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Interaction of Silanol Species on Silica Surface with Hydrogen Bonding Agents Studied by Photoacoustic SpectroscopyBy M. S. Seehra, R. S. Pandurangi
"The interaction of amorphous silica particles with several hydrogen bonding agents (H2O,, C2H,OH, C,H,NO) was investigated by monitoring the changes in the bulk and surface IR vibrational modes of si
Mar 1, 1992
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The Nature of Quartz in Underground Coal MinesBy R. L. Grayson, L. L. Probert
"A three-year project focusing on the depth profiling of respirable coal mine dust particles using scanning electron microscopy coupled with energy dispersive X-ray analysis resulted in the developmen
Dec 1, 1996
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RI 6809 Extraction And Separation Of Selected Lanthanides With A Tertiary AmineBy D. J. Bauer
The Bureau of Mines demonstrated the feasibility of fractionating lanthanide nitrates with a tertiary amine on lanthanum-cerium and thulium-ytterbium pairs. Optimum values were determined for pH, phas
Jan 1, 1966
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RI 7238 Rotary Coring Of Appalachian Area Oil-Producing Formations With Mud Or AirBy R. L. Rough
The Bureau of Mines analyzed rotary-coring-operations data to compare mud and air as coring mediums, and to compare core recoveries, penetration rates, and cost data for the respective mediums as part
Jan 1, 1969
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RI 4788 Preparation Characteristics Of Coal Occurring In Armstrong County, Pa.By William L. Crentz
This Investigation of the preparation characteristics of the coals in Armstrong County, Pa., is the third in a series of Bureau publications by counties appraising the practicability of upgrading marg
Jan 1, 1951
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RI 3428 Carbonizing Properties Of A Subbituminous Coal From Puritan Mine, Dacono, Weld County, Colo. ? IntroductionBy J. D. Davis
On May 15, 1936, Congress authorized the Bureau of Mines to conduct certain studies, experiments, and investigations of subbituminous coal and lignite .4/ Appropriations were made in July 1937, and si
Jan 1, 1939
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RI 4453 Investigation Of Rush Creek Lead-Zinc Deposit, Mono County, Calif.By E. J. Matson
The Bureau of Mines has been investigating deposits of critical and essential minerals in the United States since 1939. The Rush Creek lead-zinc deposit, Mono County, Calif. (fig. 1), was examined by
Jan 1, 1949
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RI 3088 Smelting In The Lead Blast Furnace - Handling Rich Charges - VI. Conditions And Problems Introduced By Increasing The Ratio Of Concentration ? IntroductionBy G. L. Oldright
In the previous study that has been made by the authors on smelting in the lead blast furnace,4 the furnace examined was one that operated under conditions that have been considered as more or less no
Jan 1, 1931
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RI 3088 Smelting In The Lead Blast Furnace Handling Rich Charges VI. Conditions And Problems Introduced By Increasing The Ratio Of ConcentrationBy G. L. Oldright
In the previous study that has been made by the authors on smelting in the lead blast furnace, the furnace examined was one that operated under conditions that have been considered as more or less nor
Jan 1, 1931
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RI 5416 Determination Of Calcium In Wolframite Concentrates By Fluorescent X-Ray Spectrography ? SummaryBy William J. Campbell
The purpose of this investigation was to develop a rapid, accurate method of analysis for small amounts of calcium in wolframite concentrates. This analysis is necessary to determine if the wolframite
Jan 1, 1958
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IC 6903 The New Bureau Of Mines Southern Experiment Station At The University Of Alabama, Tuscaloosa, Ala.By Milton H. Fies
The dedication of thin building, establishing a station of the U.S. Bureau of vines at the University of Alabama, bristles with significance and challenges the wisdom and courage of the people of this
Jan 1, 1936
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RI 7784 Preparation Of Samarium-Cobalt Permanent MagnetsBy J. W. Walkiewicz
Studies were conducted by the Bureau of Mines to develop a method for fabricating Sm-Co permanent magnets. This method consisted of arc-melting, crushing and grinding the alloy, alining and pressing t
Jan 1, 1973
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IC 6913 Mining And Grinding Methods And Costs At The Clay City Pipe Co. Clay Mine, Uhrichsville, Ohio - IntroductionBy E. J. Lintner
This paper is one of a series being prepared by the United States Bureau of Mines describing cloy reining, crushing, and grinding methods and costs at various operations throughout the United States.
Jan 1, 1936
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IC 7724 Petroleum Refineries, Including Cracking Plants In The United States, January 1, 1955 ? Summary - Crude-Oil CapacityBy J. G. Kirby
The number of petroleum refineries in the United States continued to decline during 1954, and according to the Bureau of Mines annual survey there were 326 refineries with a total daily throughput cap
Jan 1, 1955
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IC 8966 Nonfuel Mineral Model DirectoryThis Bureau of Mines report is a compilation of information on computer models of mineral commodity markets in the Federal Government, The directory was compiled by the Analytic System Working Group o
Jan 1, 1984
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RI 5949 Effects Of Hafnium Additions On Properties Of Vanadium ? SummaryBy R. L. Lincoln
The effects of adding from 1 to 50 atomic percent (a/o) to vanadium were investigated by the Bureau of Mines. Properties studied included as-cast and annealed hardness, microstructure, fabricability a
Jan 1, 1962
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RI 3701 Evaporation Losses of Aviation Gasoline in Standing StorageBy Peter Grandone
"INTRODUCTION The Bureau of Mines, recognizing the importance of knowing the evapor¬ation losses of aviation gasoline as larger quantities of this material must be stored, has made studies at a large
May 1, 1943
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RI 5556 Anthracite Gas-Producer Tests At A Brick Plant ? Summary And ConclusionsBy R. F. Tenney
This report has been prepared because little detailed information has been published on the production and use of anthracite producer gas for industrial-process and brick-kiln heating. To obtain this
Jan 1, 1960
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RI 3526 National Safety Competition of 1939By W. W. Adams, T. D. Lawrence
The National Safety Competition , a safety contest conducted annually by the Bureau of Mines , United States Department of the Interior , to promote safety at mines and quarries , has just resulted in
Jun 1, 1940
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RI 6985 Spectrochemical Analysis Of Coal AshBy J. B. Zink
The Bureau of Mines developed a spectrochemical method to determine six constituents in coal ash in the following concentration ranges: silica 9 to 63 percent, alumina 7.5 to 35 percent, ferric oxide
Jan 1, 1967