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  • AIME
    Engineering Societies Joint Activities

    This fund was established in 1929 for support of research and especially refers to non-ferrous mining and metallurgy. It is administered under the Board by a committee consisting of the President and

    Jan 1, 1929

  • AIME
    Discussions - Iron and Steel Division

    P. Herasymenko (New York University, New York) —The authors' experiments on equilibria between water vapor and liquid synthetic slags represent a valuable contribution to our knowledge of the nat

    Jan 1, 1958

  • AIME
    Industrial Minerals Treatment Methods - Froth Flotation of Southern Barite Ores (T. P. 678, with discussion)

    By O&apos, R. G. Meara, G. D. Coe

    PRIor to the World War most of the barite used in the United States for manufacturing lithopone and barium chemicals was imported. Germany, by virtue of an abundance of high-grade ore and low labor co

    Jan 1, 1938

  • AIME
    Industrial Minerals Treatment Methods - Froth Flotation of Southern Barite Ores (T. P. 678, with discussion)

    By G. D. Coe, R. G. Meara, O&apos

    PRIor to the World War most of the barite used in the United States for manufacturing lithopone and barium chemicals was imported. Germany, by virtue of an abundance of high-grade ore and low labor co

    Jan 1, 1938

  • AIME
    The Slagging Gas Producer.

    By William Blauvelt

    THE type of gas producer in which the ashes are fluxed and run off as slag was among the very earliest made. Ebelmen built the first one in 1840 at Audincourt, France, only a year after the installati

    Jan 12, 1913

  • AIME
    ERTS-A -A New Apogee For Mineral Finding

    By William D. Carter

    When the first Earth Resources Technology satellite (ERTS-A) is orbited by NASA next year, mineral exploration is expected to take a giant leap forward. There are many inherent advantages in going to

    Jan 1, 1971

  • AIME
    A Test of Centrifugal Motor-Driven Pumps

    Discussion of a paper of S. S. Rummy and W. F. SCHWEDES, presented at the Pittsburgh meeting, October, 1914, and printed in Bulletin No. 94, October, 1914, pp. 2613 to 2635. K. A. PAULY, Schenectady,

    Jan 4, 1915

  • AIME
    Canadian Paper - Proposed Plan for Crushing, Grinding, and Concentrating Low-grade Sulfide Ore (with Discussion)

    By Arthur Crowfoot

    As a result of work done, on an operating scale, in its experimental mill during 1920 and 1921, the plan here given was proposed for crushing, grinding, and concentrating low-grade sulfide ores at the

    Jan 1, 1923

  • AIME
    Canadian Paper - Proposed Plan for Crushing, Grinding, and Concentrating Low-grade Sulfide Ore (with Discussion)

    By Arthur Crowfoot

    As a result of work done, on an operating scale, in its experimental mill during 1920 and 1921, the plan here given was proposed for crushing, grinding, and concentrating low-grade sulfide ores at the

    Jan 1, 1923

  • AIME
    Papers - New York Meeting – February, 1929 - Unreduced Oxides in Pig Iron and Their Elimination in the Basic Open-hearth Furnace

    By C. H. Herty

    During the past few years frequent reference has been made to a certain type of iron known generally as "bad iron," "dirty iron," etc., both by steelmakers and producers of iron castings.' Open-h

    Jan 1, 1929

  • AIME
    Bethlehem Paper - A Sectional Hanging-Pipe Hot-Blast Oven

    By Arthur F. Wendt

    The hot-blast oven of which the accompanying plate gives complete details, was designed by the writer for the spiegel-furnace of the Lehigh Zinc and Iron Co., at Bethlehem, Pa. Members of the Institut

    Jan 1, 1887

  • AIME
    Slime Agitation And Solution Replacement Methods At The West End Mill, Tonopah, Nev.

    By Jay Carpenter

    THIS paper deals with only one step in the treatment of ore at the West End mill; not because the other steps are repetitions of practice in other mills, but because in this particular step there is i

    Jan 8, 1915

  • AIME
    Inspiration Consolidated Copper Company - Inspiration, Arizona

    The Inspiration ore body was discovered in 1904, but a 50 -ton mill which was installed to treat the disseminated copper ore promptly failed. The original Inspiration Company then gave way to another,

    Jan 1, 1978

  • AIME
    Reservoir Engineering–General - Interfacial Tension of the Methane-Normal Decane System

    By E. B. Brauer, B. F. Pennington, E. W. Hough, G. L. Stegemeier

    Interfacial tension divided by the difference in density between the liquid and the vapor phases was determined experimentally by the pendant drop method on several isotherms in the two phase region b

  • AIME
    Application Of Screening And Classification For Improved Fine Anthracite Recovery

    By W. J. Parton

    THE efficient recovery and preparation of small sizes of anthracite called No. 4 Buckwheat (3/3 2 by 1/3 2 in.) and No. 5 Buckwheat (1/3 2 in. by 0), present a difficult problem to the anthracite ope

    Jan 1, 1949

  • AIME
    Vocational Training Program For Mineral Industries Workers At The Pennsylvania State College

    By H. B. Northrup

    Mineral Industries Extension instruction was pioneered by The Pennsylvania State Colleges Extension work was organized in 1893 and constituted what is believed to be the first vocational adult educati

    Jan 1, 1941

  • AIME
    Comminution - Wet Grinding of Ferrosilicon for Heavy Media (Mining Tech., March 1948, TP 2350)

    By E. H. Crabtree, T. C. King

    The ferrosilicon grinding unit at the Central Mill of the Eagle-Picher Mining & Smelting Co. near Picher, Okla., was completed in March 1947. The object of the plant was to grind pigs of ferrosilicon,

    Jan 1, 1949

  • AIME
    Wet Grinding Of Ferrosilicon For Heavy Media

    By E. H. Crabtree, T. C. King

    THE ferrosilicon grinding unit at the Central Mill of the Eagle-Picher Mining & Smelting Co. near Picher, Okla., was completed in March 1947. The object of the plant was to grind pigs of ferrosilicon,

    Jan 1, 1947

  • AIME
    Production Engineering - An Engineering Study of the Magnolia Field in Arkansas (Petr. Tech. Sept. 1942)

    By H. F. Winham

    The history, development, subsurface geology, production, economics and estimated reserves are discussed in this paper. The Magnolia structure is an anticline with a known maximum structural relief at

    Jan 1, 1943

  • AIME
    Production Engineering - An Engineering Study of the Magnolia Field in Arkansas (Petr. Tech. Sept. 1942)

    By H. F. Winham

    The history, development, subsurface geology, production, economics and estimated reserves are discussed in this paper. The Magnolia structure is an anticline with a known maximum structural relief at

    Jan 1, 1943