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  • NIOSH
    Improved Shearer-Clearer For Longwall Dust Control - Objective

    Lower the respirable dust expo? sure of longwall shearer operators Approach Use improved water sprays on the shearer machine to direct the dusty air toward the face. In laboratory tests and act

    Jan 1, 1986

  • NIOSH
    Safer Removal Of Dragline Wire Rope Terminations ? Objective

    Reduce the hazards to which mine personnel are exposed by providing safer procedures for removing dragline wire rope terminations. Background The termination points of wire ropes used on dragli

    Jan 1, 1986

  • NIOSH
    Technology News - No. 443 - Design Practices for Multiple-Seam Room-and-Pillar Mines

    Provide room-and-pillar operators with practical in- formation and guidelines concerning multiple-seam mine design to reduce ground problems associated with the interaction of adjacent working.

    Jan 1, 1994

  • NIOSH
    Automated Breathing And Metabolic Simulator - Objective

    Develop a machine which can accurately simulate both the breathing and metabolic functions of a human being. The advantages of such a machine over a human being for testing of respiratory protective d

    Jan 1, 1987

  • 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
    Fuel Additives For Reducing Diesel Soot Emissions - The Problem

    The National Institute of Occupational Safety and Health has classified diesel exhaust as a potential human carcinogen. Though standards for diesel particulate matter (DPM) in the work place have not

    Jan 1, 1990

  • NIOSH
    8 Methods For Protecting Coal Miners

    The following methods should be used to protect miners from the adverse health effects of exposure to respirable coal mine dust and respirable crystalline silica: ? Informing workers about hazards

    Jan 1, 1997

  • NIOSH
    Impact Assessment And Blast Design For Surface Mines With Low-Frequency Vibration Problems ? Objective

    Identify abnormal low-frequency blast vibrations. Develop blast design procedures for such adverse vibration cases, including the selection of delay times based on ground conditions, vibration frequen

    Jan 1, 1990

  • NIOSH
    RI 2320 Performance of Fan-Pipe Installations In Metal Mines

    By G. E. McElroy, D. Harrington

    The use of shall electrically- driven fans , in conjunction with air- pipe of various diameters is becoming of increasing importance for the ventilation of working places in metal mines through which

    Feb 1, 1922

  • NIOSH
    RI 2384 Failure of Center Shots in Blasting

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

    In lare-scal e blasting, it is customary to fire me.l'\Y shot.!:l simu1. taneously. The electric !atonators ara usually conneced in seies, ard are fired either from a power circuit or :from a blasting

    Aug 1, 1922

  • NIOSH
    RI 8318 Use of Gas Diffusion Membrane Electrodes To Investigate Coordination Species in the Sulfur Dioxide/Citrate System

    By S. E. Khalafalla

    The ability of potentiometric, gas-sensing electrodes to reliably monitor free gaseous molecules in solution has been recently demonstrated. A gas such as sulfur dioxide from a dilute sample solution

    Jan 1, 1978

  • NIOSH
    RI 9099 - Flotation of Silicon Carbide From Waste Sludges

    By C. W. Smith

    The Bureau of Mines conducted laboratory beneficiation tests on four samples of waste. granite sludge to devise a method of recovering silicon carbide (SiC). Froth flotation using creosote as a collec

    Jan 1, 1987

  • NIOSH
    Introduction (3cf7235d-a887-450c-bdd5-d6383bd539a7)

    By R. V. Ramani, A. S. C. Owili-eger

    The Federal Coal Mine Health and Safety Act of 1969 (sec. 303 (b)) stipulates that no working section of the mine shall contain more than 0.5 percent carbon dioxide and no harmful quantities of other

    Jan 1, 1974

  • NIOSH
    RI 2571 Ash In Anthracite

    By C. P. Hood

    "The amount of ash in anthracite coal interests every buyer, and occasionally produces caustic comment, but there is a lack of authentic figures that will take the subject out of the realm of opinion

    Feb 1, 1924

  • NIOSH
    Three Dimensional Microseismic Monitoring of a Utah Longwall

    By J. L. Ellenberger

    The National Institute for Occupational Safety and Health (NIOSH) has continued the research role of the former US Bureau of Mines (USBM) to engineer techniques that will reduce the hazards in the min

    Jan 1, 2002

  • NIOSH
    RI 8232 Stereographic Method of Determining Whether Planes of Weakness Transect Pillars

    By Jack A. Touseull

    The Bureau of Mines has developed a simple stereographic method of analyzing the orientation of single and intersecting planes of weakness in vertical pillars of parallel symmetry. From this method, i

    Jan 1, 1977

  • NIOSH
    Mine Shaft Fire And Smoke Protection - Objective

    Detect fires in or near mine shafts, isolate smoke filled areas, and remotely extinguish fire. Approach A system (of sensors, automatic alarms, an aboveground control console, remotely operated

    Jan 1, 1977

  • NIOSH
    IC 6299 Hazards and Proteciton of Underground Transformer Installations

    By D. J. Parker

    Since the introduction of electricity into the mines of the United States , the hazards incident to the industry have increased materially in both coal and metal mines . For economic reasons the tende

    Jul 1, 1930

  • NIOSH
    Anomalous Enhancement of the Surface IR Modes in Photoacoustic Spectroscopy of SiO Particles

    By M. S. Seehra, R. S. Pandurangi

    "A comparative study of the intensities of the IR modes in the pjlotoacoustic and. FrIR spectroscopy of amorphous and crystalline SiO2 particles is presented. It is observed that in photoacoustic spec

    Jan 1, 1989

  • NIOSH
    Introduction (5625edc6-8736-4353-9aa8-19f5aa2d6837)

    By R. V. Ramani, R. Stefanko, G. W. Luxbacher

    Mine ventilation can be broadly defined as the branch of mining engineering primarily concerned with the controlled flow of air through mine airways to maintain an acceptable atmospheric environment w

    Jan 1, 1977