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  • AIME
    Uranates

    By William E. Ford, Edward Salisbury Dana

    URANINITE. Cleveite. Broggerite. Nivenite. Pitchblende. Isometric. In octahedrons (o), also with dodecahedra1 faces (d) ; less often in cubes with o and d. Crystals rare. Usually massive and botryoida

    Jan 1, 1922

  • SME
    Uraniferous Collapse Breccia Pipes, Northwestern Arizona

    By J. McMurray

    Introduction Uranium was recovered from mining of collapse breccia pipe deposits in the Arizona Strip district in northwestern Arizona (Figure 1) intermittently between 1956 and 1990, with cumulative

    Jan 1, 2007

  • IIMP
    Uranio extraído del mar

    By David Wilson

    "El presente texto señala la importancia del uranio como combustible esencial en la industria de la energía atómica. Dado que Gran Bretaña tiene poco uranio en su subsuelo, se buscó un método que ayud

    Jul 1, 1965

  • SME
    Uranium as nuclear fuel - scarce or sufficient available resource?

    By C. Slotta, F. Charlier, P. Blomen

    "Within the energy concept of the German government, the operating time of nuclear power plants was initially extended from about 8 to 14 years. It is planned, however, that every power plant will gra

    Jan 1, 2011

  • CIM
    Uranium Compounds as Thermoelectric Materials

    The properties required for a com-pound to form useful thermoelectric materials are described. Uranium compounds which might have these properties are reviewed. Several of these compounds have been pr

    Jan 1, 1963

  • CIM
    Uranium Concentration with the Driessen Cone

    By I. C. Edwards, E. O. Lilge, H. H. Mccreedy

    "Introductory and GeneralTHE DRIESSEN CONE bas been used fairly extensively commercially as a classifier. Its use as a concentrator in the upgrading of ores at a fairly high ratio of concentration wit

    Jan 1, 1955

  • CIM
    Uranium deposits and prospects of the Baker Lake Basin and subbasins Central District of Keewatin, Northwest Territories

    By A. R. Miller, R. A. Stanton, M. J. Male, G. R. Cluff

    "The Dubawnt Group consists of continental sedimentary and volcanic rocks which fill structural depressions - Baker Lake Basin, Yathkyed Lake and Angikuni Lake subbasins- whose evolution was controlle

    Jan 1, 1986

  • SME
    Uranium Distribution In Phosphate Processing

    By Ravindra M. Chhatre

    Uranium associated with phosphate deposits has been the subject of numerous investigations (1-8). In the land-pebble phosphate deposits of central Florida, uranium is found in the phosphate matrix (or

    Jan 1, 1978

  • SME
    Uranium Environments And Exploration Potential In Hard Rock Terrain, Front Range, Colorado

    By Robert H. Carpenter

    Abstract, Syngenetic uranium in pre metamorphic Idaho Springs volcanics and sediments probably, was mobilized during metamorphism (1.7 b.y.) and partly retained along unconformities. Precambrian Silve

    Jan 1, 1979

  • AIME
    Uranium Exploration Activities in the US

    By B. J. Guarnera

    There have been major changes in the makeup and nature of the uranium exploration industry in recent years. Significant price increases precipitated an increase in exploration activity-according to th

    Jan 10, 1978

  • CIM
    Uranium extraction process alternatives

    By C. R. Edwards

    "Since the first commercial extraction of uranium in the early 1940s, the range of feasible process alternatives has greatly increased. This paper reviews process options to reduce extraction costs, i

    Jan 1, 1992

  • SME
    Uranium Geology And Geochemistry Copper Mountain , Wyoming

    By L. B. Bramlett

    The Archean (2.65 b.y.) aged Canning Stock at Copper Mountain, Wyoming contains an average of 20 ppm U. The North Canning and Fuller deposits occur within the enriched interior of the stock. Post-Lara

    Jan 1, 1980

  • CIM
    Uranium in Early Proterozoic Aillik Group, Labrador

    By Sunil S. Gandhi

    "Uranium occurrences are widely distributed in tuffaceous-argillaceous beds and abundant rhyolitic volcanic rocks of the upper Aillik group, which is more than 3 km thick and over 125 km by 40 km in a

    Jan 1, 1986

  • CIM
    Uranium in Non-Ferrous Metals

    By R Thomson

    The use of uranium metal in non-ferrous metallurgical practice is dis-cussed with reference to its alloying behaviour and chemical activity. It is suggested that the more promising applications are in

    Jan 1, 1963

  • SME
    Uranium In Situ Leaching: Its Advantages, Practice, Problems, And Computer Simulation

    By Bill A. Hancock

    In Situ leaching for the recovery of uranium from low grade sandstone deposits is one of the newest technological advances in the mineral industry. It is rapidly developing into a commercially feasibl

    Jan 1, 1977

  • AUSIMM
    Uranium in Tertiary Stream Channels, Lake Frome Area, South Australia

    Uranium exploration over a wide area of the Southern Frame Embayment, South Australia, has defined a number of Lower Tertiary fluvial palaeochannels incised in older rocks. The buried channels contain

    Jan 1, 1978

  • CIM
    Uranium in Washington State: proven deposits and exploration targets

    By P. Clinton Milne

    Uranium mines in Washington State include the producing Midnite and Sherwood mines and several mined-out deposits, the most productive of which was the Daybreak mine. The Midnite mine is generally cla

    Jan 1, 1979

  • SME
    Uranium In-Situ Leaching Sulfur Chemistry

    By John B. Goddard

    In-situ leaching of uranium by aqueous ammonium carbonate containing oxygen or hydrogen peroxide as oxidant results in the partial dissolution of sulfides. While some of the sulfide sulfur is oxidized

    Jan 1, 1984

  • SME
    Uranium Mill Tailings Management: Cover Systems, Containment Migration And Long-Term Stability - Introduction

    By J. N. Hartley

    Uranium mill tailings, waste products of uranium extraction, contain hazardous constituents that if released into the atmosphere and groundwater could threaten our health and environment. To provide f

    Jan 1, 1984

  • CIM
    Uranium Milling Advances in Northern Saskatchewan

    By Bruce C. Fielder

    "The concentration of uranium in orebodies discovered in the Athabasca Basin of northern Saskatchewan over the last 20 years has increased by a factor of 100. These high grade uranium orebodies are as

    Jan 1, 1998