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IC 6985 Gold Mining And Milling Methods And Costs At The Gold Hill Mine Of Talache Mines, Inc., Quartzburg, Idaho ? IntroductionBy Joe H. Skidmore
This paper, describing mining and milling methods and costs at the Gold Hill mine, is one of a series being published by the Bureau of Mines. Boise Basin, in which the geld Hill mine is located, is
Jan 1, 1938
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IC 9359 State-Of-The-Art Techniques For Backfilling Abandoned Mine VoidsBy Jeffrey S. Walker
Abandoned underground mine openings are susceptible to collapse because of the mining methods used, the character of the overburden, and the typically large, wide entries with minimal roof support. Th
Jan 1, 1993
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IC 7250 Fires In Surface Mining And Milling StructuresBy D. Harrington
Fire is always a serious-menace, whether in a residential or in an industrial region; in wartime it is particularly damaging in an industrial plant. The mining industry is especially vulnerable, as it
Jan 1, 1943
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IC 8957 Dust Sources And Controls On The Six U.S. Longwall Faces Having The Most Difficulty Complying With Dust StandardsBy Robert A. Jankowski
The Bureau of Mines has recently identified five major factors that contribute to high respirable dust levels on the six U.S. longwall faces having the most difficulty complying with Federal dust stan
Jan 1, 1983
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RI 2229 A Convenient And Reliable Retort For Assaying Oil Shales For Oil Yield ? IntroductionBy L. C. Karrick
The Bureau of Nines has received many inquiries on the subject of assaying oil-shales, both from individuals who desire to wake their own assay while in the field, and also from Commercial assayers an
Jan 1, 1921
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RI 8054 Isotopic Purification of Helium by Differential Distillation Below the Lambda-PointBy Philip C. Tully
The Bureau of Mines, in a continuing effort to improve processes and methods of helium purification, has developed a differential distillation method for removing helium-3 from helium-4. Differential
Jan 1, 1975
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RI 6952 Pendulum Sclerometer For Surface Hardness StudiesBy O. Terichow
A pendulum sclerometer designed by the Bureau of Mines is described. Its method of operation is given, along with the results of tests made on representative mineral samples of Mohs' hardness sca
Jan 1, 1967
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Explosion Temperatures Of Metals And Other Elemental Dust CloudsBy Isaac A. Zlochower, Kenneth L. Cashdollar
The Pittsburgh Research Laboratory of the National Institute for Occupational Safety and Health conducted a study of the explosibility of various metals and other elemental dusts dispersed in air, wit
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The Mineral Industry Of Other West African Countries - BeninBy Phyllis Lyday
Mining did not contribute significantly to the economy of Benin, a small country on the coast of West Africa, during 1978-79. During these years, Benin continued to be rated by the United Nations as o
Jan 1, 1981
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RI 2442 The Use of Vapor-Tight Tankage in the Oil FieldsBy Ludwig Schmidt
The policy of buying crude oil on a gravity basis , recently instituted by the major crude oil purchasing agencies in the Mid- Continent field , has caused a new and vital interest to be taken in the
Feb 1, 1923
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RI 9451 - Effect Of Pressure On Leakage Of Automatic Sprinklers (f979e964-aecc-4365-9520-3e0c309d2b48)By Mark W. Ryan
The U.S. Bureau of Mines conducted a study to determine if commercially available automatic sprinklers could withstand the high static pressures in deep underground coal mines without leaking and if e
Jan 1, 2010
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OFR-1(1)-77 Roof Fall Study Pocahontas #3 Seam - Research And Development Contract To Conduct An Engineering Study Of Coal And Coal Measure Rocks ? 1.0 ? 1.1 General Description Of ReportBy John C. Ferm
This report contains a summary of Phase I and complete results of Phase II portions of a study of geologic factors associated with roof falls in mines on the Pocahontas #3 coal seam in southern West V
Jan 1, 1975
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RI 6793 Evaluation Of Ethylene As A Gas Tracer In Underground Gas StoragesBy C. J. Walker
The Bureau of Mines undertook a theoretical and laboratory study to determine the feasibility of using ethylene as a tracer for natural gas in underground gas-storage reservoirs. The study indicated
Jan 1, 1966
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IC 7072 Some Data On Dust In Industrial Work ? IntroductionBy D. Harrington
Although the hysteria. with regard to silicosis end other occupational diseases seems largely to haws passed, and more careful sober consideration is being given this subject, it would be very poor po
Jan 1, 1939
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IC 9030 Design And Operation Of Four Prototype Fire Detection Systems In Noncoal Underground MinesBy William H. Pomroy
Fires in underground metal and nonmetal mines pose a threat to the safety of underground miners and to the productive capacity of this Nation's mines. Contaminated air (smoke, carbon monoxide, an
Jan 1, 1985
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RI 8146 Electrodeposition of Titanium Diboride CoatingsBy David Schlain
This Bureau of Mines report describes a method for electrodepositing titanium diboride from a molten salt bath. Initially, the electrolyte is a mixture of LiBO2, NaB02, Na2 Ti03 , Li2Ti03, and Ti02? T
Jan 1, 1976
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RI 2239 Losses In Aluminum and Aluminum-Alloy MeltingBy Robert J. Anderson
"Introductory Statement:In melting the nonferrous metals and alloys for foundry and rolling-mill work, even with the best practice, there is always a loss, due principally to oxidation. Melting losses
Apr 1, 1921
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RI 8406 - Geology, Mining, And Methane Content Of The Freeport And Kittanning Coalbeds In Indiana And Surrounding Counties, Pa.By A. T. Iannacchione, D. G. Puglio
This Bureau of Mines study covers 25 underground mines that were active in the Upper and Lower Freeport and Lower Kittanning coalbeds in 1976. The coal ranges from low to medium volatile in rank; its
Jan 1, 1979
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RI 5828 Preparation Of Tungsten And Its Alloys By Bomb Reduction ? Introduction And SummaryBy P. C. Good
Tungsten metal in fused form and of high purity was prepared by reducing tungstic oxide with redistilled calcium metal in a heavy-walled sealed reactor. Alloys of tungsten with vanadium, molybdenum) c
Jan 1, 1961
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RI 6618 Heats Of Formation Of Goethite, Ferrous Vanadate, And Manganese MolybdateBy R. Barany
The heats of formation of goethite, ferrous vanadate, and manganese molybdate at 298.15° K were determined by solution calorimetry. For formation from the elements, the heat values were -133.7 ±0.3 kc
Jan 1, 1965