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  • NIOSH
    RI 8452 Chemical and Physical Characterization of Amosite, Chrysotile, Crocidolite, and Nonfibrous Tremolite for Oral Ingestion Studies by the National Institute of Environmental Health Sciences (296d2815-b2eb-4c7e-8bfa-fed8f7af8276)

    By William J. Campbell

    The Federal Bureau of Mines provided five test materials--amosite, short-and long-fiber chrysotile, crocidolite, and nonfibrous tremo1ite--to the National Institute of Environmental Health Sciences (N

    Jan 1, 1980

  • NIOSH
    MLA 48-85 - Mineral Resources Of The Battle Creek Wilderness Study Area, Owyhee County, Idaho ? Summary

    By Richard A. Winters

    The 31,880-acre Battle Creek Wilderness Study Area (WSA) was evaluated for mineral resources by the U.S. Bureau of Mines in 1984. No mining district is in the area, nor were any mines or claims record

    Jan 1, 1985

  • NIOSH
    Induction of Unscheduled DNA Synthesis in V79 Cells by Diesel Emission Particles Dispersed in Simulated Pulmonary Surfactant

    By B. Z. Zhong, T. Ong, W. E. Wallace, W. Z. Whong, Z. W. Gu, M. J. Keane

    "Abstract-Diesel emission particles (DEP) from an engine operating on the Federal Test Procedure VDC were dispersed in an aqueous mixture of dipalmitoyl lecithin (DPL). a major component of pulmonary

    Dec 1, 1995

  • NIOSH
    RI 2015 Magnesite Industy in Austria

    By W. C. Phalen

    "Tho the term “magnesite” is generally applied to the iron-bearing carbonate of magnesium, such as is found in Austria and Hungary, by some Austrian magnesite is referred to as bruennerite. The minera

    Aug 1, 1919

  • NIOSH
    MLA 11-91 - Mineral Resource Appraisal Of The Diamond Peak Study Area, Butte, Clark, And Lemhi Counties, Idaho

    By Lucia Kuizon

    In 1986 and 1987, at the request of the U.S. Forest Service, the U.S. Bureau of Mines studied the Diamond Peak area comprising 183,000 acres in the Challis and Targhee National Forests in order to eva

    Jan 1, 1991

  • NIOSH
    RI 8548 An Apparatus and Procedure for Calibrating a Water Vapor Analyzer in the 0.1-to 15-ppm Range

    By Harold L. Rhodes

    The Bureau of Mines has developed a quantitative method to determine water vapor in helium in the range of 0.1 to 15 ppm by volume. This method uses the quantitative chemical reaction of H20 with CaH2

    Jan 1, 1981

  • NIOSH
    RI 8158 Seismic Detection of Trapped Miners Using In-Mine Geophones (bbd6751d-ec0a-4296-9101-992bc0fea64c)

    By James A. Powell

    A seismic system which utilizes in-mine geophones to detect trapped miners has been developed. Tests at the Bureau of Mines Safety Research Mine at Bruceton, Pa., and at two operating mines indicate s

    Jan 1, 1976

  • NIOSH
    RI 2363 Helium

    By R. B. Moore

    The story of helium is one of the romances of science . Probably nothing , except perhaps radium , compares with it in human interest . Helium is one of the best examples of a discovery in pure scienc

    Jun 1, 1922

  • NIOSH
    RI 5720 Spectrophotometric Determination Of Trace Amounts Of Copper In Tungsten Metal Powder ? Summary And Introduction

    By A. S. Prokopovitsh

    A spectrophotometric method for the determination of small amounts of copper in tungsten metal powder using the principle of solvent extraction has been developed by the Federal Bureau of Mines. The m

    Jan 1, 1961

  • NIOSH
    Regional Mineral Industry Review Of South Asia (f8642907-df86-42fe-b631-5b5210f257eb)

    By James A. West

    The South Asian countries of India, Pakistan, Afghanistan, Ceylon, Nepal, Bhutan, and Sikkim arc to varying-degrees just beginning to achieve significant economic and industrial development. These cou

    Jan 1, 1967

  • NIOSH
    RI 7646 Blending Crushed Coal By Recycling Through A Bin Equipped With A Particle Distributor

    By James L. Konchesky

    Crushed coal, consisting of a wide range of sizes, was effectively blended by recycling it through a bin equipped with a particle distributor. Vertical blending was accomplished by simply recycling th

    Jan 1, 1972

  • NIOSH
    Estimating the Quartz-Related Fibrogenic Potential of Respirable Coal Mine Dusts

    By R. L. Grayson, W. E. Wallace, T. Simonyi, J. C. Harrison

    "Application of an SEM-based methodology suggests a reason for past contradictory results on the relationship between quartz and coal workers' pneumoconiosis (CWP). Results indicate that coal seams wi

    Mar 1, 1992

  • NIOSH
    A Study Of RF Hazards At Low And Medium Frequencies To Blasting In Underground Coal Mines

    By J. G. Stuart, A. W. Cipkins, R. H. Thompson

    Preliminary safe distances for blasting wiring from typical electromagnetic sources are presented. The distances are for underground coal mines and electromagnetic sources in the frequency range below

    Jan 1, 1985

  • NIOSH
    RI 7642 Dispersal Of Coal-And Rock-Dust Deposits

    By J. M. Singer

    The objective of this investigation was to determine minimum air velocities and entrainment rates for coal and rock dust dispersion in wind tunnel experiments under conditions that simulate dispersion

    Jan 1, 1972

  • NIOSH
    RI 2128 Sulphur Dioxide as Factor in Smoke Problem, Salt Lake City

    By G. St John Perrott

    "The United States Bureau of Mines is cooperating with the State of Utah and the City of Salt Lake in an investigation of methods of abating the smoke nuisance in Salt Lake City. In the course of this

    May 1, 1920

  • NIOSH
    OFR-105-82 Diesel Exhaust Emissions From Engines For Use In Underground Mines

    By B. H. Eccleston

    Experimental data were obtained from two medium-duty diesel engines derated to qualify for use in underground mines. Gaseous and particulate emissions from these engines were measured and results prov

    Jan 1, 1981

  • NIOSH
    MLA 69-87 - Mineral Resources Of The Quigg West Wilderness Study Area, Granite County, Montana ? Summary

    By Donald O. Capstick

    A mineral survey of the 520-acre Quigg West Wilderness Study Area (MT-074-155) was conducted by the U.S. Bureau of Mines in 1986 at the request of the U.S. Bureau of Land Management in order to evalua

    Jan 1, 1987

  • NIOSH
    RI 8459 Three Coal Mine Gob Degasification Studies Using Surface Boreholes and a Bleeder System (f9612f02-d462-430e-89b1-9cb634908aa3)

    By S. D. Maksimovic

    The use of vertical surface degasification boreholes with bleeder systems and the use of a timbered bleeder system to degasify gob areas were studied by the Bureau of Mines. This report describes thre

    Jan 1, 1980

  • NIOSH
    RI 8175 Sampling Capability of Vacutainers for Fixed Gases and Low-Molecular-Weight Hydrocarbons

    By Robert W. Freedman

    Vacutainers are used by the Bureau of Mines and the Mining Enforcement and Safety Administration (MESA) for sampling mine air and products of combustion. Tests were conducted on both 10-ml and 30-ml s

    Jan 1, 1976

  • NIOSH
    OFR-10-71 Foam Suppression Of Respirable Coal Dust

    By I. O. Salyer

    This research was conducted with the objective of suppressing the respirable dust in coal mines by foam application. A formulation was developed for making a water-based, high-expansion, and limited s

    Jan 1, 1970