. Sinclair

    One hundred eleven pyrite samples from three porphyry-type deposits in the Canadian Cordillera were analyzed (many in duplicate) by AA spectrophotometry for Co, Ni, Cu, Pb, Zn and Mn. All elements hav

    Jan 1, 1978

  • TMS
    Minor Feed Materials and Model Sensitivity

    By W. G. Davenport

    This chapter examines three minor influences on flash smelting's industrial oxygen and oil requirements, i.e.: (a) recycle of molten converter slag to the flash furnace (b) gangue oxides and ca

    Jan 1, 2001

  • AIME
    Minor Industrial Minerals

    By H. D. Keiser

    Minor industrial minerals included in this chapter are: the alum minerals, bromine, calcium chloride, epsomite and other natural magnesium salts, iodine, meerschaum, quartz, industrial crystals other

    Jan 1, 1960

  • AIME
    Minor Industrial Minerals (e22cf901-dd07-4dd6-8181-b4791c6af219)

    By Paul M. Tyler

    MINOR industrial minerals included in this chapter are: the alum minerals, bromine, calcium chloride, epsomite and other natural magnesium salts, iodine, meerschaum, quartz, industrial crystals other

    Jan 1, 1949

  • AIME
    Minor Metals

    By Hugh Douglas

    ANTIMONY Antimony (Sb) has been used since the early Egyptian dynasties. Prior to World War I, total demand amounted to only 6000 to 7000 tons per year (tpy). Wartime uses and rapid rise of industr

    Jan 1, 1976

  • AIME
    Minor Metals - Antimony: Its Metallurgy and Refining in Recent Years

    By Chung Yu Wang, Guy C. Riddle

    There are found in nature upward of II2 minerals containing antimony, but only a few of them, listed in Table I, can be considered as antimony ore-forming minerals. Stibnite (Sb2S3), antimony sulph

    Jan 1, 1944

  • NIOSH
    Minor Metals - Arsenic (545169d6-93ee-43ea-8b17-3e028d7e5f60)

    By H. J. Schroeder

    Legislation and Government Programs.-The Occupational Safety and Health Administration (OSHA) accepted written comments until July 23, 1976, and held an informal hearing on August 24, 1976, to receive

    Jan 1, 1978

  • NIOSH
    Minor Metals - Arsenic (d921dacd-4088-4bdc-9fb9-85a8fe41b1c0)

    By J. Roger Loebenstein

    Small amounts of arsenic trioxide were shipped in 1988 from remaining stocks at ASARCO Incorporated's closed plant at Tacoma, WA. Imports of arsenic trioxide were at about the same level in 1988

    Jan 1, 1990