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  • AIME
    Minerals Beneficiation - Adsorption Mechanisms in Nonmetallic Activation Systems

    By D. A. Elgillani, M. C. Fuerstenau, J. D. Miller

    Adsorption of lead and ferric iron on quartz and alumina is presented as a function of pH. Only the hydrolyzed species of these metal ions, FeOH++ and PbOH+, adsorb significantly on each of these mine

    Jan 1, 1971

  • AIME
    Minerals Beneficiation - Adsorption of a Mercaptan on Zinc Minerals

    By D. L. Harris, A. M. Gaudin

    Observations were made of the distribution of mercaptan containing S35 between aqueous solution and mineral and between aqueous solution and the gaseous phase. Although equilibrium may not have been

    Jan 1, 1955

  • AIME
    Minerals Beneficiation - Adsorption of Calcium, Magnesium, and Sodium Ion by Quartz

    By S. R. B. Cooke, S. W. Clark

    Adsorption of calcium and magnesium by quartz was determined over a wide pH range using flame photometry for solution analysis. A parallelism was noted between calcium adsorption at alkaline pH and fl

    Jan 1, 1969

  • AIME
    Minerals Beneficiation - Adsorption of Dodecylammonium Acetate on Hematite and Its Flotation Effect

    By A. M. Gaudin, J. G. Morrow

    FLOTATION requires the existence of a definite contact angle. This contact angle, the surface tension of the solution, and adsorption at the solid-fluid interface are quantitatively related. Adsorp

    Jan 1, 1955

  • AIME
    Minerals Beneficiation - Adsorption of Ethyl Xanthate on Pyrite

    By O. Mellgren, A. M. Gaudin, P. L. De Bruyn

    The adsorption density of ethyl xanthate on pyrite was determined as a function of xanthate concentration. Surface preparation of the mineral appears to have asafunctionsome effect on the subsequent a

    Jan 1, 1957

  • AIME
    Minerals Beneficiation - Adsorption of Ethyl Xanthate on Pyrite - Correction

    By O. Mellgren, A. M. Gaudin, P. L. De Bruyn

    In the January 1956 issue: TP 4137B. Adsorption of Ethyl Xanthate on Pyrite. By A. M. Gaudin, P. L. de Bruyn, and Olav Mellgren. P. 65. Since P. L. de Bruyn is now a member of the AIME, the word "asso

    Jan 1, 1957

  • AIME
    Minerals Beneficiation - Adsorption of Hexyl Mercaptan on Gold

    By F. F. Aplan, P. H. de Bruyn

    The adsorption density of hexyl mercaptan was measured at the gold-solution and the gold-vapor interfaces. This collector is strongly adsorbed at low concentrations, a monomolecular layer being formed

    Jan 1, 1963

  • AIME
    Minerals Beneficiation - Adsorption of Silver Ion by Sphalerite

    By H. R. Spedden, A. M. Gaudin, M. P. Corriveau

    A preliminary study of silver ion adsorption by sphalerite in ion exchange column with influent electrolyte marked with radiosilver is described. Rapid ion exchange occurs at first followed by slow re

    Jan 1, 1952

  • AIME
    Minerals Beneficiation - Adsorption of Sodium and Calcium on Pyrite

    By A. M. Gaudin, W. D. Charles

    IN flotation lime is used to depress pyrite. For this purpose it is preferred to caustic soda. The low cost of lime and the widespread availability largely account for this preference. However, there

    Jan 1, 1954

  • AIME
    Minerals Beneficiation - Adsorption of Xanthate on Illuminated Lead and Zinc Sulfides

    By Claudio Guarnaschelli

    Alteration of the electronic distribution of mineral surfaces by light irradiation has been used to modify the adsorption characteristics of flotation reagents. Energy of a few electron volts is sufic

    Jan 1, 1971

  • AIME
    Minerals Beneficiation - Adsorption Studies of Dodecylamine at the Mercury-Solution Interface Through Differential Capacity and Electrocapillary Measurements and Their Implication in Flotation

    By S. Usui, I. Iwasaki

    The adsorption mechanism of dodecylammonium acetate (DAA) on mercury in potassium fluoride solutions at natural, near neutral pH was investigated. Difler-ential capacity combined with electrocapillary

    Jan 1, 1971

  • AIME
    Minerals Beneficiation - Advances in Magnetic Separation of Ores

    By L. A. Roe

    Magnetic separation of iron ores is one of the fastest-growing segments of the minerals beneficiation industry. The tonnage of taconite ores processed annually by magnetic separation will, in a few ye

    Jan 1, 1959

  • AIME
    Minerals Beneficiation - Agglomeration Flotation of Manganese Ore

    By Ellis H. Gates

    BENEFICIATION of the manganese oxide ores at Three Kids Mine near Henderson, Nev., has evolved over a period of years. Commercial application of the process is on a secure basis, and an effective work

    Jan 1, 1958

  • AIME
    Minerals Beneficiation - An Agglomeration Process for Iron Ore Concentrates

    By W. F. Stowasser

    downdraft traveling grate process to agglomerate pelletized iron ore concentrates has been successfully demonstrated in a pilot plant at Carrollville, Wis. Work there followed se

    Jan 1, 1956

  • AIME
    Minerals Beneficiation - An Agglomeration Process for Iron Ore Concentrates - Discussion

    By W. F. Stowasser

    Robert E. Hagen (Oliver Iron Mining Div., U. S. Steel Corp.)—Mr. Stowasser and his associates are to be congratulated on their achievements in developing the design of a pilot agglomerating plant, bas

    Jan 1, 1956

  • AIME
    Minerals Beneficiation - An Analysis of Mill and Classifier Performance in a Closed Grinding Circuit

    By R. T. Hukki

    The purpose of this paper is to present an analysis of the unit operation of grinding and the circulating load, of the unit operation of classification and the circulating load, and of the two superim

    Jan 1, 1968

  • AIME
    Minerals Beneficiation - An Automatic Analysis and Control System Adapted to Magnetic Separation for Instructional Laboratory Use

    By B. G. Zambre, G. A. Parks, J. N. Roco

    Automatic controls have long been a fact of technological life. Some understanding of control systems is rapidly becoming essential to the competence of mineral engineers. Students in undergraduate mi

    Jan 1, 1965

  • AIME
    Minerals Beneficiation - An Electric Tramp Iron Detector for Ore Conveyor Belts

    By C. M. Marquardt

    Tramp iron and steel moving on a conveyor belt cause small currents to be generated in a coil situated in a strong magnetic field, which are converted to an alternating current and are amplified. The

    Jan 1, 1951

  • AIME
    Minerals Beneficiation - An Electric Tramp Iron Detector for Ore Conveyor Belts

    By C. M. Marquardt

    Tramp iron and steel moving on a conveyor belt cause small currents to be generated in a coil situated in a strong magnetic field, which are converted to an alternating current and are amplified. The

    Jan 1, 1951

  • AIME
    Minerals Beneficiation - An Improved Method of Gravity Concentration in the Fine-size Range

    By H. Rush Spedden, Arvid Thunaes

    Pilot plant test work in 1942 and 1943 showed that by a combination of deslim-ing, fine-size classification, and Sullivan deck concentration it is possible to recover heavy minerals such as cassiterit

    Jan 1, 1951