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RI 3369 Relation Of Dust Concentration To Depth Of Hole During Wet Drilling (4f739da7-f0fb-40d7-b759-3e66a04bbf5a)By J. B. Littlefield
This study is one of a number conducted to determine the concentration of dust in the air during the complete cycle of operation in wet drilling information as to various factors connected with drilli
Jan 1, 1938
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RI 8433 Spectrophotometric Determination of Uranium Using DibenzoylmethaneBy M. M. Jones
A procedure for the spectrophotometric determination of uranium has been developed in support of minerals research being conducted by the Bureau of Mines. Uranium is separated from the sample by tribu
Jan 1, 1980
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Scaled Cloud Model for Released Toxic FumesBy Michael S. Wieland
Recognizing the dynamic nature and possible range of toxic concentrations in the impending fume cloud prior to undertaking explosive blasting can reduce potential hazards and mitigate related incident
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In Situ Determination Of Geotechnical Properties By Acoustic Methods ? ObjectiveDetemine the elastic properties and structural integrity of a rock mass in situ. Approach An acoustic device that transmits and receives high-frequency seismic waves between boreholes was design
Jan 1, 1982
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RI 8319 Sources of Metals in the Combustible Fraction of Municipal Solid WasteBy Benjamin W. Haynes
The Bureau of Mines conducted research to devise technology for increasing the Nation's mineral supply by recovering valuable constituents from currently discarded waste materials. Municipal soli
Jan 1, 1978
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RI 7383 A Statistical Interpretation Of Sample Assay Data From The Getchell Mine, Humboldt County, Nev.By George S. Koch
The distribution of gold in part of the Getchell mine, Humboldt County, Nev., is presented through the statistical analysis of 956 assays of rock cuttings from wagon-drill holes. Two methods to predic
Jan 1, 1970
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Video Motion Detection for Real-Time Hazard Warnings in Surface MinesBy Edward L. McHugh
Digital camera and computer technologies can be used to monitor mine slopes and provide real-time warning of rock falls. NIOSH researchers assembled a surveillance system using low-cost video cameras
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RI 8859 - Safer Procedures for Removing Dragline Wire Rope TerminationsBy G. K. Derby
The Bureau of Mines investigated methods for removing dragline bucket wire rope terminations with the objective of finding efficient methods that are safer than the method most commonly used at U.S. s
Jan 1, 1984
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RI 6775 Reduction Roasting-Acid Solution Techniques In Laboratory Processing Of Minnesota Manganiferous OresBy P. L. Weston
The Bureau of Mines used high-temperature reduction roasting, magnetic separation, acid-leaching, and autoclave precipitation processes to recover iron and manganese from brown Cuyana range ores of Mi
Jan 1, 1966
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Preliminary Separation Of Metals And Nonmetals From Urban RefuseBy K. C. Dean
Horizontal and vertical air classification systems were tested individually and in simulated tandem use for the recovery of ferrous and nonferrous metals and of other noncombustible and combustible pr
Jan 1, 1971
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RI 8752 Low-Iron Cu-Ni-Co Matte From Duluth Complex Sulfide Concentrate by Direct SmeltingBy I. D. Shah
The copper-nickel ore of the Duluth Gabbro Complex in northeastern Minnesota is a large potential domestic resource of cobalt and platinum-group metals. However, because of the low grade of the primar
Jan 1, 1983
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RI 5110 The Effect Of Temperature, Charge Density, And Blending On The Carbonization Of Coal ? IntroductionBy F. W. Smith
This paper is based largely on a study of experimental data obtained by the Bureau of Mines in its comprehensive 25-year survey of the carbonizing properties of American coals. Although the Bureau was
Jan 1, 1955
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Mechanical Shoveling In Underground Metal Mines - IntroductionBy McHenry Mosier
Mechanical loading, adopted long ago in open-pit, coal, and non-metal mines, was not used extensively in underground metal mines until the World War. In less than a decade it became standard practice
Jan 1, 1940
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IC 8840 Minerals Health And Safety In-House Research, Development, And Demonstration In Fiscal Year 1981This publication summarizes, for all interested parties, the research, development, and demonstration in-house projects programed by the Bureau of Mines for fiscal year 1981 (October 1, 1980 - Septemb
Jan 1, 1981
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RI 7910 - Cleat In Bituminous CoalbedsBy P. W. Jeran, C. M. McCulloch, Maurice Deul
The natural vertical fracture sys tem in bituminous coalbeds is called cleat. Cleat orientation commonly controls the direction of mining with major development paralleling the face cleat. Previou
Jan 1, 1974
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RI 9046 - Longwall Shearer Performance Using Water-Jet-Assisted CuttingBy P. D. Kovscek
The Bureau of Mines equipped a longwall shearer with a water-jet-assisted mechanical cutting system to determine the effect of the high-pressure sprays on machine performance, airborne dust levels gen
Jan 1, 1986
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Long Drill For Coal Probing And Pillar Removal - ObjectiveProvide a machine for economically drilling probe holes in coal mines (required where there's a possibility of unmapped, abandoned workings) to check for possible water flood or gas hazards ahead
Jan 1, 1981
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RI 7916 - Using Sulfur Hexafluoride As A Gaseous Tracer To Study Ventilation Systems In MinesBy F. N. Kissell, R. J. Bielicki
The Bureau of Mines found sulfur hexafluoride (SF6), released from a lecture bottle, to be an ideal gaseous tracer for studying mine ventilation systems. Air samples were collected in glass syringes a
Jan 1, 1974
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IC 9144 Spontaneous Combustion Fire Detection For Deep Metal MinesBy William H. Pomroy
Spontaneous combustion fires involving high-sulfide-content ores are a relatively infrequent yet serious safety hazard in mining. They are also the cause of lengthy mine shutdowns because they typical
Jan 1, 1987
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RI 5229 Estimate Of Known Recoverable Reserves And Preparation And Carbonizing Properties Of Coking Coal In Claiborne County, Tenn. ? Conclusions ? ReservesBy Robert E. Hershey
1. This investigation shows that the most important beds in Claiborne County, from the standpoint of present production and reserves, are the Coal Creek and Jellico. Together, they contain 69 percent
Jan 1, 1956