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  • NIOSH
    RI 3132 Experiments to Determine the Minimum Amount of Coal Dust Required for Propogation of a Mine Explosion

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

    "Experience and experiment have goth shown that a cloud of coal-dust in air can be inflamed and an explosion developed only when a certain minimum concentration of the dust in air has been equaled or

    Aug 1, 1931

  • NIOSH
    RI 8780 Reducing Longwall Tailgate Workers' Dust Exposure Utilizing Water-Powered Scrubbers

    By John A. Organiscak

    Laboratory and underground studies were conducted by the Bureau of Mines to evaluate the effectiveness of a water-powered scrubber and a brattice partition to create a clean split of air for longwall

    Jan 1, 1983

  • NIOSH
    Fugitive Carbon Based Gases Blasting Related Or Not (99e15d94-9885-42e6-999a-5694495b27e3)

    By Fred Baldassare, Marcia Harris, Kenneth K. Eltschlager

    Surface mine blasting was recently investigated as a potential source of high concentrations of stray gases found in nearby residences of western Pennsylvania. In one incident carbon monoxide was dete

  • NIOSH
    RI 8392 - Forecasting Methane Hazards In Metal And Nonmetal Mines

    By Robert P. Vinson, Fred N. Kissell, Edward D. Thimons

    Because of the high number of accidental methane gas ignitions in metal and nonmetal mines, the Bureau of Mines searched for a simple guideline that would allow mine personnel to evaluate the methane

    Jan 1, 1979

  • NIOSH
    Analysis For Mercury In Coal

    By M. D. Schlesinger

    Mercury exists in coal at very low levels; the structure of coal, the vapor pressure of mercury, and its almost universal occurrence introduce unusual problems into the analytical methods. Round-robin

    Jan 1, 1971

  • NIOSH
    RI 7499 Heat Of Formation Of Cuprous Cyanide And Its Heat Capacity From 10° To 400° K

    By A. R. Taylor

    Using solution calorimetry, the following heats of reaction were determined: (1) NaCN(c) + 1/Cu20(c) + 129H20(l) ? CuCN(c) + NaOH?128.5H2O ?H = -13.44±0.10 kcal/mole, (2) HCN(2) + NaOH?128.5H

    Jan 1, 1971

  • NIOSH
    Results and Recommendations

    By Lloyd A. Morley, Alan M. Christman

    General Six open-pit metal mines, five copper and one molybdenum, were visited during the course of the research. Four were investigated twice, in summer and in winter, in order to determine the e

    Jan 1, 1976

  • NIOSH
    OFR-54-88 Estimated Impacts On U.S. Gross National Product (GNP) And Employment Resulting From A U.S. Embargo On South African Platinum-Group Metal Supplies ? Executive Summary

    By Marilyn Biviano

    This analysis was conducted in response to concerns raised by the Chairman of the Energy and Commerce Committee of the House of Representatives regarding the potential impacts on automobile production

    Jan 1, 1988

  • NIOSH
    IC 6618 Accident experience and cost in Pennsylvania anthracite and bituminous mines 1926-1930

    By W. J. Fene

    "The prevalence of accidents in the coal-mining industry has prompted a study of the workmen's compensation laws of the various States and the statistics of accident costs, for the purpose of explaini

    May 1, 1932

  • NIOSH
    Numerical Study On Spontaneous Combustion Of Coal In U.S. Longwall Gob Areas

    By Liming Yuan

    In order to reduce fire hazards caused by spontaneous combustion in longwall gob areas, a computational fluid dynamics (CFD) study is being conducted by National Institute for O

    Jan 1, 2009

  • NIOSH
    IC 6182 XI. Mining Laws Of Mexico ? Prefatory Note

    By Paul M. Linebarger

    This paper is one of a series of digests of foreign mining legislation and court decisions prepared in advance of a general report relative to the rights of American citizens to explore for minerals a

    Jan 1, 1929

  • NIOSH
    IC 9237 Ultra-High-Purity Silicon For Infrared Detectors: A Materials Perspective

    By Clark R. Neuharth

    To assess the supply status of ultra-high-purity silicon for national defense needs, the U.S. Bureau of Mines conducted a general study of the availability of materials and processing technology for s

    Jan 1, 1989

  • NIOSH
    RI 2398 Explosion-Proof Equipment

    By L. C. IlsLey

    A n'Ulllber or operators have installed f'lBJ!le-proot or so-called exploaion­ proot electrical outfits, under the impression that such equipments met· all of the reqiirements of the Bureau of Mines

    Sep 1, 1922

  • NIOSH
    OFR-49-95 Economic Feasibility Of Mining In The Colville Mining District, Alaska

    By James R. Coldwell

    Mining and processing cost analyses were conducted by the U.S. Bureau of Mines on stratiform zinc-lead-silver, coal, and stratiform barite deposit types that are found in the Colville Mining District.

    Jan 1, 1995

  • NIOSH
    Technology News - No. 501 -Measuring Very Low Air Velocities in Underground Metal/Nonmetal Mines

    Objective To accurately measure very low air velocities (0-100 ft/min) in U.S. large-opening underground metal/nonmetal mines. Background Hundreds of metal/nonmetal underground mines operate

    Jan 1, 2003

  • NIOSH
    RI 6865 A Machine-Test Method For Measuring Carbon Dioxide In The Inspired Air Of Self-Contained Breathing Apparatus

    By E. J. Kloos

    The Bureau of Mines devised a new machine-test method for measuring carbon dioxide inspired by a wearer of self-contained breathing apparatus. The new method compares favorably in speed and precision

    Jan 1, 1966

  • NIOSH
    RI 6254 Vacuum Arc Melting And Casting Of Copper

    By P. G. Clites

    This study was undertaken to determine the effect of consumable-electrode vacuum arc melting on the properties of copper and to determine the applicability of the process to the production of cast sha

    Jan 1, 1963

  • NIOSH
    Technology News - No. 447 - Dust Collector Discharge Shroud Reduces Dust Exposure to Drill Operators at Surface Coal Mines

    To reduce air be respirable dust generated from emptying dry dust collectors on small truck-mounted drills used at surface coal mines.

    Jan 1, 1995

  • NIOSH
    RI 3107 A Practical Method Of Solving The Emergency Manganese Problem

    By Jr. Harty

    Intensive work on the deoxidation of steel with manganese-silicon alloys by the U. S. Bureau of Mines has shown that the use of those alloys, which may be produced from our domestic manganese ores, wo

    Jan 1, 1931

  • NIOSH
    RI 3107 A Practical Method Of Solving The Emergency Manganese Problem ? Summary

    By C. H. Herty

    Intensive work on the deoxidation of steel with manganese-silicon alloys by the U. S. Bureau of Mines has shown that the use of those alloys, which may be produced from our domestic manganese ores, wo

    Jan 1, 1931