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IC 7430 Low-Temperature Carbonization of Coal in JapanBy William T. Reid
Low-temperature carbonization of coal in Japan served as an important source of liquid fuels during the war. Six plants operating in Japan Proper produced 203,069 KL (53.7 million gallons) of liquid f
Feb 1, 1948
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RI 9159 - A Tomographic Computer Program With Constraints To Improve Reconstructions for Monitoring In Situ Mining LeachateBy Daryl R. Tweeton
The Bureau of Mines is investigating possible applications of geophysics to monitor leachate during in situ mining. Tomographic reconstruc-tion of seismic or electromagnetic crosshole data appears app
Jan 1, 1985
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IC 9271 Sources And Characteristics Of Quartz Dust In Coal MinesBy J. A. Organiscak
Quartz dust is one of the most significant ongoing health concerns in coal mining today. Since the early 1980's, the U.S. Bureau of Mines has conducted numerous studies in underground and surface
Jan 1, 1990
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RI 9505 - A Field Test of Electromagnetic Geophysical Techniques for Locating Simulated In Situ Mining Leach SolutionBy D. R. Tweeton
The U.S. Bureau of Mines, the University of Arizona, Sandia National Laboratories, and Zonge Engineering and Research Organization, Inc., conducted cooperative field tests of six electromagnetic (EM)
Jan 1, 2010
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RI 2638 The Critical Time Of Day For Coal-Line ExplosionsBy P. D. Tracy, M. W. Von Bernewitz
"IntroductionA study of 256 coal-mine explosions, which occurred during the period 1909-1924 killed 4113 men and injured 570 others, reveals the fact that there are the critical times of day when expl
Sep 1, 1924
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IC 8281 Respiratory Protective Devices Approved By The Bureau Of Mines As Of October 1, 1965 ? IntroductionBy R. H. Schutz
TO ASSIST users in the selection of reliable and satisfactory respiratory protective devices, the Bureau of Mines bas established five schedules of minimum performance requirements for the approval of
Jan 1, 1966
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IC 8281 Respiratory Protective Devices Approved By The Bureau Of Mines As Of October 1, 1965 ? Introduction (d50a2866-05cb-4fa4-a5e9-2b585dba8edb)By R. H. Schutz
TO ASSIST users in the selection of reliable and satisfactory respiratory protective devices, the Bureau of Mines bas established five schedules of minimum performance requirements for the approval of
Jan 1, 1966
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IC 8929 Economic Evaluation Of Borehole And Conventional Mining Systems In Phosphate DepositsBy Joseph A. Hrabik
The Bureau of Mines compared the feasibility of mining deep phosphate deposits by a borehole mining system with mining by proven conventional techniques. An economic comparison of the borehole mining
Jan 1, 1983
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Bulletin 154 Mining and Milling of Lead and Zinc OresBy Clarence A. Wright
The Missouri-Kansas-Oklahoma lead and zinc district, better known as the Joplin district, includes the mines in southwest Missouri and in those parts of Kansas and Oklahoma that are directly adjacent.
Jan 1, 1918
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Relative Permeability Studies: Gas-Oil And Water-Oil Systems - Summary And ConclusionsBy A. G. Loomis
METHODS for measuring relative permeability as a valid function of saturation were compared by the. Bureau of Mines, using core samples from representative oil-productive California formations, from t
Jan 1, 1962
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RI 9116 - Sampling, Characterization, and Evaluation of Midwest Clays for Iron Ore Pellet BondingBy L. A. Haas
The Bureau of Mines, in cooperation with three Minnesota agencies (Department of Natural Resources, Geological Survey, and the Iron Range Resources and Rehabilitation Board), investigated the potentia
Jan 1, 1987
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OFR-46-75 Electromagnetic Noise In Lucky Friday MineBy W. W. Scott
Measurements of the absolute value of electromagnetic noise and attenuation along a hoist rope were made in an operating hard-rock mine, Lucky Friday Mine, located near Wallace, Idaho. Spectra of elec
Jan 1, 1974
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OFR-32-80 Dewatering Systems For Surface Coal MinesBy J. E. Rourke, O&apos
This report incorporates a review of available dewatering technology and an evaluation of its relevance to surface coal mines in the Interior Province of the United States. Guidelines for the selectio
Jan 1, 1979
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RI 4748 Investigation Of The Royal John Lead-Zinc Deposits. Grant County, N. Mex.By John H. Soule
The Royal John mine was examined in November 1942 by a mining engineer of the Bureau of Mines, who proposed development of the Royal John and other properties in the area. Geologists of the U. S. Geol
Jan 1, 1950
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RI 8904 - Corrosion of Friction Rock Stabilizers in Selected Uranium and Copper-Mine WatersBy M. M. Tilman
The Bureau of Mines evaluated corrosion resistance of Split Set friction rock stabilizer mine roof bolts to aid in better prediction of useful service life. Electrochemical corrosion testing was condu
Jan 1, 1984
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RI 6884 The Use Of Coal And Modified Coals As Adsorbents For Removing Organic Contaminants From Waste WatersBy G. E. Johnson
Batch tests of coals and coal-derived materials were made by the Bureau of Mines to determine their effectiveness in removing organic contaminants (COD or chemical oxygen demand, comprising those orga
Jan 1, 1966
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RI 6293 The Ignition of Combustible Mixtures by Laminar Jets of Hot GasesBy Arthur E. Bruszak, Marcel Vanpée
In many practical combustion systems ignition may occur through contact with hot burned gases . Such a process plays a vital role in flame stabilization on bluff bodies . It is also of importance in t
Jan 1, 1963
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IC 8464 Silver Potential And Economic Aspects Of The Leadville District, Lake County, Colo.By Henry C. Meeves
The Bureau of Mines investigated the silver production potential of the Leadville (California) mining district, Lake County, Colo., in 1966-67. The mining history of the district, the ground condition
Jan 1, 1970
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IC 8567 Economic Studies Of Uses Of The Glass Fractions From Municipal Incinerator ResiduesBy Paul W. Johnson
Economic studies of four processes for using the glass fractions obtained from processing municipal incinerator residues are presented. Three processes--brick production, floor tile production, and gl
Jan 1, 1973
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IC 9027 - Control of Acid Mine Drainage - Proceedings of a Technology Transfer SeminarBy By Staff
"Acid mine drainage can be controlled by water treatment, retardation of the pyrite oxidation reaction system, or enhanced prediction that allows preventive action to be taken. The Bureau of Mines is
Jan 1, 1985