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IC 9097 Bureau Of Mines Research Into Reducing Materials-Handling InjuriesBy Richard L. Unger
The Bureau of Mines entered into a cooperative agreement with an eastern Kentucky coal mining company to comprehensively redesign the flow of equipment and supplies throughout its underground mines. I
Jan 1, 1986
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OFR-81-76 Development Of An Automatic Fire Protection System For Mobile Underground Metal Mining EquipmentBy Gene R. Reid
The contract objective is the development of an Automatic Fire Control System for Mobile Underground Metal Mining Equipment. The Phase I Report, which described the projected data handling plan, was p
Jan 1, 1975
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Commodity Data Summaries 1974 - Appendix I To Mining And Minerals Policy ? Aluminum1. Domestic Production and Use: Twelve companies operated 31 primary aluminum reduction plants, three firms accounting for 66% of production. Washington, Oregon, and Montana accounted for 32% of the t
Jan 1, 1974
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Bulletin 220 Bibliography of Petroleum and Allied Substances, 1921By E. H. Burroughs
This bulletin is the sixth in the series of petroleum bibliographies published by the Bureau of Mines, Bulletins 149, 165, 180, 189, and 216 being compilations for the years 1915, 1916, 1917, 1918, an
Jan 1, 1921
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RI 7034 Laboratory Study Of Factors Influencing Waterflow In Mine Backfill - Classified Mill TailingsBy Robert C. Bates
Variations in water percolation rates through saturated cohesionless hydraulic backfill (mill tailings) have been studied in relation to the many physical aspects of the system to determine the most i
Jan 1, 1967
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MLA 44-83 - Mineral Investigation Of The Cucamonga Rare II Area (Nos. B5174 And C5174), San Bernardino County, California - SummaryBy Thomas J. Peters
Tungsten, silver, lead, zinc, and placer gold occur in the Cucamonga B RARE II area (no. B5174). A strata-bound, scheelite-bearing zone at the Blue Diamond prospect (fig. 1, no. 1) contains an estimat
Jan 1, 1983
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RI 5459 Volatilization Of Tin Chloride From Bolivian Slimes ? SummaryBy K. K. Kershner
The purpose of this investigation was to develop methods, on a laboratory scale, for recovering tin from Bolivian metallurgical slimes. Petrographic and chemical analyses were made of slime ore fracti
Jan 1, 1959
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RI 7205 Evaluation Of Phosphate Fines From Southeastern IdahoBy J. W. Town
The Bureau of Mines determined the physical properties of southeastern Idaho phosphate fines as related to mineral composition, particle size and liberation, beneficiation, and potential use in struct
Jan 1, 1968
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RI 4022 Capitan Iron Deposits, Lincoln County, N. MexBy John H. Soule
Although known since 1902 , the Capitan iron deposits have not been mined mainly because of the low grade of the ore . A small amount of exploratory work carried on at an early date was reported . C.
Mar 1, 1947
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RI 8204 Detection of Filamentous Iron Bacteria in Open Recirculating Cooling Water SystemsBy H. E. Hilliard
A method was investigated for detecting and counting filamentous iron bacteria in open recirculating cooling systems. It is simple and fast and does not require trained microbiologists. Samples fr
Jan 1, 1976
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IC 8322 Vapor Pressure Of Pure Liquid NitrogenBy P. C. Tully
The vapor pressure-temperature relationships for saturated pure liquid nitrogen are calculated by the Strobridge equation using a digital computer. This information is presented in two tables: first)
Jan 1, 1967
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A Rock Mass Rating Scheme For Clastic Sediments Based On Geophysical LogsBy Terry P. Medhurst, Stuart A. MacGregor, Peter J. Hatherly
In addition to fractures and joints, compositional factors and bedding influence the strength of clastic sedimentary rocks. Rock mass rating schemes must therefore consider all of these factors. In
Jan 5, 2007
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IC 8261 Brown Iron Ore Resources Barbour, Burler, Crenshaw and Pike Countries, AlaBy James F. O'Neill
Brown iron ore resources in Barbour , Butler , Crenshaw , and Pike Counties were investigated in a drilling program and geological study by the Federal Bureau of Mines in cooperation with the Alabama
Jan 1, 1965
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IC 8261 Brown Iron Ore Resources: Barbour, Butler, Crenshaw, And Pike Counties, Ala.By James F. Neill, O&apos
Brown iron ore resources in Barbour, Butler, Crenshaw, and Pike Counties were investigated in a drilling program and geological study by the Federal Bureau of Mines in cooperation with the Alabama Geo
Jan 1, 1965
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IC 8261 Brown Iron Ore Resources: Barbour, Butler, Crenshaw, And Pike Counties, Ala. (031c634d-2884-4660-919f-11e2d582ba56)By James F. Neill, O&apos
Brown iron ore resources in Barbour, Butler, Crenshaw, and Pike Counties were investigated in a drilling program and geological study by the Federal Bureau of Mines in cooperation with the Alabama Geo
Jan 1, 1965
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IC 6691 Square-Set System Of Mining ? IntroductionBy E. D. Gardner
This paper on the square-set system of mining embodies the results of a special study of the subject made as a part of the Bureau of Mines general investigation of mining methods and costs. Data for t
Jan 1, 1933
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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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OFR-113-80 Column Leaching Of Low-Grade Chalcopyrite Ores Using Thermophilic BacteriaBy Corate L. Brierley
Low-grade porphyry copper ores containing chalcopyrite as the primary mineral was leached by two strains of acidophilic, thermophilic microbes belonging to the genus Sulfolobus. Leach tests were condu
Jan 1, 1979
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OFR-4-83 The Quenching Behavior Of Coal Dust-Air MixturesBy Frank T. Greene
An investigation of the quenching behavior of coal dust-air flames was carried out. The literature relevant to coal dust-air flames was reviewed, including information on the agglomeration, sedimentat
Jan 1, 1981
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New Support Concepts For Hard Rock Mining Applications (cf879b82-5ec7-498e-8a87-ab8e53354118)By Stephen C. Tadolini, Thomas M. Barczak
A critical safety component for all underground mining is intrinsic and standing support systems. Specifically, tabular hardrock mining exploits a wide variety of deposits that require various method