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OFR-61-83 Design, Construction & Development Of In Situ Mining WellsBy David L. Shuck
This report was prepared for the Bureau of Mines to describe the current methods of design, construction, and development of wells for in situ leaching of uranium. The discussion includes the alternat
Jan 1, 1982
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RI 5386 Change In Calorific Value And Certain Other Properties Of High-Volatile Bituminous-Coal Samples During Storage ? Summary And ConclusionsBy Roy F. Abernethy
All samples tested showed some loss of heating value for the 5-month period under all 4 storage conditions. The losses increased as the time of storage increased, with the pan-storage samples showing
Jan 1, 1958
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IC 8796 Cost Of Producing U308 From Ammonium Bicarbonate In Situ Leach Solution By The Multiple-Compartment Ion-Exchange SystemBy Masami Hayashi
The Bureau of Mines estimated the cost for ,3 uranium ion-exchange recovery system using five grades of 17.0, leach solution producing 815,570 pounds of U 0? per year from an ammonium bicarbonate in s
Jan 1, 1979
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IC 8170 Injury Experience In The Nonmetal Industries (Except Stone And Coal), 1959 ? Introduction And SummaryBy John C. Machisak
INJURY and employment figures for nonmetal mines and mills in 1959 are presented in this publication. Data for nomnetal mines are presented separately from those for nonmetal mills. The Bureau of Mi
Jan 1, 1963
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Estimated Sound Power Radiated By Surfaces On A Continuous Miner Tail Section Using Vibration MeasurementsBy David S. Yantek
Miners in underground coal mines experience prolonged exposure to high noise levels, often with A-weighted sound levels in excess of 90 dB. Field tests have shown that the continuous miner conveyor i
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RI 8777 Correlation of LANDSAT and Air Photo Linears With Roof Control Problems and Geologic FeaturesBy Jacqueline H. Jansky
The Mine Safety and Health Administration (MSHA), U.S. Department of Labor, did a linear analysis for a new underground coal mine in Grant County, WV, through the interpretation of LANDSAT imagery and
Jan 1, 1983
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RI 7148 Beryllium Resources Of Idaho, Washington, Montana, And OregonBy Eldon C. Pattee
Reconnaisance samples of reported beryllium occurrences in Idaho, Washington, Montana, and Oregon were chemically and spectroscopically tested in a mobile laboratory. The two predominant types of occu
Jan 1, 1968
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RI 8507 Structure Response and Damage Produced by Ground Vibration From Surface Mine BlastingThe Bureau of Mines studied blast-produced ground vibration from surface mining to assess its damage and annoyance potential, and to determine safe levels and appropriate measurement techniques. Direc
Jan 1, 1980
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MLA 87-83 - Mines And Prospects In The Seafoam Mining District, Custer County, Idaho ? SummaryBy Nathan T. Lowe
This report updates an accounting of mines and prospects in the Seafoam mining district, Custer County, Idaho, begun during mineral appraisal of the Idaho Primitive Area. Thirty-two mine and prospect
Jan 1, 1983
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OFR-2-72 Program Of Acoustic Research For Underground Coal Mining OperationsBy Damon C. Gray
This report contains a recommended program of acoustic research to be conducted by the U. S. Bureau of Mines. The program is directed toward the abatement and control of machinery noise in underground
Jan 1, 1971
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IC 8212 Subsurface Disposal Of Industrial Wastes In The United States (c80b6827-b919-45ee-83ab-db0c746b2c5d)By Erle C. Donaldson
A study of subsurface waste disposal in the United States shows that in eight States a wide variety of industrial wastes are being injected into formations ranging in age from Precambrian to Recent. M
Jan 1, 1964
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IC 8212 Subsurface Disposal Of Industrial Wastes In The United StatesBy Erle C. Donaldson
A study of subsurface waste disposal in the United States shows that in eight States a wide variety of industrial wastes are being injected into formations ranging in age from Precambrian to Recent. M
Jan 1, 1964
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RI 8046 Electrophoretic Mobilities and Cation Exchange Capacities of Florida Phosphate SlimesBy Alexander May
The Bureau of Mines, in cooperation with the Florida phosphate mining industry, investigated the dewatering of waste phosphatic slimes. Part of this investigation was to determine the electrophoretic
Jan 1, 1975
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IC 8111 Water As An Inert For Neutralizing The Coal Dust Explosion Hazard ? Summary And IntroductionBy Donald W. Mitchell
Research shows that water neutralizes the explosion hazard of coal dust when present in sufficient quantity and when intimately mixed with the dust. The quantity of water required to neutralize coal d
Jan 1, 1962
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Use Of The Mining Rock Mass Rating (MRMR) Classification: Industry ExperienceBy Gabriel S. Esterhuizen, Jarek Jakubec
In 2000, Laubscher’s Mining Rock Mass Rating (MRMR) classification system was updated and published. The new system brought a few fundamental changes that were in direct response to the challenges and
Jan 5, 2007
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OFR-2-80 Development Of New Design Concepts For Construction Of Valley FillsBy LeRoy D. Loy
The disposal of excess overburden from surface mining can be accomplished by use of a reclamation technique entitled head-of-hollow or valley fill. This report attempts to assess current valley fill r
Jan 1, 1978
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RI 7496 Oxidation Of Cobalt-Nickel-Aluminum Alloys At 1,351° To 1,429° KBy Robert M. Doerr
The research objective was to determine the effect of aluminum alloy additions on the oxidation behavior of cobalt-nickel alloys. Thirty high-purity alloys were reacted with 02 at 0.5 atm at 1,351°, 1
Jan 1, 1971
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The Mineral Industry Of Other East African Countries - Burundi (5762e8c8-9f9a-4334-a3cd-7f4c0b3335ab)By Kevin Connor
During 1986, the Government continued with efforts to ease the country's almost total reliance on coffee exports for trade revenues by allocating 45% of the Government's budget to commerce a
Jan 1, 1988
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RI 7710 Purification Of Yttrium By ElectrorefiningBy D. C. Fleck
Electrorefining yttrium from selected low-melting yttrium--base alloys is investigated, and various halide systems are studied as potential electrolytes for use in preparing low-oxygen yttrium by elec
Jan 1, 1973
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RI 9335 - Production of Lead Metal by Molten-Salt Electrolysis With Energy-Efficient ElectrodesBy J. E. Murphy
The u.s. Bureau of Mines investigated electrode designs for electrowinning lead metal from a LiCl-KCl-PbCI2 electrolyte at 4500 C. The major objective of this investigation was to decrease the energy
Jan 1, 1991