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RI 6505 Limits of Flammability of Hydrazine-Hydrocarbon Vapor MixturesBy Michael G. Zabetakis, Aldo L. Furno, George H. Martindill
Hydrazine vapor is flammable in the absence of air at elevated temperatures and atmospheric pressure . The minimum concentrations of benzene , toluene , m- xylene , cumene , and n- heptane needed to i
Jan 1, 1964
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RI 6970 Synthesis Of Cyclic SulfidesBy R. L. Hopkins
Some typical thiacyclopentanes and thiacyclohexanes were synthesized to provide reference compounds needed for the identification of sulfur compounds in crude oils. Two general methods of synthesis we
Jan 1, 1967
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International StandardsBy Lloyd A. Morley, Robert Stefanko
A major difficulty encountered during the research was that nation¬al countries (almost world-wide) are in the process of revising their electrical hazard reduction standards. Their principal goal is
Jan 1, 1974
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Particle Size Distribution of Airborne Dust in Coal MinesBy R. Hogg, T. F. Dumm
"Procedures for particle size analysis on respirable dust from coal mines have been evaluated. Using respirable dusts dispersed in a laboratory dust chamber, size distributions measured using cascade
Jan 1, 1989
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RI 7861 Atomic Absorption Methods of Analysis of Oilfield Brines: Barium, Calcium, Copper, Iron, Lead., Lithium, Magnesium, Manganese, Potassium, Sodium, Strontium, and ZincBy Gordon E. Fletcher
This Bureau of Mines report outlines the atomic absorption analysis of oilfield brines for barium, calcium, copper, iron, lead lithium, magnesium, manganese, potassium, sodium, strontium, and zinc, us
Jan 1, 1974
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Coal Fracture Analysis Using Two Simultaneous Wedge Indentors and Laser Holographic lnterferometryBy A. Wahab Khair, Richard D. Begley
"This paper presents results of destructive tests performed on rectangular coal specimen under the influence of two vertical and simultaneous wedge indentation forces. Several wedge designs and spacin
Jun 1, 1988
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RI 8380 Directional Drilling For Coalbed Degasification - Program Goals and Progress in 1978 (a40dd4e2-71b8-4270-b747-a462ce2daae5)By David C. Oyler
The Bureau of Mines is cooperating with the U.S. Department of Energy in a directional degasification project at the Emerald mine near Waynesburg, Pa. This project is designed to combine the highly su
Jan 1, 1979
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IC 6912 Quarrying And Crushing Methods And Costs At The Avon Mountain Trap Rock Quarry Of The Atlas Sand, Gravel & Stone Co., West Hartford, Conn. - IntroductionBy John S. Dunning
This is one of a. series of papers being prepared for and published by the United States Bureau of Mines, describing raining and milling methods at crushed-stone plants throughout the United States. T
Jan 1, 1936
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RI 9307 - Impact of Using Auxiliary Fans on Coal Mine Ventilation Efficiency and CostBy Keith G. Wallace
Coal mine ventilation systems are often subject to high leakage rates. As a result, changes in airflow resistance will strongly affect the efficiency with which air is delivered to the working place.
Jan 1, 1990
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IC 6675 Safety Practices at Mine 1, Spring Canyon Coal Co., UtahBy D. J. Parker
The oft-repeated expression that the taproot of safety lies in the attitude of the management toward accident-prevention work is indisputable and has become almost an axiom. Trite and somewhat timewor
Dec 1, 1932
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RI 9567 - In Situ Stress at the Lucky Friday Mine (In Four Parts)By M. J. Beus, M. K. Larson, J. K. Whyatt
U.S. Bureau of Mines researchers reviewed an in situ stress estimate developed from measurements of overcore strain taken at test sites on the 7300 and 7500 levels of the Star Mine near Mullan, ID. Al
Jan 1, 1995
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RI 2655 The Analysis Of Oil-Wax Mixtures ? IntroductionBy L. D. Wyant
[A convenient method for the, analysis of oil-wax mixtures has bean developed in the petroleum laboratory of the Bureau of Mines. This method has been found useful in studying the characteristics of t
Jan 1, 1924
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RI 9006 - Performance Characteristics of Large-Capacity Face Ventilation Systems for Oil Shale MiningThe performance of two large-capacity ventilation systems was compared through tests conducted in a large dead-end heading at a pilot oil shale mine in Colorado. Sulfur hexafluoride (SF6) tracer gas w
Jan 1, 1986
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IC 8520 Respirable Mine Dust Sample Processing LaboratoryBy Murray Jacobson
The Federal Coal Mine Health and Safety Act of 1969 established mandatory dust sampling of coal mines according to procedures prescribed in the Mandatory Health Standards, title 30, Code of Federal Re
Jan 1, 1971
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RI 3827 Determination of the Size Distribution of Fine Coal Particles by the Electron MicroscopeBy J. T. McCartney
"INTRODUCTION The surface areas of the finest fractions of a pulverized material are disproportionately larger than their weights. For instance, Pesrott and Kinney 3/ showed that, in a sample of minus
Sep 1, 1945
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RI 9052 Steam-Induced Volatilization of Silica From RefractoriesBy L. Y. Sadler
The Bureau of Mines conducted a study Lo determine the loss in weight of silica (Si02) volatilization from low-alumina (A1203) refractories used as hot face liner materials in such process equipment a
Jan 1, 1986
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RI 6661 Electron-Beam Melting Of YttriumBy W. E. Anable
The Bureau of Mines studied the purification of commercially available yttrium by melting it in a 100-kw electron-beam furnace. Button-scale melts were made to determine the ultimate purification that
Jan 1, 1965
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RI 2456 Effects of Temperature and Time of Reaction in Distilling Oil Shales on the Yields and Properties of the Crude OilsBy Lewis C. Karrick
This paper is based on data obtained in the course of the oil - shale investigations of the U. S. Bureau of Mines , conducted in cooperation with the State of Utah . The amount and quality of oil that
Mar 1, 1923
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Mutagenicity of Diesel Exhaust Particles and Oil Shale Particles Dispersed in Lecithin SurfactantBy W. E. Wallace, C. A. Hill, M. J. Keane
"Diesel exhaust particulate material from exhaust pipe scrapings of two trucks, diluted automobile diesel exhaust particulate material collected on filters, and two oil shale ores were prepared for th
Jan 1, 1989
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RI 9200 Use of Lignochemicals and Humic Acids To Remove Heavy Metals From Process Waste StreamsBy John E. Pahlman
The Bureau of Mines investigated the feasibility of removing heavy metals from mineral-process waste streams by precipitation with lignochemicals and humic acids. Lignochemicals are by products from t
Jan 1, 1988