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  • NIOSH
    RI 2124 The Relative Safety of Brass, Copper and Steel Gauzes for Use in Miners' Flame Safety Lamps

    By A. B. Hooker, Iilsley. L. C.

    "Flame safety lamps have been used for about one hundred years in coal mines where a dangerous accumulation of explosive mine gas (methane) might occur and thus render the use of ordinary unprotected

    May 1, 1920

  • NIOSH
    RI 7372 Surface Tension And Density Of Liquid Tin

    By Alfred E. Schwaneke

    The surface tension from 240° to 844° C and the density from 236° to 583° C of 99.999 percent purity liquid tin has been measured using the maximum-bubble-pressure method. Results for surface tension

    Jan 1, 1970

  • NIOSH
    IC 6908 Underground Mill At The Doyle Mine, Shullsburg, Wis.

    By Wing G. Agnew

    It is thought that a brief description of the unique mining and milling procedure at the Doyle nine may be interesting to those engaged in small-scale operations at old mines or in working new ore bod

    Jan 1, 1936

  • NIOSH
    TPR 13 - Use of Vertical Boreholes for Assisting Ventilation of Longwall Gob Areas

    By C. H. Elder

    An experimental degasification program using a vertical borehole and vacuum pump to drain gas from the gob area of a longwall panel was successful at Bethlehem Mines Corporation, Cambria Division, No.

    May 1, 1969

  • NIOSH
    Associated Bibliography

    By Lloyd A. Morley, Robert Stefanko

    1 Abaibanel, S , "Deflection of Confining Walls by Explosive Loads," Israel Jour. Technology, vol. 4, n. 1, Feb 1966. 2 Albertoni, S and others, "Numerical Computation Methods for Implosion Process

    Jan 1, 1974

  • NIOSH
    RI 3036 Tests of the Strength of Concrete Stoppings Designed to Resist the Pressure of Explosions in Coal Mines

    By G. S. Rice, H. P. Greenwald, H. C. Howarth

    "Stoppings in coal mines serve, important and. vital functions, such as coursing the ventilating current, sealing off abandoned or dangerous workings, sealing fire areas, and separating mines at bound

    Sep 1, 1930

  • NIOSH
    RI 6381 Metathesis of Bastnasite and Solvent Extraction of Cerium

    By D. J. Bauer, V. E. Shaw

    Bastnasite concentrate was processed to recover total rare - earth content and obtain high - purity ceric nitrate . Reaction of the concentrate with 45 percent caustic soda for 1 hour at 180 ° C in st

    Jan 1, 1964

  • NIOSH
    RI 8376 Enhancing Germination of Indian Ricegrass Seed Used in Stabilizing Mineral Wastes

    By L. H. Wullstein

    Bureau of Mines research on methods for reclaiming land disturbed by the minerals sector of the economy has produced a specific procedure for effectively germinating seed of Indian ricegrass, a drough

    Jan 1, 1979

  • NIOSH
    Noncaking Coal Gasified In A Stirred-Bed Producer

    By R. V. Rahfuse

    Noncaking 0- by 2 -inch subbituminous coal from New Mexico was gasified with air and steam at 205 prig using a stirred-bed producer to determine coal losses by entrainment in the gas for this low-sulf

    Jan 1, 1974

  • NIOSH
    IC 7206 New Process For Controlling Mercury Vapor ? Introduction

    By Merle Randall

    Application of a new chemical spray in a mercury mine in which ore rich in native metal was causing salivation among the miners has given such favorable results that it is believed the process will be

    Jan 1, 1942

  • NIOSH
    Clearing the Air - Unidirectional Filtration/Pressurization System Protects Equipment Operators From Dust Exposure

    By Andrew Cecala

    Miner?s exposure to dust remains a top concern among regulatory agencies, particularly at production facilities with high levels of silica. This respirable dust is present in almost all operations and

    Jan 1, 2009

  • NIOSH
    IC 7184 Marketing Feldspar ? Properties

    By Robert W. Metcalf

    The feldspars are a series of related aluminum silicates containing varying proportions of potash, soda, rind lime; smaller amounts of other minerals arc likely to be present as impurities. They compr

    Jan 1, 1941

  • NIOSH
    RI 2766 Recent Progress In Slate Technology ? Introduction

    By Oliver Bowles

    Since 1922 when the Bureau of Mines issued a report2 covering the slate industry in detail, changes in technology have taken place which have an important bearing on the industry. The present paper co

    Jan 1, 1926

  • NIOSH
    Computerized System For Quantitative X-Ray Diffraction Analysis Of Pyrite In Coal

    By R. R. Schehl

    The Bureau of Mines has developed a quantitative Analysis for pyrite in coal by X-ray diffraction that can be accomplished in little more than 1 hour. To minimize the sample analysis time, data proces

    Jan 1, 1973

  • NIOSH
    RI 6171 Heats And Free Energies Of Formation Of Barium Oxide And Strontium Oxide

    By Alla D. Mah

    Combustion energies of barium and strontium were measured by means of the combustion bomb calorimeter. The heats of formation obtained for the oxides were ?H298.15 = -139,060 ± 700 cal/mole of barium

    Jan 1, 1963

  • NIOSH
    RI 5328 A Field Test For Selenium ? Summary

    By H. E. Peterson

    A study was undertaken by the Bureau of Mines to develop a simple, reliable test for field detection of selenium in rocks and soils. Two methods are described for qualitative detection of selenium, de

    Jan 1, 1957

  • NIOSH
    RI 6260 Heats Of Formation Of Two Crystalline Hydrates Of Ferrous Sulfate

    By L. H. Adami

    This paper reports the results of solution calorimetry conducted to obtain the heats of formation of crystalline FeS04?6.952H20 and FeS04?1.008H20, from. which values were derived for the stoichiometr

    Jan 1, 1963

  • NIOSH
    RI 8480 A Simple, Low-Cost Method for the Dissolution of Metal and Mineral Samples in Plastic Pressure Vessels

    By R. F. Farrell

    A goal of the U.S. Department of the Interior, Bureau of Mines, is the advancement of minerals technology through the development of improved metals and minerals processing. In support of this goal, t

    Jan 1, 1980

  • NIOSH
    RI 3281 Survey Of Fuel Consumption At Refineries In 1934 ? Summary

    By G. R. Hopkins

    The average quantity of heat needed to refine a barrel of crude oil in 1934 was 638,000 B.t.u., or about as much heat energy as contained in 5 gallons of fuel oil. Although the total heat utilized in

    Jan 1, 1935

  • NIOSH
    RI 3281 Survey Of Fuel Consumption At Refineries In 1934

    By G. R. Hopkins

    The average quantity of heat needed to refine a barrel of crude oil in 1934 was 638,000 B.t.u., or about as much heat energy as contained in 5 gallons of fuel.oil. Although the total heat utilized in

    Jan 1, 1935