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OFR-164-81 Development Of Fuel Cell Gas Detection Instruments For Use In A Mine AtmosphereBy J. A. Kosek
Work has been conducted under Bureau of Mines Contract Number HO 357078 to develop instruments for detecting CO, NO and NO2 in a mine atmosphere, using fuel cell technology. The approach has been to o
Jan 1, 1979
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RI 7942 Improved Electrical Resistivity Field System for Shallow Earth MeasurementsBy C. Melvin Lepper
The Bureau of Mines has developed an improved earth resistivity field system which employs a novel technique for obtaining null measurements. The instrument is designed to operate reliably in high-noi
Jan 1, 1974
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RI 4719 Investigation Of Mercury Deposits, Cinnabar Creek Area, Georgetown And Akiak Districts, Kuskokwim Region, Southwestern AlaskaBy F. A. Rutledge
Mercury deposits were discovered in 1941 in the sedimentary rocks of the Cinnabar Crook area, near the head of the Holitna River drainage in southwestern Alaska, by Russell Schaefer and Harvey Winchol
Jan 1, 1950
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OFR-19-73 Aspects Of Noise Generation And Hearing Protection In Underground Coal MinesBy Paul L. Michael
Roof warring signals from eleven underground coal mines (principally in the Pittsburgh seam) were studied and analyzed. The character of individual acoustic warning signals is shown to be dependent on
Jan 1, 1972
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OFR-31-86 Conveyor Belt Dust ControlBy Vinit Mody
The belt conveyor is one of the major pieces of equipment for transferring bulk material in mining operations. However, considerable amount of respirable dust may be generated whenever the bulk materi
Jan 1, 1984
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RI 6554 Recovery of Lead and Sulfur by Combined Chlorination and Electrolysis of GalenaBy A. G. Starliper, H. Kenworthy
A procedure was developed for the separation of lead and sulfur in industrial concentrates of galena by a combination of chlorination and fused - salt electrolysis . Galena could not be satisfactorily
Jan 1, 1964
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RI 2965 Smelting In The Lead Blast Furnace - IV. - Composition And Temperature Of The Gases At The Tuyere Zone ? IntroductionBy G. L. Oldright
This paper is the fourth of a series of preliminary papers on smelting in the lead blast furnace.4 The objects of this investigation are to determine the conditions obtaining within the blast furnace
Jan 1, 1929
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OFR-41-76 Innovative Machine Design Concepts - Introduction - Contract No. H0155095The above referenced contract between Badger Manufacturing Corporation and the U. S Bureau of Mines was executed June 30, 1975, as a result of the request for proposals for innovative machine concepts
Jan 1, 1975
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RI 5311 Consumable-Electrode Arc Melting Of Titanium And Its Alloys ? SummaryBy R. W. Huber
A consumable-electrode arc-melting furnace was constructed at the Bureau of Mines Physical Metallurgy Laboratory, College Park, Md., for the production of uncontaminated titanium and titanium-alloy in
Jan 1, 1957
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OFR-52-73 Measurement Of Temperature Profiles Around Coal Mine Openings - SummaryBy Fun-Den Wang
This report presents theoretical studies and experimental work dealing with the detection of dangerous roof and pillar conditions in underground mines through measure¬ment of temperature differences o
Jan 1, 1972
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RI 7064 Kinetics Of Formation Of Carbon Dioxide And Carbon From Carbon Monoxide In Presence Of Iron PelletsBy L. A. Haas
A kinetic study of the carbon deposition reaction was undertaken by the Bureau of Mines as part of a broad investigation of metallurgical reactions in the iron ore blast furnace. The disproportionatio
Jan 1, 1968
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RI 8685 Refractory Properties of Brick Produced From Beneficiated Chrome-Containing Furnace LiningsBy Arthur V. Petty
In Bureau of Mines research on recycling chrome-containing refractory wastes, used refractories from argon-oxygen decarburization and electric steelmaking furnaces were beneficiated. By means of dry m
Jan 1, 1982
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MLA 45-83 - Mineral Investigation Of The Hauser Rare II Area (No. 5021), San Diego County, California ? SummaryBy Thomas J. Peters
The U.S. Bureau of Mines and the U.S. Geological Survey are responsible for the evaluation of the mineral resources and potential of further planning areas included in the U.S. Forest Service Roadless
Jan 1, 1983
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OFR-105-78 Personal Alpha AlarmBy Donald B. Lindsay
A new concept was proposed for a personal warning device for use by miners who may be exposed to health hazards from inhalation of alpha-emitting radionuclides, especially radon-222 and its short-live
Jan 1, 1978
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OFR-15-73 Quick Opening Permissible Electrical EnclosuresBy Jack Kadlecik
This final technical report describes the concept feasibility study, testing, design and development effort which went into. The quick opening enclosure access cover and flame path tolerance checking
Jan 1, 1972
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OFR-23-85 Comprehensive Planning For Strip Mining Reclamation In Dry Regions With Emphasis On Water HarvestingBy John L. Thames
The benefits of water harvesting as an alternative to conventional reclamation were demonstrated on the Peabody Coal mines in Northeast Arizona. The project produced food crops for four years, and dem
Jan 1, 1984
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IC 9265 Computer-Aided Software Engineering (CASE) For Software AutomationBy John J. Sammarco
The U.S. Bureau of Mines is conducting research into computer-assisted mining, which requires investigation of new techniques for development and application of computer-based technologies. Today&apos
Jan 1, 1990
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OFR-140(1)-83 Development And Fabrication Of A Continuous Miner Training SystemBy C. W. Morris
This Final Report describes the major technical activities that were accomplished to produce a comprehensive continuous miner training system (CMTS) for coal industry utilization. The primary product
Jan 1, 1982
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OFR-56-84 Personal Dust Exposure Monitor Based On The Tapered Element Oscillating MicrobalanceBy Harvey Patashnick
Current state-of-the-art microweighing technology represented by the Tapered Element Oscillating Microbalance (TEOM) is utilized as the basis for a new generation of Personal Dust Exposure Monitors (P
Jan 1, 1983
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RI 7065 Piezoelectric Pulsing Equipment For Shear Wave Velocity Measurements In Rock SamplesBy Francis X. Cannaday
Equipment and techniques were developed with Bureau of Mines facilities for measurement in the laboratory of sonic shear wave velocity in variously shaped rock specimens in a wide range of sizes. A va
Jan 1, 1968