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Carbonizing Properties: Chilton Coal From Lorado No. 5 Mine Lorado, Logan County, W. Va. - Introduction And SummaryBy J. D. Davis
THE CARBONIZING properties of Chilton-bed coal from Lorado No. 5 mine, HE Logan County, W. Va., were determined by Bureau of Mines-American Gas Association tests at 600°, 700°, 800°, 900°, and 1,000°
Jan 1, 1951
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OFR-59(3)-73 Phase II Final Report - Volume 3 Of 3 - Feasibility Study Of Surface Impregnation Equipment For The Chemical Stabilization Of Coal Mine StructuresThis report summarizes the work performed and results achieved on the above contract from October 18, 1971 through July 14, 1972 under Phase II, Task 1: Detailed Design of Prototype and Task 3: Suppor
Jan 1, 1972
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IC 7811 Mining Methods And Costs, Calyx Nos. 3 And 8 Uranium Mines, Temple Mountain District, Emery County, Utah ? Introduction And SummaryBy W. L. Dare
This information circular is one of a series the Bureau of Mines plans to publish describing the methods and costs of mining uranium on the Colorado Plateau. The Temple Mountain mining district is
Jan 1, 1957
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IC 6602 Shaft-Sinking Methods, Practices, And Costs Of The Consolidation Coal Co. At Its No. 261 Mine, Caretta, McDowell County, W. Va. ? IntroductionBy Laurence F. Kelley
This paper is one of a series being prepared by the United States Bureau of Mines on shaft-sinking methods and costs at individual operations in various mining districts of the United States. The meth
Jan 1, 1932
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OFR-35-81 Reclamation And Pollution Control: Planning Guide For Small Sand And Gravel MinesThis field guide is designed for use in planning pollution control and reclamation activities on small sand and gravel operations. Its purpose is to assist operators in selecting environmentally desir
Jan 1, 1981
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RI 4675 Investigation Of Shawangunk Mine Zinc-Lead Deposit, Near Summitville, Sullivan County, N. Y.By N. A. Eilertsen
Mining operations were in progress at the Shawangunk mine near Summitville, Sullivan County, N. Y. as early as 1843 and again as late as 1918. Difficulty in effecting mechanical separation of sphaleri
Jan 1, 1950
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OFR-31(2)-83 Floodplain Disposal Of Mill Tailings - Volume II - Appendices A - FBy K. E. Robinson
Appendix A is an abridged extract of the report prepared by the Geotechnical and Structural Engineering Society of Idaho, and presents the results of their one-year study to evaluate the feasibility o
Jan 1, 1981
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A New High-Temperature Salt Solder SystemBy Alfred E. Schwaneke
A new high-temperature soft soldering system has been developed by the Bureau of Mines for use on copper, copper alloys, and low-carbon steel; the method is applicable to automobile radiators and home
Jan 1, 1970
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Introduction - The Mission (8dfbdf91-d17b-4b51-baf5-c858392a3f13)When the Organic Act of 1910 established the Bureau of Mines within the Department of the Interior, the Bureau's programs involved only health and safety research and, education, and fuels testin
Jan 1, 1977
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IC 7369 Report On The Investigation By Fuels And Lubricants Teams At The Wintershall A. G., Lützkendorf, Near Mücheln, Germany ? IntroductionThis report deals with the Schmalfeldt gasification plant for making synthesis gas, the Fischer-Tropsch plant, the hydrogenation plant and the catalyst factory, and includes a report on lubricating oi
Jan 1, 1946
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IC 6456 Zirconium. II. Domestic and Foreign DepositsBy E. P. Youngman
Zirconium, formerly distinctly a rare element, is rapidly becom- ing of rather extensive commercial importance. Economic features of the zirconium industry, together with general information regarding
Jun 1, 1931
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Bulletin 37 Comparative Test of Run of Mine and Briquetted Coal on LocomotivesBy W. F. M. GOSS
For the purpose of procuring data that could be used in estimating the value of the briquetting process as applied to American fuels, the United States Geological Survey, in cooperation with other int
Jan 1, 1911
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RI 4287 Performance Of A Diesel Mine LocomotiveBy L. B. Berger
Tests and observations of a Diesel-powered locomotive used for under-ground haulage, in a-clay mine were made by representatives-of the Bureau of Mines .primarily to determine the composition of the e
Jan 1, 1948
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RI 3160 The Effect Of Oxygen On Gaseous Hydrogen Sulphide Corrosion Of Tank SteelBy John M. Devine
The severe corrosion of equipment that is caused by the presence of hydrogen sulphide in oil and gas has been described in detail by several authors. Such corrosion, termed "low-temperature hydrogen s
Jan 1, 1932
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RI 7091 Effects Of Adding Rare-Earth Silicides, Aluminum, And Cryolite To Molten SteelBy R. J. Leary
This investigation was conducted to determine the effects of various rare-earth metal addition practices upon the macrostructure and the pattern of sulfur distribution in steel ingots. Heats of plain
Jan 1, 1968
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IC 8195 Methods And Costs Of Shaft Sinking, U.S. Atomic Energy Commission Project Gnome, Near Carlsbad, N. Mex. (545fbb46-5f39-4ded-9f3a-c23c6007b608)By Merwin H. Howes
Gnome shaft, situated about 24 miles southeast of Carlsbad, N. Mex., was designed and sunk by the U.S. Atomic Energy Commission for conducting a peace- time experimental nuclear explosion in the thick
Jan 1, 1963
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IC 8195 Methods And Costs Of Shaft Sinking, U.S. Atomic Energy Commission Project Gnome, Near Carlsbad, N. Mex.By Merwin H. Howes
Gnome shaft, situated about 24 miles southeast of Carlsbad, N. Mex., was designed and sunk by the U.S. Atomic Energy Commission for conducting a peace-time experimental nuclear explosion in the thick
Jan 1, 1963
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Mineral Indicators - AbrasivesNorton Co., the world's largest producer of abrasives, is enlarging its proppant operation. Proppants are strong chemical particles used to wedge open rock formations in deep oil wells, thereby i
Jan 1, 1979
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RI 4563 Lead Smelting In The Ore Hearth II. The Development Of The Ore Hearth: Its Smelting ColumnBy G. L. Oldright
In the first Report of Investigations of the present series?(No. 4562) the usual course of progress ill reducing the minerals of low-grade ores to their valuable metallic components had been noted as
Jan 1, 1949
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OFR-121-81 Innovations For Explosionproof Electrical EnclosuresBy R. J. Gunderman
Explosionproof electrical enclosures for coal mine face equipment have been of the same basic design for many years without significant change. Characteristics for potential improvement were investiga
Jan 1, 1980