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RI 7979 Microdetermination of Volatile Matter and Rock Dust Concentration of Airborne Coal Mine DustBy C. Edward Chamberlain
A Bureau of Mines procedure was developed for the analysis of volatile matter in airborne coal dust-rock dust mixtures prior to, and resulting from, coal mine fires and explosions. Dust in the 10-to 2
Jan 1, 1974
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IC 8875 Computerized, Remote Monitoring Systems For Underground Coal Mines - Fires And Explosive AtmospheresBy Jeffrey H. Welsh
This report presents a study on the use of computerized, continuous remote monitoring systems for fire and explosive atmosphere safety in underground coal mines. The effects of these systems on the sa
Jan 1, 1982
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RI 8134 Laser Alinement Sensor for Continuous-Mining MachinesBy Merle L. Bowser
An alinement (steering) sensor for continuous mining machines has been developed under a Bureau of Mines contract. A laser source in the entry projects a beam parallel to the centerline of the entr
Jan 1, 1976
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IC 7415 Gasification of Solid Fuels in GermanyBy William W. Odell
Certain gas-making processes are in use in Europe, particularly in Germany, which differ radically from those in common use in America. A number of them are of particular interest because they are dif
Nov 1, 1947
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Ergonomic And Existing Seat Designs Compared On Underground Mine Haulage VehiclesBy Chris Jobes, Alan Mayton, N. Kumar Kittusamy, Dean Ambrose
NIOSH researchers conducted a study to compare seat designs on underground coal mine haulage vehicles. The objective of the study was to support prior findings that NIOSH-designed seats, which incorpo
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RI 7992 Elemental Composition of Coal Mine DustBy T. C. Wesson
The need for elemental-analysis information on coal mine dust for use in health and safety research prompted this study by the Bureau of Mines. Neutron-activation and X-ray fluorescent techniques were
Jan 1, 1974
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Bulletin 45 Sand Available for Filling Mine Workings in the Northern Anthracite Basin in PABy N. H. Darton
In mining coal in the anthracite region of Pennsylvania the general custom has been to leave a large percentage of the coal in place as pillars to support the roof. Evidently any practice that involve
Jan 1, 1913
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IC 7627 Control Of Metallurgical And Mineral Dusts And Fumes In Los Angeles County, Cali F. ? SummaryBy Glenn L. Allen
The rapid rise of industrial Los Angeles to international prominence has been accompanied by the natural corollary - a record influx of population - together with greatly increased production and fabr
Jan 1, 1952
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IC 6984 Mineral Wool ? Introduction And AcknowledgmentsBy J. R. Thoenen
In June 1929 the Bureau of Mines issued a 13-page Information Circular entitled "Mineral wool." This was one of the first publications to present to the public some technical aspects of the mineral-wo
Jan 1, 1938
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IC 7275 Accidents To Children From Blasting CapsBy D. Harrington
The prevention of accidents to children from blasting cans is of vital importance not only to everyone using commercial explosives but to the country at large. The manufacturers of explosives have rea
Jan 1, 1944
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OFR-1(C)-87 Assessment Of Whole Body Vibration Levels Of Coal Miners - Volume III: Low Frequency Vibration Exposure And Seat PerformanceBy Paul J. Remington
The field data gathered as part of the measurements described in Volumes I and II were re-analyzed in the low frequency regime (.1 Hz to 1 Hz) where motion sickness normally occurs. These data were co
Jan 1, 1984
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Pacific Manganese Nodules: Characterization And ProcessingBy Benjamin W. Haynes
The Bureau of Mines conducted research to provide technical information needed to devise waste management plans for the processing of manganese nodules. Studies included summary descriptions of Pacifi
Jan 1, 1985
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OFR-27-82 Propagation Of UHF Radio Waves In Limestone Room And Pillar MinesBy Robert L. Lagace
This report presents a mathematical model for the propagation of UHF radio waves in the large cross-section tunnels of a room and pillar limestone mine, and describes the analysis of a small amount of
Jan 1, 1979
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IC 6809 Coal-Mine Fatalities In Kentucky In 1931, 1932, And 1933By Joseph F. Davies
To gain knowledge of the actual accident hazards present in Kentucky coal mines, reports of fatalities during 1931, 1932, and 1933 have been analyzed and the pertinent factors included in tables, acco
Jan 1, 1934
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RI 5989 Effects Of Selected Operating Variables On Continuous-Cell Flotation Of Coal: A Laboratory Study ? Introduction And SummaryBy J. B. Gayle
Commercial flotation plants operate on a continuous basis that is not simulated closely by the batch testing methods widely used in Bureau of Mines laboratory studies of flotation, Batch methods indic
Jan 1, 1962
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OFR-92-77 Personal Samplers For CO, NO And NO2 In AirBy E. D. Palmes
This report was prepared by New York University Medical Center, Institute of Environmental Medicine, 550 First Avenue, New York, New York under USBM Grant Number G0133066, Personal Samplers for CO, NO
Jan 1, 1977
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RI 4840 Estimate Of Known Recoverable Reserves Of Coking Coal In Jefferson County, Pa.By James J. Dowd
The investigation to evaluate the reserves of coking coal in the United States suitable for the manufacture of metallurgical coke is being made by the Bureau of Mines in three parts: (1) To estimate k
Jan 1, 1952
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RI 3570 Progress Reports - Metallurgical Division - 47. Mineral Physics Studies - Ferromagnetic Properties Of Hematite (035889a3-e932-4cbe-9475-4b4b8cdd15fa)By Earl T. Hayes
[This work represents a continuation of the efforts of the Metallurgical Division of the Bureau of Mines to ascertain and apply knowledge of mineral physics to process metallurgy.]
Jan 1, 1941
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RI 3570 Progress Reports - Metallurgical Division - 47. Mineral Physics Studies - Ferromagnetic Properties Of HematiteBy Earl T. Hayes
[This work represent a continuation of the efforts of the Metallurgical Division of the Bureau of Mines to ascertain and apply knowledge of miner physics to processes metallurgy.]
Jan 1, 1941
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RI 4590 Investigation Of Tungsten Deposits At Cupric Mine Property Beaver County, UtahBy William H. King
The property of the Cupric Mines Co. is situated in the San Francisco mining district, Beaver County, Utah, 21 miles westerly from Milford (fig. 1), the rail and supply center for the area. Scheelite
Jan 1, 1949