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  • ISEE
    Magazine Propagation Model in Quantitative Risk Assessments

    By Harley Cheema, Brandon Fryman, John Tatom

    A new magazine propagation model has been proposed by the IMESAFR Science Panel for eventual implementation into the IMESAFR QRA program. Initial results from this QRA propagation model are now availa

    Feb 1, 2020

  • AIME
    Magma Copper Company - San Manuel Division - San Manuel, Arizona

    The San Manuel district of Arizona was first prospected prior to the Civil War, but there was little or no production until 1881. Small operators tried to develop ore bodies from time to time after th

    Jan 1, 1978

  • CIM
    Magmatic and Non Magmatic Ores

    By C. J. Sullivan

    It is of importance, in prospecting, to distinguish ores of magmatic origin from those derived by the meta-morphism and granitization of source rocks and from those accumulated in certain sedimentary

    Jan 1, 1962

  • CIM
    Magnesia and Hydrated Lime from Wakefield Brucitic Limestone

    By Harry Jomini

    Introduction The Wakefield plant of the Aluminum Company of Canada, Limited - a member of the Aluminum, Limited, group of companies - produces magnesia, magnesia fertilizer ingredient, and hydrated

    Jan 1, 1950

  • CIM
    Magnesia from Canadian Brucite

    By M. F. Goudge

    BRUCITE associated with highly metamorphosed Precambrian limestone was discovered in the vicinity of Rutherglen in northern Ontario by the writer during field work on the limestones of that district i

    Jan 1, 1940

  • AUSIMM
    Magnesia from Magnesite by Calcination/Carbon Dioxide Leaching

    By Everson P. T, Moyle F. J

    Magnesite-rich and dolomite-rich ores from the Savage River region of Tasmania are being considered as potential feed material for a commercial process for production of magnesia.Two selected samples

    Jan 1, 1981

  • AUSIMM
    Magnesia from Magnesite by Calcination/Carbonic Acid Leaching: Comparison of Several Australian Magnesites

    By Moorrees C, Koh P. T L, Tsambourakis G

    Examination of Ihe calcination and carbonic acid leaching behaviour of a number of Australian magnesites shows that there are substantial differences between the massively crystalline and the cryptocr

    Jan 1, 1985

  • TMS
    Magnesia Hydration in Magnesium Acetate Solutions

    By Dimitrios Fillippou

    Magnesium hydroxide is used in a number of industrial applications, from the neutralisation of acid effluents to the production of pharmaceuticals. High-quality magnesium hydroxide powders can be prod

    Jan 1, 1999

  • CIM
    Magnesia Refractories for Steel Furnaces

    By G. M. Carrie

    Introduction The subject of basic refractories is daily becoming of increased importance in metallurgical processes, and there is a constantly growing necessity for the development of better materi

    Jan 1, 1927

  • SME
    Magnesia, Moving Beyond Refractories (a83e9db7-4086-4aaa-b465-09ebaa00b1ad)

    By M. L. Maniocha

    Most magnesia, MgO, whether of natural or synthetic origin, is utilized in its dead burned or periclase form as refractory linings for the production of steel. Continued research in refractory science

    Jan 1, 1997

  • SME
    Magnesia: Moving Beyond Refractories

    By Michael L. Maniocha

    Most magnesia (MgO), whether of natural or synthetic origin, is used in the dead-burned or periclase form as refractory linings for the production of steel. Continued research in refractory science, c

    Jan 1, 1997

  • SME
    Magnesite and Magnesia

    By L. R. Duncan, W. H. McCracken

    Magnesium is the eighth most abundant element in the earth's crust and the third most plentiful element in seawater. It is found in more than sixty minerals and in brines and seawater as a magnes

    Jan 1, 1994

  • AIME
    Magnesite and Related Minerals

    By L. R. Duncan, O. M. Wicken

    Magnesium, the eighth most abundant element in the earth's crust, is found widely distributed in a variety of minerals. Among the more commercially important ones are magnesite (MgCO,), brucite (

    Jan 1, 1975

  • AIME
    Magnesite And Related Minerals (89c69506-c63b-4dbd-bd0d-bcfced22ce11)

    By Raymond E. Birch, Oscar M. Wicken

    THE mineral magnesite, formerly the source of nearly all magnesia, now shares this role with brucite, dolomite, and the world's natural and artificial brines. The mineral magnesite is the normal

    Jan 1, 1949

  • AIME
    Magnesite And Related Minerals (a54774f4-30e9-414d-879a-9e69f4105927)

    By L. R. Duncan, O. M. Wicken

    Magnesium, the eighth most abundant element in the earth's crust, is found widely distributed in a variety of minerals. Among the more commercially important ones are magnesite (MgCO3), brucite (

    Jan 1, 1983

  • AIME
    Magnesite And Related Minerals (b6443c80-eacf-46f7-a882-fe1e5d26795f)

    By Oscar M. Wicken

    The mineral magnesite (MgCO3) if pure would consist of 47.7 pct MgO and 52.3 pct CO2. It is one of the calcite group of rhombohedral carbonates which includes calcite (CaCO3), siderite (FeCO3), rhodoc

    Jan 1, 1960

  • CIM
    Magnesite deposits at Kilmar, Quebec

    By Kilmar Mine

    The Kilmar dolomitic magnesite deposit~ in sourhwesr Quebec lie in Grenville Province sedimentary rocks that strike north and dip steeply west. The sediments comprise quartzitic, carbonate and argilla

    Jan 1, 1984

  • AIME
    Magnesite Mining in California

    By Leroy Palmer

    ALL the domestic. production of magnesite during 1925 came from two states, California and Washington. Of a total of 120,660 tons of crude ore, 64,600 tons, or 54 per cent., were produced in Californi

    Jan 1, 1927

  • AIME
    Magnesium

    By J. D. Hanawalt, W. H. Gross

    Magnesium has long been known as the lightest of our engineering metals. This metal, silvery white in color, has a specific gravity of only 1.74. Aluminum, the next lightest structural metal, is 1 ½

    Jan 1, 1953

  • AIME
    Magnesium - Its Etching And Structure

    By H. B. Pulsifer

    ABOUT 15 varieties, or modifications, of the best magnesium available were prepared and subjected to etching tests, then examined for microstructure. Of the 30-odd etching reagents that were tried, ne

    Jan 1, 1928