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  • NIOSH
    RI 2383 Ignition of Gas by Electric Detonators

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

    Several ignitions or mine pa, which might have led to explosions, and at least ona mine fire attributed to heated leg wires of electric detonators, have occm.rred. at rn1::.es in which outside shot f

    Aug 1, 1922

  • NIOSH
    Thigh-Calf And Heel-Gluteus Contact Forces In High Flexion (Experimental Results) - Introduction

    By Jonisha P. Pollard

    In restricted vertical working heights such as low-seam coal mines, workers are forced to assume kneeling or squatting postures to perform work. These postures are associated

    Jan 1, 2009

  • NIOSH
    Pneumatic Concentration Of Mica ? Objective

    To concentrate coarse mica particles using a dry beneficiation technique. Approach Concentrate coarse, II berated mica particles using a Bureau-designed system of crushers, screens, and a two-

    Jan 1, 1981

  • NIOSH
    Introduction (7976a256-9539-4b65-a7db-7937fbc841f0)

    The production of harmful pollutants from coal mines and/or from coal and associated strata has been a recognizable fact in the United States for over two hundred and seventy years. In 1698, Gabriel T

    Jan 1, 1970

  • NIOSH
    IC 6332 Mining Laws of Trinidad

    By John W. Frey

    This paper presents one of a series of digests of foreign mining legisla- tion and court decisions which is being prepared in advance of a general report relative to the rights of American citizens to

    Sep 1, 1930

  • NIOSH
    RI 2371 Why Miners' Portable Electric Lamps Require Safety Devices

    By L. C. Ilaley

    The Buresa. ot Mines at its Pittsburgh Station conducted tests aa earl7 a.a 1911 looking into the satety of miniature electric bulba. The first teata were maie with bulbs euch as were being sold with

    Jun 1, 1922

  • NIOSH
    The Aging Workforce: An Emerging Issue in the Mining Industry

    By Barbara Fotta

    According to the Bureau of Labor Statistics (BLS), workforce estimates of median age suggest that the median age of the mining workforce, which has been experiencing overall declines in numbers of emp

    Jan 1, 2004

  • NIOSH
    Laser Ignition Of Flammable Gas

    By William D. Monaghan, Thomas H. Dubaniewicz, Kenneth L. Cashdollar

    Emerging laser technologies are quickly gaining acceptance in the industrial workplace. Besides the risk of human exposure, one safety concern with the more intense lasers is the potential for ignitio

  • NIOSH
    Trunk Extension Strength and Muscle Activity in Standing and Kneeling Postures

    By Sean Gallagher

    Study Design. A split-plot experimental design was used to evaluate the influence of posture, trunk angle, and rotational velocity on peak torque output and myoelectric activity during maximal trunk e

  • NIOSH
    RI 2136 Disposal of Used Explosive Containers

    By C. Lorimer Colburn

    "High explosives are generally shipped in stout wooden boxes of convenient size, which are much sought after by miners and others for miscellaneous uses after they are emptied. The management of most

    Jun 1, 1920

  • NIOSH
    Flammability Of Gas Mixtures Containing Volatile Organic Compounds And Hydrogen

    By Sinisa M. Djordjevic, Isaac A. Zlochower, Kevin J. Liekhus, Cindy A. Loehr, Kenneth L. Cashdollar

    An experimental program was conducted to evaluate the accuracy of some current methods for predicting the flammability of gas mixtures containing hydrogen and flammable or nonflammable volatile organi

  • NIOSH
    A 20-Liter Furnace Test Method To Determine The Combustion Gas Toxicity Of Conveyor Belts

    By Maria I. De Rosa

    The U.S. Department of Energy Pittsburgh Research Center2 conducted experiments with mine conveyor belt samples in a 20-L furnace and in a laboratory fire tunnel to measure and compare the major toxic

  • NIOSH
    Computer Simulation of Mine Evacuation

    By David Hoadley, Kenneth R. Maser, Ashok B. Boghani, James E. Billar, D. Randolph Berry, Mackenzie Burnett, Robert H. Trent

    6. Computer Simulation of Mine Evacuation Analysis of mine evacuation involves manipulating a large number of interacting variables, such as mine passages, hoist movements, miner position etc. , wh

    Jan 1, 1976

  • NIOSH
    IC 6805 The Explosion and Fire Hazards of Hydrocarbon-Carbon Tetrachloride Mixtures

    By G. W. Jones, R. E. Kennedy

    Most gasolines and naphthas are mixtures of paraffin- series hydrocarbons and comprise such substances as pentane , hexane , heptane , octane , and others up to perhaps dodecane . Many of these hydroc

    Nov 1, 1934

  • NIOSH
    Regional Bumps: Case studies from the 1958 Bump Symposium

    By J. Whyatt

    A variety of dynamic failure cases with regional impact were described at a bump symposium held in 1958. These types of events, while rare, are of particular interest because their ability to impact

    Jan 1, 2009

  • NIOSH
    Introduction (7540015d-9062-4067-8932-0f3020cba863)

    By Maria I. De Rosa

    Coal mine fires pose a constant danger to the safety of miners and to their livelihood. Underground mine fires pose an added hazard because of the confined environment with remote exits. Enactment of

    Jan 1, 2004

  • NIOSH
    Underground Mining Facts – 2003

    1. Data from the Mine Safety and Health Administration (MSHA) indicate that a total of 44,015 employees worked in underground mining locations in 2003, corresponding to 44,778 full-time equivalent (FT

    Feb 1, 2005

  • NIOSH
    RI 8635 The Determination of the Points of Zero Charge of Fine Mineral Particles by a Titration Technique

    By D. A. Stanley

    The Bureau of Mines has developed a simple titration technique for determining the points of zero charge (PZC) on minerals. The technique consists of titrating a mineral slurry with the potassium salt

    Jan 1, 1982

  • NIOSH
    RI 8442 Low-Temperature Heat Capacities and High-Temperature Enthalpies of Chiolite (Na5Al3F14)

    By J. M. Stuve

    Low-temperature heat capacities of chiolite (Na5Al3F14) were determined by adiabatic calorimetry in the temperature range 5.8 to 300 K. The derived standard entropy (S°, 298.15) was 115.6 ± 0.2 cal/de

    Jan 1, 1980

  • NIOSH
    RI 7369 Low-Temperature Heat Capacities And Entropies At 298.15° K Of Goethite And Pyrophyllite

    By E. G. King

    Low-temperature heat capacity determinations of the minerals goethite and pyrophyllite were made in the temperature range from 510 to 298° K. The entropies at 298.15° K were evaluated as 14.43 ±0.15 c

    Jan 1, 1970