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RI 3725 Stemming in Metal Mines. Progress Report 7By Wing G. Agnew
The first six Reports of Investigations in this series , pertaining to the investigation of stemming at the Mount Weather Testing Adit, dealt with ( 1 ) the dust produced by blasting , ( 2) the effect
Oct 1, 1943
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IC 7902 Administration Of The Federal Coal-Mine Safety Act, 1952-58 ? SummaryBy James Westfield
Following is a resume of activities of the Division of Coal-Mine Inspection that have had a favorable effect on health, safety, and the reduction o1 injuries at coal mines: 1. The Federal Mine Safe
Jan 1, 1959
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OFR-65(2)-75 Mine Communication And Monitoring ? Volume II: Monitoring Sub-System DetailsBy M. D. Aldridge
The results of a four-year research effort aimed at developing a practical and effective electronic system for monitoring safety conditions throughout a coal mine by displaying, at a central location,
Jan 1, 1974
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RI 3815 Utilization of Three Kids Manganese Ore in the Production of Electrolytic Manganese"INTRODUCTION Industrial utilization of the present submarginal domestic manganese resources of the United States is wholely dependent at this time on the electrolytic manganese process established as
Jun 1, 1945
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Repeatability of a Checklist for Evaluation Cab Design Characteristics of Heavy Mobile EquipmentBy Michael J. Jorgensen, Pranathi B. Aedla, N. K. Kittusamy
Risk factors associated with the development of musculoskeletal discomfort and disorders during the operation of heavy mobile equipment include whole-body vibration and awkward and sustained joint po
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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 7562 Recovery Of Copper From Converter Slags By FlotationBy V. E. Edlund
Laboratory batch flotation tests were conducted on copper converter slags to evaluate the relative merits of recovering copper from slow-cooled versus water-quenched slags. Three slags containing 1.6,
Jan 1, 1971
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RI 8524 Electrowinning Zinc From Zinc Chloride in Monopolar and Bipolar Fused-Salt CellsBy S. D. Hill
To help insure the continued viability of the minerals and materials sector of the U.S. economy, the Bureau of Mines is conducting research and disseminating technology that will result in more effici
Jan 1, 1981
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RI 6447 Preparation of Titanium NitrideBy T. A. Henrie, E. K. Kleespies
Carbon reduction of rutile and ilmenite in nitrogen and ammonia atmospheres was studied as a method of preparing titanium nitride . Ammonia was a better nitriding agent than nitrogen . The contact bet
Jan 1, 1964
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IC 7067 Multiple-Shift Mechanical Mining In Some Bituminous Coal Mines, Progress Report 2 ? IntroductionBy Albert L. Toenges
This report is the second of a series describing methods and systems of mechanical mining; where operations are conducted on more than one shift. The first report, Information Circular 7014,4/ describ
Jan 1, 1939
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OFR-77-83 Fire Hazard Evaluations Of Mine Materials In A Small-Scale Combustibility ApparatusBy A. Tewarson
Combustibility data are presented for 14 samples representing commonly used mine materials (treated and untreated wood, conveyor belt and brattice cloth). The combustibility data were obtained in the
Jan 1, 1982
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OFR-23-73 A Comprehensive Study Of Intrinsic Safety Criteria - I. Review - 1. BackgroundBy Zsuzsanna Zborovszky
A circuit is considered intrinsically safe when any spark or thermal effect produced normally (that is, by operating the equipment in its correct operational manner to fulfill its purpose) or accident
Jan 1, 1972
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Reduction Of Air Pollutants From Gas Burner Flames - Including Related Reaction KineticsBy Margaret E. Harris
The formation of nitrogen oxides, the decay of carbon monoxide, and the concentrations of residual hydrocarbons in the secondary combustion zones of propane-air and methane-air flames were studied in
Jan 1, 1970
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Improving Dust Control Technology For U.S. Mines - The Bureau Of Mines Respirable Dust Research Program, 1969-82 - IntroductionBy John A. Breslin
This report summarizes the principal activities and significant results of the Bureau of Mines respirable dust research program since passage of the Federal Coal Mine Health and Safety Act of 1969 and
Jan 1, 1982
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RI 6237 Hydrocracking Low-Temperature Tar From A North Dakota Lignite ? SummaryBy H. C. Carpenter
Lignite tar made by low-temperature Lurgi-Spülgas carbonization of North Dakota lignite was hydrocracked in single-pass, fixed-bed operation at 3,000 pounds per square inch over cobalt molybdate catal
Jan 1, 1963
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IC 8751 Selected Silicate Minerals And Their Asbestiform Varieties - Mineralogical Definitions And Identification-CharacterizationBy W. J. Campbell
This report by the Federal Bureau of Mines Particulate Mineralogy Unit recommends mineralogical definitions and identification-characterization concepts for selected silicate minerals and their asbest
Jan 1, 1977
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IC 9138 MgO Filtration ResearchBy D. N. Tallman
The Bureau of Mines has completed 4 yr of deep-bed filtration research comparing the efficiencies of granular magnesium oxide (MgO) and conventional filter sand in single- and dual-medium filters when
Jan 1, 1987
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IC 8946 Selected Raw Material Requirements For Japan's Specialty Steel IndustryBy E. Chin
Although Japan is a major producer of crude steel, it is poor in industrial raw materials. This Bureau of fines report describes Japan's raw material needs for chromium, cobalt, manganese, nickel
Jan 1, 1983
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RI 9556 - Effect of Additives on Chalcopyrite LeachingBy L. E. Schultze
Experiments were conducted by the U.S. Bureau of Mines to verify enhancements due to chloride and surfactant additions in the leaching system of chalcopyrite with ferric sulfate and sulfuric acid. A s
Jan 1, 2010
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RI 8007 Improvements in Ferric Chloride Leaching of Chalcopyrite ConcentrateBy F. P. Haver
A method to recover copper and elemental sulfur from chalcopyrite concen¬trate, using a ferric chloride leach, CuFeS2 + 3FeCl3 ? CuCl + 4FeCl2 + 2S, was reported by the Federal Bureau of Mines i
Jan 1, 1975