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IC 9159 Corrosion Of Friction Rock Stabilizer Steels In Underground Coal Mine WatersBy A. F. Jolly
In an effort to better predict the useful service life of friction rock stabilizer mine roof bolts in coal mine environments, the Bureau of Mines has evaluated the corrosion resistance of stabilizer s
Jan 1, 1987
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IC 9076 Coal Mine Roof Instability: Categories And CausesBy Noel N. Moebs
Coal mine roof failure is categorized according to character, trend, or pattern of occurrence. Two principal categories of failure are proposed--geology related and stress related. Geology-related fai
Jan 1, 1986
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RI 3359 Permissible Methane DetectorsBy L. C. IlsLey
The last previous Bureau of Mines publication relative to details of permissible methane detectors (Bulletin 331, published in 1930) describes detectors of four different types, namely flame, combusti
Jan 1, 1937
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RI 2184 Coal-Washing work at North West Experiment Station, Seattle, WABy Earl R. McMillan
"Coal washing commands the thoughtful attention of a steadily incre in number of people. Clean coal is not merely a luxury but is rapidly becoming a necessity in some industrial operations.Coal seams
Nov 1, 1920
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IC 6837 Blasting Practices And Explosives Accidents In Utah Coal Mines ? IntroductionBy D. J. Parker
The ease of ignition and violence of explosion of Utah coal dusts, together with the large volumes of methane given off in some of the mines of the State, made it imperative to abandon obsolete equipm
Jan 1, 1935
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IC 6604 Methods And Costs Of Concentrating Scheelite Ore At The Silver Dike Mill, Mineral County, Nev. - IntroductionBy William O. Vanderburg
This paper describing the methods and costs of milling scheelite ore at the Silver Dike concentrator of the Nevada-Massachusetts Co., Inc., is one of a series being prepared by the Bureau of Mines.
Jan 1, 1932
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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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RI 8725 Laboratory Studies on the Treatment of Ferric Chloride Stripping Liquor From a Clay-Hydrochloric Acid Leaching ProcessBy Robert M. Doerr
In a process being investigated by the Bureau of Mines for recovering alumina from domestic nonbauxitic resources, calcined kaolinitic clay is leached with hydrochloric acid. Iron impurity in the clay
Jan 1, 1982
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RI 2712 Temperature Control System For Dressing And Tempering Fishtail Bits ? IntroductionBy Charles H. Shapiro
[In July, 1924, the Bureau of Mines, through its Petroleum Experiment Station, undertook a field study of methods used in oil-field shops for dressing and tempering fishtail bits. The purpose of this
Jan 1, 1925
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RI 3017 A New Flame Safety-Lamp Testing And Demonstration Apparatus ? Reason For The New ApparatusBy W. P. Yant
[At the majority of mines where flame safety lamps are used either as working lights or as a means of detecting gas, no check it made on this condition of the various parts of the lamp and their assem
Jan 1, 1930
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Continuous Gas Monitoring Using Tube Bundles At The Joanne Mine FireBy L. E. Dalverny
This Bureau of Mines report describes the deployment, 5-month operation, and lessons gained from a continuous gas monitoring system using sampling-tube bundles at an underground mine fire in West Virg
Jan 1, 1975
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RI 8655 Copper Losses and the Distribution of Impurity Elements Between Matte and Silica-Saturated Iron Silicate Slags at 1,250° CBy E. A. Johnson
The Bureau of Mines determined the effect of slag additives on copper solubility and the distribution of typical impurity elements between copper-iron matte and silica-saturated fayalite (iron silicat
Jan 1, 1982
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IC 7480 Breaking Coal with AirdoxBy J. S. Malesky
"INTRODUCTION The Airdox method of breaking coal utilizes compressed air under high pressure and was developed to replace explosives. It is used in Illinois and Indiana mines to a large extent and als
Aug 1, 1948
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RI 5593 Flotation Characteristics Of Goethite ? Introduction And SummaryBy I. Iwasaki
In recent years the rapid depletion of high-grade iron ores and the demand by blast furnace operators for increasingly low-silica ores have stimulated interest in flotation studies of low-grade iron o
Jan 1, 1960
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IC 6705 Mining Methods And Costs At Plant C, Eliot, Calif., Of The Pacific Coast Aggregates (Inc.) - IntroductionBy Edward B. Kendall
[This paper is one of a series being prepared far and published by the United States Bureau of Minus describing the methods of mining used and operating costs obtained in producing land and gravel fro
Jan 1, 1933
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RI 6785 Electrodeposition Of Aluminum From Fused-Salt Electrolytes Containing Aluminum ChlorideBy P. C. Good
Work was done to determine conditions necessary for efficient electrodeposition of aluminum from fused chloride electrolytes. Aluminum was deposited from a molten chloride salt electrolyte over a temp
Jan 1, 1966
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IC 7236 Selection, Use, And Maintenance Of Respiratory Protective Devices ? IntroductionBy H. H. Schrenk
There are several well-recognized procedures for controlling exposure to hazardous atmospheres in industry. They include (a) substitution of less toxic material, (b) enclosure of processes, (c) wet me
Jan 1, 1943
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RI 5364 Vapor Pressures Of Liquid Iron And Liquid Nickel ? SummaryBy J. P. Morris
This paper describes a gas-transport method for measuring vapor pressures of liquid metals. Vapor pressures of iron and nickel were determined at temperatures between 1,540° and 1,620° C. The results
Jan 1, 1957
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IC 9120 Fuse Wire Arc TesterBy Peter G. Kovalchik
To compare the viability of the new fuse wire arc test (FWAT) as a substitute for the comparative tracking index (CTI) for determining surface resistance to electrical tracking, the Bureau of Mines co
Jan 1, 1987
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RI 7452 Colorimetric Determination Of Beryllium In CoalBy Roy F. Abernethy
This report describes a method developed by the Bureau of Mines for the determination of beryllium in coal ash. Samples are put into solution by standard wet chemical procedures. Interfering elements
Jan 1, 1970