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  • NIOSH
    RI 7127 The Incendivity Of Permissible Explosives In Coal Dust-Gas-Air Mixtures

    By C. M. Mason

    Mechanical mining produces large quantities of very fine coal dust called float dust. The associated increase in hazard requires a reexamination of the Bureau of Mines method of evaluating the incendi

    Jan 1, 1968

  • NIOSH
    Cooperative Opportunity In Developing - A Linear Cutting Drum - Objective

    Design and test a high-production coal mining machine that generates less respirable dust. Background Current coal cutting systems generate excessive amounts of airborne respirable dust and fin

    Jan 1, 1995

  • NIOSH
    Medium Frequency Vehicular Control And Communication Systems For Underground Mines

    By Harry Dobroski, Larry G. Stolarczyk

    Theoretical and experimental research sponsored by the U.S. Bureau of Mines shows that medium frequency (MF) electromagnetic (EM) signals propagate great distances in an underground environment such a

  • NIOSH
    Engineering Methods For The Design And Employment Of Wood Cribs - Objective

    To minimize support costs and to improve ground control by improving wood-crib design and utilization through the development of engineering methods that will match the placement and performance of th

    Jan 1, 1994

  • NIOSH
    Air Velocity Transducer - Objective

    Continuous remote sensing of air speed In underground mine airways. Approach An ultrasonic technique measures a form of air turbulence which is proportional to air velocity. How It Works T

    Jan 1, 1982

  • NIOSH
    RI 8047 - Hydraulic Stimulation Increases Degasification Rate Of Coalbeds

    By C. H. Elder, Maurice Deul

    Coal degasification boreholes drilled from the surface have been success - fully hydraulically stimulated to increase the flow of gas from the coal. This Bureau of Mines report describes the hydraulic

    Jan 1, 1975

  • NIOSH
    Human Engineered Cabs

    Mining machine cabs were built to comfortably fit 90 percent of adult American males, and have controls that allow fast natural reactions during emergencies. These cabs and controls also fit 40 percen

    Jan 1, 1978

  • NIOSH
    Electrolytic Method For Recycling Scrap Batteries - Objective

    To devise an economical, environmentally acceptable method for recycling scrap lead-acid batteries. Approach A combination electrorefining-electrowinning method for recycling lead metal and sludg

    Jan 1, 1983

  • NIOSH
    New Ideas For Keeping Miners Away From Unsupported Roof ? Objective

    Improve the health and safety of underground mine workers by finding ways of keeping them away from unsupported areas of the mine. Background Roof falls have been the leading cause of fatal acci

    Jan 1, 1991

  • NIOSH
    Mathematical Modeling of Spontaneous Heating of a Coalbed – RI 9296

    By John C. Edwards

    To have the capability to predict the development of localized spontaneous heating within a porous coalbed that is subjected to forced air ventilation or in an otherwise quiescent environment in which

    Jan 1, 1990

  • NIOSH
    New Water Spray Cooler ? Objective

    To cool hot working environments in deep mines more efficiently, while substantially reducing the maintenance required by presently used cooling coil heat exchangers. Approach A mine's chil

    Jan 1, 1981

  • NIOSH
    Improved Monitoring Systems For Rock Noise Detection - Objective

    Design a new acoustic monitoring system to more accurately forecast impending rock bursts, and to assist in understanding the rock burst phenomenon. Background Rock bursts arc the major cause of

    Jan 1, 1989

  • NIOSH
    Underground mine fire preparedness - Part 3 of 4: underground fire-fighting experiences and workers? perceptions of training and readiness for fire-fighting

    By William J. Wiehagen

    This is the third in a series of four articles that discuss underground fire-fighting preparedness. As with the first two articles, it is based on interviews with 214 miners conducted at 7 underground

    Jan 1, 1997

  • NIOSH
    RI 8679 Hydrometallurgical Treatment of Arsenic-Containing Lead-Smelter Flue Dust

    By P. A. Bloom

    Arsenic-containing flue dusts are currently being stockpiled by several nonferrous smelters in the United States. These stockpiles are a source of environmental concern since the dusts can be transpor

    Jan 1, 1982

  • NIOSH
    Portable Remote Control System For Trolley Circuit Breakers - Objective

    To enhance safety and efficiency when moving large mining equipment under energized trolley lines, and to assist in compliance with Section 75.1003.2, 30 CFR. Approach A system was designed, using

    Jan 1, 1981

  • NIOSH
    Load Capacity And Stiffness Characteristics Of Screen Materials Used For Surface Control In Underground Coal Mines

    By Dennis R. Dolinar

    Screen material in the form of welded wire mesh and geogrids are used in underground coal mines to prevent the fall of small pieces of rock from the roof between roof bolts. Further, if the screen is

  • NIOSH
    Employment And Injuries In The Fuel Industries

    By Forrest T. Moyer

    General injury experience in the mineral fuel industries was less favorable in 1965. Of the major industry groups, the coal mining and the coke industries had higher injury-frequency and severity rate

    Jan 1, 1967

  • NIOSH
    RI 8681 Beneficiation of a Phosphate Ore Produced by Borehole Mining

    By B. E. Davis

    As part of its program to increase the domestic availability of critical minerals, the Bureau of Mines conducted characterization and beneficiation studies on a St. Johns County, Fla., phosphate ore t

    Jan 1, 1982

  • NIOSH
    RI 7736 Extraction Of Silver From Refractory Ores

    By B. J. Scheiner

    Silver ores from the Candelaria District, Nevada, and Round Mountain District, Colorado, were investigated mineralogically and metallurgically. Silver minerals of four distinct groups were identified:

    Jan 1, 1973

  • NIOSH
    RI 7649 Methane Migration Characteristics Of The Pocahontas No.3 Coal Bed

    By Fred N. Kissell

    Methane-flow and pressure data taken from a mine in the Pocahontas No. 3 coalbed are compared with flow rates from lump coal obtained in laboratory experiments. From this, it is concluded that the mai

    Jan 1, 1972