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  • AIME
    Florida Paper - Treatment of Roasted Gold-Ores by Means of Bromine

    By Richard W. Lodge

    Mr. H. R. Batcheller, of the class of 1894, Massachusetts Institute of Technology, while experimenting with chlorine gas on a certain lot of roasted concentrates, met with the following difficulties:

    Jan 1, 1896

  • AIME
    Florida Stakes Its Claim in the Uranium Market

    By John W. Sweeney

    Florida is blessed with some of the worlds greatest phosphate rock deposits, and doubly blessed in that those deposits are uraniferous. Until recently, the uranium con¬tained in phosphate rock had bee

    Jan 9, 1979

  • AIME
    Florida State Geological Survey

    Florida State Geological Survey, Tallahassee, Fla Herman Gunter, State Geologist A list of publications will be sent upon request Citizens of the state may obtain publications available without cos

    Jan 1, 1933

  • AIME
    Flotation

    By R. E. Zimmerman

    ALTHOUGH flotation of coal is considered relatively new in the United States by coal-preparation engineers, actually it has been practiced to some extent for the past 30 years, It is practiced much mo

    Jan 1, 1950

  • AIME
    Flotation and Lead Smelting: Zinc and Fluxes

    By A. B. Young

    The difficulties encountered in the preparation of the lead smelter charge for the blast furnace and in the roasting and sintering of the ores, and the expert means taken for the preparation of these

    Jan 1, 1928

  • AIME
    Flotation And Lead Smelting: Roasting And Sintering

    By W. H. Eardley

    IT IS increasingly evident that the excellence of blast-furnace operation to a great extent depends upon the preparation of the products fed into the furnace. The preparation of these products is carr

    Jan 1, 1928

  • AIME
    Flotation And Lead Smelting: The Blast Furnace

    By R. A. Wagstaff

    MANY changes in equipment have had to be made to handle the flotation products at the blast furnace, and these changes have meant an expenditure of considerable money, which has not been compensated b

    Jan 1, 1928

  • AIME
    Flotation And Lead Smelting: Zinc And Fluxes (9fd13099-210d-4cf0-af6b-6c23a7136c3b)

    By A. B. Young

    THE difficulties encountered in the preparation of. the lead smelter charge for the blast furnace and in the roasting and sintering of the ores, and the expert means taken for the preparation of these

    Jan 1, 1928

  • AIME
    Flotation And The Gibbs Adsorption Equation

    By J. Th. G. Overbeek, R. Schumann, P. L. De Bruyn

    THE technique of concentrating valuable minerals from lean ores by flotation depends upon the creation of a finite contact angle at the three-phase contact, mineral-water-air. If the mineral is comple

    Jan 5, 1954

  • AIME
    Flotation And The Park-Utah Mine

    By Paul Hunt

    UP TO June, 1923, the Park-Utah mine had shipped about 94,000 tons of a direct-smelting ore of a gross value of $4,200,000, or about $45. a ton. These values were in gold and silver only, although the

    Jan 1, 1928

  • AIME
    Flotation And The Utah Copper Mine

    By E. E. Barker

    ALTHOUGH flotation was known to be a successful process prior to 1912, Utah Copper Co.'s ores were not entirely treated by this process until 1923. Experiments had been conducted, of course, prio

    Jan 1, 1928

  • AIME
    Flotation And The Utah-Delaware Mine

    By Frank A. Wardlaw

    MY subject covers the effect that recent metallurgy has had on operations at the Utah-Delaware mine. This mine is the old Highland Boy mine of Bingham Canyon, Utah, one that has now been in operation

    Jan 1, 1928

  • AIME
    Flotation As A Power Process

    By E. H. Rose

    THE present symposium on flotation machines provides a unique opportunity for group reappraisal of standard or habitual viewpoints. A symposium is by definition a trading post for observations that mi

    Jan 1, 1944

  • AIME
    Flotation Cell Design

    By V. Lepetic, C. C. Harris

    A systematic program of investigations covering all aspects of cell hydrodynamics,1-3 flotation kinetics,4,5 surface chemistry and their interactions has as a major objective the elucidation of the fl

    Jan 9, 1966

  • AIME
    Flotation Characteristics Of A Florida Leached Zone Phosphate Ore With Fatty Acids

    By V. I. Purcell, R. E. Snow, S. C. Sun

    FATTY acids have been used as standard collectors for floating the matrix1-8 but not the leached zone phosphate ores. After a series of investigations, Davenport9 and Tarbutton10 concluded that the Fl

    Jan 1, 1957

  • AIME
    Flotation Characteristics Of Pyrrhotite With Xanthates

    By Strathmore R. B. Cooke, Iwao Iwasaki, C. S. Chang

    PYRRHOTITE has long been considered a gangue mineral to be eliminated as tailing in the treatment of various sulphide ores. However, in recent years the world-wide lack of sulphur resources has called

    Jan 2, 1954

  • AIME
    Flotation Chemistry Of The Inco Matte Separation Process

    By N. R. Tipman, G. E. Agar, L. Paré

    The flotation chemistry of the commercial INCO matte separation process was investigated. The slow cooling of Bessemer converter matte forms discrete phases of Cu2S and Ni3S2 and a Cu-Ni alloy. After

    Jan 1, 1976

  • AIME
    Flotation Circuit Design

    By Adrian C. Dorenfeld

    Laboratory data form the basis for the design of flotation circuits. These data, obtained from testing samples of the ore, should show the optimum con- ditions for concentrating the ore and the effect

    Jan 1, 1962

  • AIME
    Flotation Circuit Design-Current Practice

    By Harold B. Treweek

    The development of full scale flotation circuits based on laboratory and/or pilot plant data is discussed. Auxilliary operations, equipment and layout essential for trouble-free start-up and operation

    Jan 1, 1978

  • AIME
    Flotation Concentration At Anaconda, Mont.

    By Frederick Laist

    I. EXPERIMENTAL FLOTATION CONCENTRATION INTRODUCTION EARLY in 1914 it was decided to test, on a fairly large scale, the treatment by flotation of Anaconda slime and mill tailing. For this purpose a

    Jan 3, 1916