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Safety Equipment and Control DevicesBy David Hoadley, Kenneth R. Maser, Ashok B. Boghani, James E. Billar, D. Randolph Berry, Mackenzie Burnett, Robert H. Trent
C.5 Safety Equipment and Control Devices Safety equipment and control devices serve two principal functions in mine escape hoists. First, they can be used to provide important safety features such
Jan 1, 1976
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RI 6070 Flotation Of Spodumene From Pegmatites Of Cleveland County, N. C.By Thomas L. McVay
The Bureau of Mines made laboratory batch and small-scale continuous flotation tests of a sample of pegmatite rock from a deposit of the Lithium Corporation of America, Inc., near Kings Mountain, N.C.
Jan 1, 1962
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RI 7376 Beneficiation Of Georgia Kyanite OreBy James S. Browning
The Bureau of Mines conducted laboratory and small-scale continuous tests of kyanite ore from Georgia to determine the technical feasibility of recovering commercial-grade kyanite concentrates by flot
Jan 1, 1970
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Deep Cutting Double Arm Shearer - ObjectiveReduce the airborne dust generated in a longwall coal face. Approach Reduce the rotational speed and increase the depth-of-cut of the longwall shearer. How It Works An Anderson-Mavor AM500 d
Jan 1, 1981
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RI 8702 - Electromagnetic Surface Fields Due to a Magnetic Dipole Buried in a Three-Layered EarthBy Steven M. Shope
The Bureau of Mines electromagnetic trapped miner location and communications system requires a thorough understanding of through-the-earth electromagnetic wave propagation. An earth model incorporati
Jan 1, 1982
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Sheathed Rock-Breaker Explosive Charge - ObjectiveTo develop an explosive charge that will effectively break rock in underground mines and that can be safely fired without the use of blast-holes or the need for stemming. Approach The Bureau of
Jan 1, 1983
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RI 7032 Reservoir Evaluation, I. D. Morgan Lease, Smithfield Oilfield, Grant District, Wetzel County, W. Va.By Charles E. Whieldon
This report presents the results of a study on part of the Smithfield oilfield, Wetzel County, W. Va. The primary purpose of the investigation was to determine the original and the present volume of s
Jan 1, 1967
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RI 9087 - Recovery of Critical Metals by Carbonyl ProcessingBy A. Visnapuu
The Bureau of Mines investigated carbonyl processing techniques for the recovery of the critical metals Ni, Co, Mn, and Cr from domestic primary and secondary sources. In most cases, the source materi
Jan 1, 1987
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TPR 56 - Demonstration of Safety Plugging of Oil Wells Penetrating Appalachian Coal MinesBy G. E. Rennick, F. E. Armstrong, J. Pasini, J. R. Abrams
An oil well penetrating the Pittsburgh bituminous coalbed in northern West Virginia was plugged and safely mined through 3 months later. A sensitive chemical tracer, introduced into the oil reservoir
Jul 1, 1972
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RI 8312 Selenium Removal From Acidic Waste Water Using Zinc Reduction and Lime NeutralizationBy W. N. Marchant
The Bureau of Mines improved removal of selenium from zinc smelter acidic gas scrubber effluent by using zinc dust to precipitate soluble selenium prior to lime neutralization. Lime neutralization alo
Jan 1, 1978
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IC 8980 A Review Of Phosphatic Clay Dewatering ResearchBy Walter E. Pittman
This Bureau of Mines study surveys the current state of technology and the various research efforts that have been undertaken to dewater the dilute phosphatic clays generated in the production of phos
Jan 1, 1984
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IC 7846 Chemical Solidification Of Soil In Tunneling At A Minnesota Iron-Ore Mine ? Summary And IntroductionBy R. O. Pynnonen
Tunnel-driving is recognized as a hazardous occupation; adequate support of roof and sides for preventing accidents from falling material is usually one of the most important safety problems. Where ex
Jan 1, 1958
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An Underground Electromagnetic Sounder ExperimentBy Lambert Dolphin, George Oetzel, Robert Bollen
An electromagnetic sounder developed for an archaeological application in Egypt has been successfully tested in a California dolomite mine. Chambers in the mine 100 to 130 feet from the surface gave i
Jan 1, 1973
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Evaluation Of Mining Activities Using A Scenario Interview ApproachBy Fred Turin, Kim Cornelius, Lisa Steiner
NIOSH researchers have been examining underground coal mining activities in order to evaluate work crew hazards. In 1994 a continuous mining machine operator was killed by falling roof during extended
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MLA 52-82 - Mineral Resources Of The Golden Trout Wilderness Tulare And Inyo Counties, California ? Summary StatementBy Nicholas T. Zilka
One mineral deposit in the Golden Trout Wilderness has potential. The currently producing Pine Tree Mine on the Little Kern River has an estimated 120,000 tons (109,000 t) each of indicated and inferr
Jan 1, 1982
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RI 9206 - Model of Coal Dust Explosion Suppression by Rock Dust EntrainmentBy John C. Edwards
The Bureau of Mines developed a mathematical model to calculate the aerodynamically induced lifting of coal and rock dust from a composite deposition on a mine entry floor and the subsequent transport
Jan 1, 1988
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IC 8940 Evaluation Of Alumina Extraction From Coal Waste: Composition And AvailabilityBy Roy T. Sorensen
This Bureau of Mines report presents the results of a study to rank technologies for extraction of alumina from bottom ash and coal shale. The available literature on composition and availability of c
Jan 1, 1983
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RI 7313 High-Purity Zinc And Tin By Amalgam ElectrorefiningBy D. H. Chambers
The Bureau of Mines developed a process for producing high-purity zinc and tin by electrorefining from liquid amalgams. Commercial grade metals were dissolved in mercury to produce saturated amalgams
Jan 1, 1969
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RI 3673 Stemming in Metal Mines, Progress Report 5 Comparison of Dust and Gases Produced from Blasting Charges of Dynamite in Drill Holes, in Bombs, and in Mud-Cap ShotsBy Wing G. Agnew, John A. Johnson
"INTRODUCTION This paper is one of a series being published by the Bureau of Mines pertaining to an investigation on the use of stemming in metal mines now being conducted at the Mount Weather Testing
Dec 1, 1942
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RI 7986 Electrochemical Anodic Reaction Rate of Vanadium Metal With Molten VC12-VC13-NaC1 MixturesBy A. E. Raddatz
The Bureau of Mines has determined the electrochemical rate of anodic dissolution of vanadium metal in a VC12-VC13-NaC1 electrolyte at 860' C for the purpose of elucidating the reaction mechanism
Jan 1, 1974