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OFR-25(2)-74 Improved Sensors And Fire Control Systems For Mining Equipment - Phase II - Final Report - Executive Summary - I. Introduction, Summary, And Results - IntroductionU.S. Bureau of Mines contract H0122053, "Improved Sensors and Fire Control Systems for Mining Equipment", was an investigative effort involving: ? Study of the fire problem on large mobile mining e
Jan 1, 1973
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IC 9324 Diesels In Underground Mines: Measurement And Control Of Particulate EmissionsBy Staff
The goal of the U.S. Bureau of Mines diesel engine research program is to reduce exhaust emissions from diesel-powered equipment used in underground mines. This research has led to significant advance
Jan 1, 1992
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IC 8574 Iron: A Materials SurveyBy Horace T. Reno
This information circular surveys the iron are industry of the world. It presents a comprehensive statistical record through 1970 of the U.S. iron ore industry and world trade patterns. The supply pos
Jan 1, 1973
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OFR-146-80 Environmental Effects Of Slaking Of Surface Mine Spoils Eastern & Central United StatesBy D. E. Andrews
The objective of this study was to investigate the environmental effects of slaking of surface mine spoils. To accomplish this, both field and laboratory programs were undertaken, supplemented by a th
Jan 1, 1980
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IC 7485 Safety in the Mining IndustryBy R. G. Warncke, J. H. East, D. Harrington
The mining industry of the United States has long been severely criti- cized because of its high rate of accident occurrence, not only as compared with other industries of the United States but also w
Apr 1, 1949
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OFR-47C-81 A Design Guide For Explosion-Proof Electrical Enclosures - Part 3 - Final Technical ReportBy P. A. Cox
Guidelines are provided for the design of explosion-proof electrical enclosures that will meet MSHA certification requirements according to Part 18, Title 30, of the Code of Federal Regulations, and f
Jan 1, 1985
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RI 5450 Core-Drill Sampling Of Cuyuna-Range Manganiferous Iron Formations, Crow Wing County, Minn. ? SummaryBy Leonard F. Heising
Domestic production of Metallurgical-grade manganese has contributed such a small percentage of the United States industrial demands that areas known to contain large tonnages of low-grade manganese o
Jan 1, 1959
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Mining Disasters Caused and Controlled by Mankind: The Case for Coal Mining and Other Minerals - Part 2: Control of Mining DisastersBy R. V. Ramani
"In Part 1 of this paper, published in the August 1995 issue of Natural Resources Forum, a review of several mining disasters around the world established the complex nature of their causation and the
Dec 1, 1996
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IC 7264 Natural Mineral-Paint Extenders - IntroductionBy Charles L. Harness
Fifty years ago, the belief that "fillers" were added to paints for the sole purpose of diluting and cheapening the pigment may have been justified; but paint technology has made tremendous progress s
Jan 1, 1943
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RI 9033 - Measurement of Coal-Cutting Forces Underground With the In-Seam TesterBy Laxman S. Sundae
The Bureau of Mines designed, fabricated, and is using an in-seam tester (1ST) for in situ determination of coal cutting forces. This re-port describes the results of field tests conducted in the Poca
Jan 1, 1986
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RI 4283 Laboratory Concentration Of Complex Sulfide-Oxide Ore From Shenandoah-Dives Mine, Silverton, Colo.By Heine Kenworthy
In 1930 the Shenandoah-Dives Mining Co. near Silverton, Colo., put into operation a newly erected, 300-ton selective flotation plant to mill complex ores from its nearby mine. The operation was a stea
Jan 1, 1948
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IC 7742 Safety In Pneumatic Drilling And Related Blasting Operations - Opencut Mine, Morenci Branch Phelps Dodge Corp., Morenci, Ariz. ? SummaryBy E. R. Rodriguez
Improved practice resulting from recent changes in the method of supplying compressed air and in pneumatic drilling equipment used in secondary drilling and in development work at the Morenci mine of
Jan 1, 1956
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RI 5584 Use Of High-Speed Camera In Blasting Studies ? SummaryBy Byron E. Blair
This report describes procedures for using a high-speed camera to study blasting phenomena. Both quantitative and qualitative information can be obtained, provided that proper interpretations of the p
Jan 1, 1960
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RI 5574 Hydrogenating Shale Oil And Catalytic Cracking Of Hydrogenated Stocks ? SummaryBy C. M. Frost
Two Federal Bureau of Mines recycle hydrogenation experiments to prepare catalytic cracking feed stock were made at 3,000 pounds pressure with crude shale oil retorted from Green River (Colo.) shale i
Jan 1, 1960
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RI 5773 Refining Crude Aluminum By The Subhalide Reaction ? SummaryBy Leland A. Yerkes
Refining aluminum from crude aluminum alloys by the subhalide reaction was investigated to develop a method of producing aluminum by means other than electrolysis of its oxide. The best materials and
Jan 1, 1961
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RI 6837 Fire Hazard Of Urethane Foam In MinesBy Donald W. Mitchell
Certification tests for urethane-foam systems and techniques for apply-ing foam safely in mines are described. Fire hazard from foam exists if flame propagates beyond the ignition source or penetrates
Jan 1, 1966
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RI 9191 - Selective Electrowinning of Mercury From Gold Cyanide SolutionsBy S. A. N. Sheya
Many gold-bearing ores in the Western United States also contain small amounts of mercury. The presence of mercury creates potential pollution and health hazards during several steps in gold processin
Jan 1, 1988
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RI 3753 Apparatus for Determining Minimum Energies for Electric-Spark Ignition of Flammable Gases and VaporsBy P. G. Guest
"INTRODUCTION Need for More information on Spark IgnitionMany questions have yet to be answered more completely concerning the ignition of flammable gases and vapors by electric sparks. Among these on
May 1, 1944
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RI 2350 The Sulfur Dioxide Leaching ProcessBy Edmund S. Leaver, Charles E. Van Barneveld
In response to numerous requests from metallurgists and operators for information regarding the status of the sulphur dioxide leaching process , developed at the Southwest experiment station of the U.
May 1, 1922
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RI 7576 Structural Deformation Of Green River Oil Shale As It Relates To In Situ RetortingBy P. R. Tisot
Structural response and/or deformation was determined for each of four different grade Green River oil shales (27.0-, 34.5-, 45.5-, and 63.5-gal/ton) as they were heated in an inert atmosphere, under
Jan 1, 1971