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RI 8142 Three Coal Mine Ventilation Studies Using Sulfur Hexafluoride Tracer Gas (dc5efa09-b4cf-45f3-88a9-4db4d4af9c48)By Robert P. Vinson
This report describes three coal mine ventilation studies by the Bureau of Mines in which sulfur hexafluoride (SF6) was used as a tracer gas. One of these studies was conducted to determine air moveme
Jan 1, 1976
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IC 9076 Coal Mine Roof Instability: Categories And CausesBy Noel N. Moebs
Coal mine roof failure is categorized according to character, trend, or pattern of occurrence. Two principal categories of failure are proposed--geology related and stress related. Geology-related fai
Jan 1, 1986
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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 2465 Mine Timber in Illinois Coal MinesBy Harry E. Tufft
Data were obtained by the writer from a number of the large coul-mine operators in Illinois, on the consumption and cost of timber used in their mines and the quality of the timber now being used as c
Apr 1, 1923
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RI 9157 - Permeability and Corrosion Resistance of Reinforced Sulfur ConcreteBy W. R. Wrzensinski
This report presents the findings from a l-yr Bureau of Mines program in which sulfur concrete reinforcing materials were tested and evaluated to determine their resistance to corrosion. It also summa
Jan 1, 1988
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RI 7033 Synthesis Of High-Btu Gas In A Raney-Nickel-Coated Tube-Wall ReactorBy J. J. Demeter
A tube-wall reactor with a Raney nickel catalyst deposited on the outer wall of the tube by flame spraying is effective in the practically complete conversion of 3H2+1CO synthesis gas to a high-Btu ga
Jan 1, 1967
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IC 7620 Physiological Aspects Of Electrical Accidents In The Coal-Mining Industry ? IntroductionBy S. J. Davenport
[The tremendous increase in mine mechanization since 1929 has increased markedly the application of electric power in and about the coal mines of the United States. Cutting, drilling, and leading mach
Jan 1, 1951
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RI 7520 Dewatering Florida Phosphate Pebble Rock Slime By Freezing TechniquesBy Martin H. Stanczyk
Freezing to dewater typical Florida phosphate rock slime as demonstrated in laboratory tests appeared to have potential commercial use because of indicated moderate energy requirements, good compactio
Jan 1, 1971
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RI 8439 Reinforcement Mechanisms of Untensioned Full-Column Resin BoltsBy August J. Kwitowski
This Bureau of Mines report describes how the reinforcement mechanisms of untensioned, full-column resin bolts were determined during one underground study. Both axial and transverse shear loadings we
Jan 1, 1980
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RI 8177 Using Inflatable Stoppings During Production in Noncoal MinesBy Edward D. Thimons
Several types of inflatable stoppings, developed under Bureau of Mines contract for use as mine air barriers during underground production, have been tested by the Bureau. All of the stoppings tested
Jan 1, 1976
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NBSIR 74-390 - Electromagnetic Noise In Itmann MineBy M. Kanda, W. D. Bensema, J. W. Adams
Two different techniques were used to make measurements of the absolute value of electromagnetic noise in an operating coal mine, Itmann No. 3 Mine, located near Mullens, West Virginia. The electromag
Jan 6, 1974
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RI 9188 - Horizontal and Vertical Load Transferring Mechanisms in Longwall Roof SupportsBy Thomas M. Barczak
This report describes a study that examined load transfer mechanics in longwall shield supports as part of the Bureau of Mines research program to optimize support design and utilization. The objectiv
Jan 1, 1988
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RI 4505 Investigation Of Antimony Peak Kern County, Calif.By G. D. Jermain
Exploration of the Antimony Peak district by the Bureau of Mines was conducted under the authority of the Strategic Minerals Act of 1939. Antimony was one of the seven metals designated at that time a
Jan 1, 1949
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RI 8623 Engineering Properties of Combined Coarse and Fine Coal WastesBy Bill M. Stewart
The Bureau of Mines conducted laboratory tests to determine the effects on the physical properties of coarse coal waste of adding large amounts of fine coal waste. Maximum laboratory dry density, opti
Jan 1, 1981
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OFR-33(1)-79 Application Of A Total System Surface Mine Simulator To Coal Stripping - Volume I - Executive SummaryBy R. V. Ramani
This report, Volume I of the seven-volume Final Report on the U. S. Bureau of Mines research contract no. G0254030 titled Application of a Total System Surface Mine Simulator to Coal Stripping with th
Jan 1, 1978
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OFR-70-76 Study Of Low Coal Canopy Concepts ? 1. IntroductionBy H. Billmayer
This report covers the period from June 17, 1974 to February 20, 1975, and describes the work performed in compliance with the requirements of Contract No. H0346102 and Modification No. 1 thereto. The
Jan 1, 1975
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Minor Metals - Arsenic (d921dacd-4088-4bdc-9fb9-85a8fe41b1c0)By J. Roger Loebenstein
Small amounts of arsenic trioxide were shipped in 1988 from remaining stocks at ASARCO Incorporated's closed plant at Tacoma, WA. Imports of arsenic trioxide were at about the same level in 1988
Jan 1, 1990
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RI 2806 The Interpretation Of Crude Oil Analyses (Bureau Of Mines Hempel Method.) ? IntroductionBy N. A. C. Smith
During the past, six, years, the Bureau of Mines has made and. published several hundred analyses of typical crude oils and 'has developed a system of interpreting the analyses and of classifying
Jan 1, 1927
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Appendix II – Model Verification Test IBy R. V. Ramani, V. T. Burgos, J. A. McClay
The data for Test I describes an underground bituminous coal mine operation in a 48 inch seam, with an estimated production rate of 1,056,000 tons per year. The system includes four continuous mining
Jan 1, 1975
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RI 8349 Flocculation Dewatering of Florida Phosphatic Clay WastesBy Annie G. Smelley
The Bureau of Mines, U.S. Department of the Interior, as part of its mission to effect pollution abatement, conducted research to devise means for disposing of phosphatic clay wastes and reclaiming mi
Jan 1, 1979