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  • AIME
    Mining Methods - Geological Study of Gravel Concrete Aggregate of the Tennessee River (T. P. 840, with discussion)

    By E. L. Spain Jr. N. A. Rose

    This study was undertaken primarily to determine the reasons for certain variations in the soundness of gravel aggregate taken from a number of widely separated points on the Tennessee River. Under la

    Jan 1, 1938

  • AIME
    Mining Methods - Utilization of Slag in the Birmingham District, Alabama (T. P. 796, with discussion)

    By James R. Cudworth, Joseph C. Mead

    The Birmingham district of Alabama has utilized the slag from its blast furnaces consistently since the earliest development of the slag industry. Today there are producers of slag cement who started

    Jan 1, 1938

  • AIME
    Industrial Minerals Treatment Methods - Log Washers in the Aggregate and Flux-stone Industries (T. P. 679, with discussion)

    By S. B. Patterson, A.R. Amos

    Log washers have been used for many years in the washing of clay iron ores, phosphate rock and manganese ores, but not until the past 15 years have they been employed to any extent in the preparation

    Jan 1, 1938

  • AIME
    Industrial Minerals Treatment Methods - Preparation of High-specification Sand at the Grand Coulee Dam (T. P. 715, with discussion).

    By Anthony Anable

    The definite trend to stricter specifications with respect to hydraulic concrete has become increasingly manifest in the last six years or so; but it remained for the vast reclamation projects of the

    Jan 1, 1938

  • AIME
    Industrial Minerals Treatment Methods - A Method for Estimating the Efficiency of Pulverizers (T. P. 810)

    By Raymond Wilson

    Grinding costs are an important item in cement manufacture, and the cost of power is one of the large items in grinding costs. Even where power is of secondary importance, cost items dependent on mill

    Jan 1, 1938

  • AIME
    Industrial Minerals Treatment Methods - Metal Consumption in Hammer Mills at Norris Dam (T. P. 824, with discussion)

    By Francisco Cadena

    The construction of Norris Dam, built by the Tennessee Valley Authority on the Clinch River, a tributary of the Tennessee River, involved the production of coarse and fine aggregate for approximately

    Jan 1, 1938

  • AIME
    Industrial Minerals Treatment Methods - Flotation Processing of Limestone (T. P. 606, with discussion)

    By Benjamin L. Miller, Charles H. Breerwood

    From earliest recorded times, limestone has been employed in the industrial life of peoples of all sections of the world where it exists. It is widely distributed and therefore has been available in a

    Jan 1, 1938

  • AIME
    Industrial Minerals Treatment Methods - A Study of the Flotative Properties of Gypsum (T. P. 762)

    By W. E. Keck, Paul Jasberg

    TheRe is a considerable tonnage of iron ore in the Menominee Range of Michigan that is unsalable only because it has too large a content of sulphur. Beneficiation of such ore is economically desirable

    Jan 1, 1938

  • AIME
    Industrial Minerals Treatment Methods - Flotation of California Magnesites (T. P. 733)

    By S. D. Michaelson, Eric Sinkinson

    Many of the magnesite ores of the western part of the United States contain such large amounts of silica and hydrous silicate minerals that the value of the ores is either low or nominal. Expensive an

    Jan 1, 1938

  • 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
    Phosphate - Government Prospecting for Phosphate in Florida (T. P. 839)

    By P.V. Roundy, G.R. Mansfield

    Public lands in Florida were first withdrawn from entry by President Taft on July 2, 1910, as a conservation measure because of their possible phosphate content. The reserve thus established was subse

    Jan 1, 1938

  • AIME
    Phosphate - Mining Practice in the Florida Pebble Phosphate Field (T. P. 662, with discussion)

    By Chester A. Fulton

    In Polk County, Florida, the mining of raw phosphates began some 50 years ago with dredging operations on the Peace River, and in other near-by places by removal of shallow overburden with negroes and

    Jan 1, 1938

  • AIME
    Phosphate - Drying and Processing of Pebble Phosphate in the Florida Field (T. P. 677, with discussion)

    By Charles N. Becker

    The practice of drying phosphate in Florida is as old as the industry, which began a little more than half a century ago. The methods, however, have changed considerably. At first, the natural process

    Jan 1, 1938

  • AIME
    Phosphate - Ore-dressing Practice with Florida Pebble Phosphates, Southern Phosphate Corporation (T. P. 881, with discussion)

    By J. W. Pamplin

    Some 40 miles east of Tampa is the center of the Florida pebble phosphate deposits. These are of Pliocene age and consist of several members of the Bone Valley formation.1 Physically the phosphate-

    Jan 1, 1938

  • AIME
    Potash - Salt Occurrences in the Potash Mines of New Mexico (T. P.686, with discussion)

    By Richard V. Ageton

    Salt bodies in the form of rolls, horses (sometimes called horsebacks), folds, wants and pinches1 have been encountered while driving entries and mining out rooms during the development of the potash

    Jan 1, 1938

  • AIME
    Potash - Applications of Potash in the Ceramic Industry (Contrib. 101, with discussion)

    By Nelson W. Taylor

    With the extensive deposits of potash minerals which have been discovered in the southwestern states, and their rapid development, a permanent American supply of potassium compounds is now assured. Th

    Jan 1, 1938

  • AIME
    Salt - Gravimetric Survey of the Malagash Salt Deposit, Nova Scotia (T. P. 737)

    By A. H. Miller, G. W. H. Norman

    This survey is one of the more recent tests of geophysical methods of prospecting by the Dominion Observatory and the Geological Survey of Canada, of which the purpose is to find out what application

    Jan 1, 1938

  • AIME
    Salt - Mining and Preparation of Rock Salt at the Retsof Mine (T. P. 661, with discussion)

    By E. F. La Vigne

    On Aug. 10, 1884, the Retsof Mining Co. began the sinking of an 18 by 12-ft. shaft at Retsof, N. Y. Rock salt was reached in 1885, in September, at 1008 ft. below the surface. The first salt was shipp

    Jan 1, 1938

  • AIME
    Salt - Evaporating Salt from the World’s Largest Mineral Deposit (Abstract from mining and metallurgy, July 1937

    By Joseph C. Buchen

    In principle, productiorl of salt from sea water is a simple operation. The sun and wind cause evaporation of sea water trapped in ponds, and what is left is principally salt. Commercial production, h

    Jan 1, 1938

  • AIME
    Salt - Salt Industry of Louisiana and Texas. (T. P. 620, with discussion)

    By W. M. Weigel

    Salt production in Louisiana and Texas at the present time is entirely from salt domes of the interior and coastal groups. Before and during the Civil War salt was recovered from numerous salines and

    Jan 1, 1938