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  • NIOSH
    Technology News - No. 463 - Machine-Mounted Continuous Respirable Dust Monitor

    Objective: To continuously monitor, display, and record concentration levels of respirable coal mine dust in mines to an accuracy of ±25% with a 95% confidence level for at least 30 days without serv

    Jul 1, 1997

  • NIOSH
    Technology News - No. 458 - Development of a Research Facility to Improve Mine Hoisting and Ore Pass Safety

    Objective: Construct a research facility to test sensor technology and engineering controls and to increase awareness of the proper functioning of mine hoists. Improve saferty and prevent injuries and

    May 1, 1997

  • NIOSH
    Technology News - No. 522 - Blast Area Security: Flyrock Safety

    The NIOSH Office of Mine Safety and Health has released communication products about flyrock safety in the form of informational brochures, flashcards, and toolbox talk materials. Both the mining and

    Dec 1, 2006

  • NIOSH
    RI 7948 Continuous Heavy Liquid Concentration of Brucite

    By T. O. Llewellyn

    The Bureau of Mines investigated the use of a heavy liquid in combination with fluid cyclones to separate brucite from a Nevada ore on a continuous basis, using a mixture of dibromomethane and trichlo

    Jan 1, 1974

  • NIOSH
    Recommendations

    1. Mining to prevent and control underground acid formation should begin with education imparted through: (A) Course work at mining schools to teach prospective engineers. (B) Training of engine

    Jan 1, 1970

  • NIOSH
    RI 8614 Effectiveness of Three Water Spray Methods Used To Control Dust During Bagging

    By Jon C. Volkwein

    The industrial sand industry has been exploring new techniques to reduce dust. One company was experimenting with adding water during bagging operations to the surface of the hag, and into the product

    Jan 1, 1981

  • NIOSH
    A Passive Means To Detect Hot Trolley Insulators

    By A. J. Hudson, M. R. Yenchek

    Faulty insulators on mine trolley/track haulageways may allow the flow of leakage currents into the mine roof and ultimately result in combustion of the local roof material. The National Institute for