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Dust Deposition In Coal Mine AirwaysBy Welby G. Courtney
The Bureau of Mines conducted an exploratory field survey to determine the amount of airborne coal dust, the size distribution of the dust, and the rate of dust deposition in coal mine airways. The su
Jan 1, 1982
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MLA 76-87 - Mineral Resources Of The Staubach Creek Area, Elkhorn Wilderness, Broadwater County, MontanaBy Paul A. Pierce
In 1984, the Bureau of Mines evaluated an area previously identified as having "probable mineral resource potential" for copper, lead, zinc, gold, or silver within the Elkhorn Wilderness, about 5 mile
Jan 1, 1987
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RI 2138 Determination of Free Calcium Oxide In Caustic Burned Magnesium OxideBy L. H. Duschak
"This paper is based on the results of work conducted of the bureau's experiment station at Berkeley, Calif., in connection with the investigation of properties and methods of utilizing Western magnes
Jun 1, 1920
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RI 8196 Smelting Prereduced Nickel Concentrate in an Electric-Arc FurnaceBy D. L. Paulson
The Bureau of Mines used 50-and 800-kva electric-arc furnaces to confirm the feasibility of producing ferronickel in electric-arc furnaces from pre-reduced concentrate from the Yugoslavian FENI projec
Jan 1, 1977
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RI 5090 Elimination Of Ethyl Mercaptan Vapor-Air Explosions In Stench Warning Systems ? IntroductionBy G. W. Jones
The Bureau of Mines has advocated the use of stenches as warning agents in metal mines and in gas-distribution systems since 1920 A considerable amount of research has been conducted on ethyl mercapta
Jan 1, 1954
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RI 8208 Casting Titanium and Zirconium in Zircon Sand MoldsBy R. K. Koch
The Bureau of Mines developed a zircon sand molding process for static casting of small titanium or zirconium shapes. Castings with unfinished weights up to 3.5 kg (7.7 lb) were produced in an inducto
Jan 1, 1977
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RI 3045 Concentration Tests On The Manganiferous Iron Ores Of The Cuyuna District, MinnesotaBy F. D. DeVaney
[In the course of the investigation by the U. S. Bureau of Mines and the Missouri School of Mines and Metallurgy at the Mississippi Valley experiment Station at Rolla, Mo., on the beneficiation of the
Jan 1, 1930
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RI 8361 Effects of Heating on Radon-222 Emanation From Domestic Uranium OresBy S. Ralph Austin
This Bureau of Mines investigation determined the effects of so-called annealing at high temperatures on radon-222 emanation from domestic uranium ores. Concurrently, a method was developed for closel
Jan 1, 1979
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Flyrock Issues In Blasting (a15d27ae-7280-48e5-8596-7f5474a80521)By T. R. Rehak
Blasting operations are an essential element in the recovery of our Nation?s mineral resources. The mining industry uses billions of pounds of explosives annually. The majority of blasting occurs in
Jan 1, 2000
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RI 8192 Locating Miners in Smoke-Filled Mine Openings With Infrared ImagersBy Raymond M. Stateham
Calculations based on data obtained from measurements of smoke from coal-fired powerplants predict that infrared imagers will be useful tools for smoke vision. Infrared imagers operating in the 3-to 5
Jan 1, 1976
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RI 3903 Exploration of the White Eagle Fluorspar Mine. Cooks Peak Mining District Grant County. New MexicoBy John H. Soulé
"Bureau of Mines engineers3/ examined the White Eagle fluorspar mine on September 3, 1943, and again on February 17, 1944. The examinations led to a proposal for the exploratory project upon which thi
Jul 1, 1946
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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
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Measurement of Coal Dust and Diesel Exhaust Aerosols in Underground Mines (7d788311-9859-42ef-b0d7-3c0af1c5b65b)By Kenneth L. Rubow, Virgil A. Marple, Bruce K. Cantrell
"In a cooperative study by the University of Minnesota and the U.S. Bureau of Mines, diesel exhaust and mineral dust concentrations have been measured for aerosols generated in the laboratory and in f
Jan 1, 1990
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RI 7574 Airblast-Overpressure Levels From Confined Underground Production BlastsBy James J. Olson
The Bureau of Mines recorded and analyzed overpressure levels for three production blasts at the White Pine copper mine, Upper Michigan, to obtain representative data from single-heading blasts in a l
Jan 1, 1971
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RI 5635 Determining the Safety Characteristics of Unsymmetrical DimethylhydrazineBy Michael G. Zabetakis, Glenn H. Damon, Joseph A. Herickes
The flammability and explosibility of unsymmetrical dimethylhydrazine ( UDMH ) were investigated by the Federal Bureau of Mines to evaluate hazards associated with commercial application of this mater
Jul 1, 1960
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RI 6367 Vapor Pressure of Tungsten (VI) Chloride and Hafnium (IV) Iodide by a Metal Diaphragm TechniqueBy C. E. Wicks, F. E. Block, F. D. Stevenson
The vapor pressures of tungsten (VI ) chloride ( WC1 ) and hafnium ( IV ) iodide ( HFI ) were measured by a metal diaphragm technique . Vapor pressure values were obtained to permit calculation of the
Jan 1, 1964
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Characterization of Respirable Dust on a Longwall Panel -- A Case StudyBy R. L. Grayson, S. S. Peng
"Abstract. Sampling of respirable dust and analyses of samples have been partially completed for a longwall panel. Physical and compositional properties which have been characterized include:l. Respir
Mar 1, 1989
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RI 8340 Autoclave Leaching of Copper-Nickel Matte Produced From Duluth GabbroBy L. A. Haas
The U.S. Department of the Interior, Bureau of Mines, is conducting laboratory-scale research to determine the leaching conditions required with sulfuric acid for extracting base metal from a matte wi
Jan 1, 1979
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IC 9259 Electrical Accidents In Mining (1980-85) Fatal And Nonfatal Accidents Underground And On The Surface At Underground Coal And Metal-Nonmetal MinesBy A. Oyler
The U.S. Bureau of Mines has compiled data on the major causes of fatal and nonfatal electrical accidents related to mining, and their associated costs, for the 1980-85 period. Specific electrical pro
Jan 1, 1990
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RI 6712 Reduction Of Ferrous Oxide (Wustite) At High TemperaturesBy J. P. Hansen
Wustite beds were reduced with carbon monoxide and mixtures of hydrogen and nitrogen in the temperature range 900° to 1,300° C to determine the effect of temperature, gas flow, and surface area on the
Jan 1, 1965