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RI 8999 - Hydrochloric Acid-Oxygen Leaching and Metal Recovery From a Copper-Nickel Bulk Sulfide ConcentrateBy G. A. Smyres
The Bureau of Mines investigated a HCI-02 leaching procedure to recover Cu, Ni, and Co from a low-grade bulk sulfide flotation concentrate prepared from the Duluth gabbro complex. Since the Duluth gab
Jan 1, 1985
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RI 3157 Washability Data On Certain Coal Beds Of Alabama With Special Reference To Sulphur Elimination ? IntroductionBy B. W. Gandrud
This report, consisting mostly of float-and-sink data and washability curves, has been prepared in connection with an exhaustive study of coal preparation in Alabama conducted, by the U, S. Bureau of
Jan 1, 1932
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RI 3157 Washability Data On Certain Coal Beds Of Alabama With Special Reference To Sulphur EliminationBy B. W. Candrud
This report, consisting mostly of float-and-sink data and washability curves, has been prepared in connection with an exhaustive study of coal preparation in Alabama conducted by the U. S. Bureau of M
Jan 1, 1932
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RI 8806 - Recovery of Alumina From Anorthosite by an HCI-F-Gas Sparging Crystallization ProcessBy J. A. Eisele
The Bureau of Mines is investigating the recovery of alumina from domestic nonbauxitic resources, including anorthosite. The United States has large reserves of anorthosite, but its aluminum content i
Jan 1, 1983
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Technology News - No. 535 - NIOSH Releases New Educational Video Escape From Farmington No. 9: An Oral HistoryResearchers with the National Institute for Occupational Safety and Health (NIOSH) have developed a training module to educate both new, inexperienced miners as well as veterans on important issues re
May 1, 2009
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RI 7110 Dewatering Coal Flotation Tailing By The Admixture Of Crushed Washery RefuseBy M. R. Geer
The ever-increasing need to guard against stream pollution has intensified interest in the problems of handling and disposing of flotation tailing. Therefore, the Bureau of Mines investigated the poss
Jan 1, 1968
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RI 9372 - CaF2-Enhanced HCI Leaching of a Manganese-Bearing Silicate OreBy P. Comba
The U.S. Bureau of Mines investigated a hydrochloric (HC1)-calcium fluoride (CaF2) leaching procedure to treat domestic manganese (Mn)-bearing silicate resources. The proposed process is an alternativ
Jan 1, 2010
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IC 9115 Barite Availability-Market Economy Countries - A Minerals Availability AppraisalBy Joseph S. Coffman
The Bureau of Mines investigated the availability of barite (BaSO4) from 35 U.S. and 41 non-U.S. mines and deposits in 17 market economy countries (MEC's). This evaluation assesses the availabili
Jan 1, 1986
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RI 7264 Extraction Of Aluminum And Fluorine From Leached Potlining ResiduesBy P. C. Good
The Bureau of Mines conducted a laboratory investigation of a sinter-leach method to recover aluminum and fluorine from waste carbon potlining residues from secondary cryolite recovery operations in a
Jan 1, 1969
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RI 4790 Simple Treatment Methods For Sulfide Gold And Silver OresBy A. L. Engel
This report is a compilation of results of brief preliminary tests on sulfide ores that contained gold and silver and, in some cases base metals. It is a companion paper to a recent similar report on
Jan 1, 1951
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RI 4433 Investigation Of Sweetsprings Manganese Deposits Monroe County, W. Va., And Craig County, Va.By Harold B. Ewoldt
The Appalachian Ores Co., Sweetsprings, W. Va. was a small but persistent producer of manganese ore for several years prior to 1942. Most of the ore mined was hard, nodular psilomelane, with some pyro
Jan 1, 1949
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RI 6542 Hydrocarbon-Type Relationships of Eastern and Western Hemisphere High-Sulfur Crude OilsBy Harold M. Smith
The data in this report were prepared to show how Bureau of Mines routine crude oil analyses could be used to evaluate crude oils in terms of common commercial products . The use of Bureau of Mines ro
Jan 1, 1964
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RI 7669 Analysis Of Fracture Orientations For Input To Structural Models Of Discontinuous RockBy M. A. Mahtab
This report presents a new procedure for analyzing the orientations of rock fractures in an engineering site. This procedure, coded in a computer program, identifies clusters or groupings among the fr
Jan 1, 1972
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RI 6096 A Microhydrogenation Technique For Identifying Organic Sulfur, Nitrogen, Oxygen, And Halogen Compounds ? Summary And IntroductionBy C. J. Thompson
In the course of the work currently conducted by the Bureau of Mines in cooperation with the American Petroleum Institute Research Project 48 on identifying sulfur compounds in petroleum, a micrometho
Jan 1, 1962
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RI 7986 Electrochemical Anodic Reaction Rate of Vanadium Metal With Molten VC12-VC13-NaC1 MixturesBy A. E. Raddatz
The Bureau of Mines has determined the electrochemical rate of anodic dissolution of vanadium metal in a VC12-VC13-NaC1 electrolyte at 860' C for the purpose of elucidating the reaction mechanism
Jan 1, 1974
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RI 4412 Investigation Of Black Mountain Beryl Deposit, Oxford County, MaineBy E. E. Maillot
In 1943, diamond drilling by the Bureau of Mines, comprising 11 holes which totaled 1,295.6 feet, showed that the pegmatite at Black Mountain consisted of shallow lenses in interbedded biotite-quartz-
Jan 1, 1949
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Sand & Gravel Operator Mining Facts – 2004By NIOSH Publication
In 2004, a total of 7,074 sand and gravel mining operations reported employment to the Mine Safety and Health Administration (MSHA).
Sep 1, 2007
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RI 7905 Detonation Calculations With a Percus-Yevick Equation of StateBy John C. Edwards
Chapman-Jouguet detonation calculations were carried out for pentaerythri-tol tetranitrate (PETN), TNT, and ammonium nitrate-fuel oil (AN-FO) explosives using the compressibility form of an equation o
Jan 1, 1974
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RI 5194 Anchorage Testing Of Mine-Roof Bolts Part 2. Expansion-Type. 3/4-Inch Bolts ? Summary And ConclusionsBy A. J. Barry
A method was developed for testing the anchorages obtained with 3/4-inch, expansion-type, headed bolt and shell assemblies. The apparatus is a modification of that used in testing -inch-diameter, slot
Jan 1, 1956
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RI 6975 Developing A Thermochemical Model For The Iron Blast Furnace - Mathematical Model Of The Reduction ZoneBy Hillary W. St. Clair
The reduction zone of the iron blast furnace is represented by a mathematical model of the chemical reactions and heat transfer that occurs between gas and solids during the deoxidation of iron oxide.
Jan 1, 1967