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3 Properties, Production, And Potential For Exposure - 3.1 Chemical And Physical Properties Of Coal Mine Dust - 3.1.1 Coal And Its CharacteristicsCoal is a combustible, carbonaceous, sedimentary rock that is formed by the accumulation, compaction, and physical and chemical alteration of vegetation [Simon and Hopkins 1981; Bates and Jackson 1987
Jan 1, 1997
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RI 2882 Shaft Fires -- Magma Mine ? IntroductionBy E. D. Gardner
About five minutes after 3 o'clock on Thanksgiving morning, November 24, 1927, smoke was discovered coming up No. 2 shaft of the Magma Copper Co.'s mine at Superior, Pinal County, Arizona. O
Jan 1, 1928
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RI 3447 Bit Gage V. Drilling Speed ? Conclusions (1506848d-5bab-4da3-8a6a-67c9646212b3)By McHenry Mosier
Although local conditions at each mining property affect the percentage of increase in drilling speed for a given reduction in gage of bit, the results of drilling tests conducted at the Mount Weather
Jan 1, 1939
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RI 3447 Bit Gage V. Drilling Speed ? ConclusionsBy McHenry Mosier
Although local conditions at each mining property affect the percentage of increase in drilling speed for a given reduction in gage of bit, the results of drilling tests conducted at the Mount Weather
Jan 1, 1939
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RI 5942 Foam Concentration Of Scandium ? SummaryBy D. J. Bauer
A pure scandium solution was concentrated from 10-4 mole per liter to 0.5 mole per liter by continuous foam fractionation in a spaced, packed column. Recovery in the foam was 77 percent using a spaced
Jan 1, 1962
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Foreword (d9e40cd1-8bc4-4873-bc8d-30efdd68cead)By R. V. Ramani, C. B. Manula, A. Owili-Eger
This report was prepared by The Pennsylvania State University under USBM Contract No. G0111808. The contract was initiated under the Coal Mine Health and Safety Program. It was administered under the
Jan 1, 1975
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RI 5525 Thermochemistry Of Samarium ? SummaryBy Robert L. Montgomery
Heats of solution of samarium (III) oxide and chloride in hydrochloric acid and of samarium (III) oxide, sulfate, and hydrated sulfate in sulfuric acid were measured. The heats of solution of this hyg
Jan 1, 1959
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RI 2295 Precautions To Be Observed In Entering Abandoned Exploratory Shafts And PitsBy Ryron O. Pickard
"The Berkeley safety station of the U. S. Bureau of Mines was recently informed that a geologist was killed through entering an abandoned 90-foot exploratory shaft without making a preliminary test of
Nov 1, 1921
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Magnesium Oxide For Deep Bed Filtration Of Water ? ObjectiveTo improve efficiency in producing clarified water from mineral and metallurgical processing streams containing suspended particles. Approach Particles suspended in mineral and metallurgical proce
Jan 1, 1983
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RI 9146 - Analytical Methods for Determining Products From Thermal Decomposition of Aluminum Nitrate NonahydrateBy A. Adams
The Bureau of Mines determined the composition of the vapors liberated during thermal decomposition of aluminium nitrate nonahydrate. Small samples were heated from room temperature to 5500 C with ini
Jan 1, 1987
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Look Up! Look Down! Look Out! - About ESFIFounded in 1994 through a joint effort between Underwriters Laboratories Inc. (UL), the U.S. Consumer Product Safety Commission (CPSC) and the National Electrical Manufacturers Association (NEMA), the
Jan 1, 2004
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RI 8580 Extracting Uranium From Carbonaceous OresBy L. E. Schultze
As part of its goal of maintaining an adequate supply of minerals to meet national economic and strategic needs, the Bureau of Mines devised a processing sequence for recovering uranium from carbonace
Jan 1, 1981
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RI 7977 Coal Mine Combustion Products - Neoprenes, Polyvinyl Chloride Compositions, Urethane Foam, and WoodBy Arthur M. Hartstein
The Bureau of Mines through contract with Ultrasystems, Inc., obtained gram per gram data of products formed on thermal oxidative degradation of selected compositions, both under dynamic and static co
Jan 1, 1974
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RI 8306 Extracting Uranium From Low-Grade Ore From the Coso Mountains, Calif.By J. H. Maysilles
The Bureau of Mines, U.S. Department of the Interior, is investigating several types of low-grade uranium deposits. Projections indicate that an increased percentage of future production will be deriv
Jan 1, 1978
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RI 7478 Removing Sulfur Dioxide From Flue Gases - Regeneration Rates for Alkalized AluminaBy J. W. Town
The Bureau of Mines studied the effects of reducing gas composition, tem-perature, and superficial gas velocity on the regeneration rate of alkalized alumina. Regeneration was assumed to follow the si
Jan 1, 1971
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RI 7058 Calcium Vanadate Precipitation And ProcessingBy C. J. Chindgren
The Bureau of Mines investigated the technical problems involved in recovering commercial-grade vanadium products from alkaline solutions of low vanadium content. Conditions were defined for precipita
Jan 1, 1967
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RI 8328 Effect of Ion Concentrations on Uranium Absorption From Sodium Carbonate SolutionsBy D. E. Traut
The effect of various ion concentrations on uranium absorption from a sodium carbonate solution by a strong-base, anion resin was investigated by the Bureau of Mines in support of its objective to hel
Jan 1, 1979
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Foreword (9e0449bc-709e-4e58-bb40-67a252015d2b)By R. V. Ramani, A. S. C. Owili-eger
This report was prepared by The Pennsylvania State University under USBM Contract No. G0111808. The contract was initiated under the Coal Mine Health and Safety Program. It was administered under the
Jan 1, 1974
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RI 6338 Experimental Conversion of Hematite to Magnetite With Solid ReductantsBy P. A. Wasson, M. M. Fine
Roasting research involving small , batch experiments was conducted to explore the use of solid reductants for converting nonmagnetic iron ore to a magnetic type . Three typical Minnesota ores were te
Jan 1, 1963
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RI 4216 Beryl Mountain, Sullivan Co, NHBy S. B. Levin
"INTRODUCTION An exposure of large beryl crystals in pegmatite on Beryl Mountain, in Sullivan County, N. H., was the basis for investigation by the Bureau of Mines to determine the extent of the beryl
Mar 1, 1948