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RI 6193 Oxidation Leaching Of Copper Sulfides In Acidic Pulps At Elevated Temperatures And PressuresBy Martin H. Stanczyk
Acid leaching of selected copper sulfide minerals, impure copper sulfide flotation concentrates, and a cement copper precipitate at elevated temperatures and pressures was investigated. Copper extract
Jan 1, 1963
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IC 7299 Bureau Of Mines Exploration Of Mercury Deposits To June 30, 1944 ? SummaryBy McHenry Mosier
Mercury is one of the strategic metals the supply of which has been raised from critical uncertainty to more than enough for essential demands. Work by the Bureau of Mines has contributes substantiall
Jan 1, 1944
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RI 9416 - Cause of Floor Self-Heatings in an Underground Coal MineBy Jeffrey Shawn Peterson
The testing procedures of the U.S. Mine Safety and Health Administration specify that intrinsic safety acceptance tests be conducted using a standard tungsten-cadmium electrode configuration in the br
Jan 1, 1992
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RI 8331 Flotation-Nitric Acid Leach Procedure for Increasing Uranium Recovery From a Refractory OreBy T. G. Carnahan
The Bureau of Mines investigated a flotation-nitric acid leach procedure as part of the goal to maximize minerals and metals recovered from primary and secondary domestic resources. Studies were condu
Jan 1, 1979
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RI 6032 Defluorination Of Fluorspar: Pyrohydrolysis At 1,500° C. ? SummaryBy Robert K. Koch
Laboratory-scale studies on defluorination of natural and synthetic fluorspars by pyrohydrolysis at 1,500° C. were made to determine the feasibility of developing a process for producing hydrogen fluo
Jan 1, 1962
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RI 7907 Mine Roof Reinforcement by Specifically Designed Epoxy Resin SystemsBy R. V. Subramanian
This project financed by the Bureau of Mines investigated the use of polymers to achieve rock bonding and reinforce coal mine structures for better or permanent ground support. Support was achieved by
Jan 1, 1974
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RI 8768 Mathematical Modeling of Accessory Element Distribution in Metallurgical Processes-Computerization of a Lead Smelter PlantBy M. A. Lucas
The Bureau of Mines has developed a computerized mathematical model to predict the distribution of accessory elements throughout a metallurgical process. The model can be used to determine process con
Jan 1, 1983
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RI 8081 Continuous Flotation of High-Clay Potash OresBy J. S. Browning
The Bureau of Mines investigated the concentration characteristics of high-clay sylvinite ores from potash companies operating in the Permian basin near Carlsbad, N. Mex. These ores, containing 14 to
Jan 1, 1975
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RI 8800 Coal-Cutting Forces and Primary Dust Generation Using Radial Gage Cutters (8ee794b2-ae0f-4066-8f15-e26d688a7579)By Wallace W. Roepke, Jon I. Voltz
"The Bureau of Mines determined coal-cutting forces and primary dust generation of four styles of radial gage bits as used on end rings of continuous mining machines. Direct comparisons for reference
Jan 1, 1983
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IC 6264 Elecytrical Blasting Practice at Some Coal Mines in the State of WashingtonBy S. H. Ash
As part of the work done at the Washington coal mines during the year 1929 , a study was made of the safety practices in and about the mines . Inasmuch as electrical blasting has made considerable hea
Apr 1, 1930
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RI 2808 Analyses Of Spindletop, Texas, Crude Oils ? IntroductionBy A. J. Kraemer
The Bureau of Mines for a number of years has been carrying on an investigation of properties of crude oils from producing fields in the United States and has published a series of reports on differen
Jan 1, 1927
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RI 7726 Characterization Of The Valence State Of Iron In Coal DustBy D. A. Doughty
The Bureau of Mines developed two methods for determining iron II and iron III in 2- to 5-mg samples of coal using electron paramagnetic resonance (EPR) spectrometry. One method used solid coal sample
Jan 1, 1973
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RI 7679 The Statistical And Spatial Evaluation Of Sulfur And Ash In Coal SeamsBy Manuel Gomez
The mean and the standard deviation were used to describe general sulfur and ash populations as well as specific populations of these variables from one coal seam. Both the mean and the standard devia
Jan 1, 1972
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RI 2675 Eleventh Semi-Annual Motor Gasoline SurveyBy A. J. Kraemer
For a number of years the Bureau of Mines has conducted semi-annual survey to determine the changes in the characteristics of the rotor gasoline being sold in the United States. Certain cities have be
Jan 1, 1925
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RI 9384 - High-Temperature Cyanide Leaching of Platinum-Group Metals From Automobile Catalysts-Laboratory TestsBy D. P. Desmond
The U.S. Bureau of Mines investigated leaching automobile catalysts with sodium cyanide (NaCN) solutions at high temperatures to recover platinum-group metals (PGM). The feed was virgin monolith rejec
Jan 1, 2010
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RI 5396 Ilmenite And Other Black-Sand Minerals In The Deadwood Placer Deposit, Valley County, Idaho ? Summary And ConclusionsBy R. H. Storch
The work described in this report was part of a Bureau of Mines program to appraise the titanium-mineral resources of Idaho. Part of the program included churn drilling of alluvial deposits that previ
Jan 1, 1958
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RI 8752 Low-Iron Cu-Ni-Co Matte From Duluth Complex Sulfide Concentrate by Direct SmeltingBy I. D. Shah
The copper-nickel ore of the Duluth Gabbro Complex in northeastern Minnesota is a large potential domestic resource of cobalt and platinum-group metals. However, because of the low grade of the primar
Jan 1, 1983
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RI 5146 National Motor-Gasoline Survey Winter 1954-55 - IntroductionBy O. C. Blade
This report on the properties of motor fuels sold through service stations In the United States was made In accordance with a cooperative agreement between the American Petroleum Institute and the Bur
Jan 1, 1955
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Mine Fire Detection Under Zero Airflow ConditionsBy John C. Edwards, Gene F. Friel, John J. Opferman, Robert A. Franks
A series of diesel fuel fire experiments were conducted in the Pittsburgh Research Center's Safety Research Coal Mine (SRCM) to determine products-of-combustion (POC) spread rates along a single
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RI 8039 Converting Stainless Steel Furnace Flue Dusts and Wastes to a Recyclable AlloyBy H. E. Powell
Over 5 million lb of chromium, 1 million lb of nickel, and 90,000 lb of molybdenum are lost annually in the dusts generated in the production of stain-less steel. Additional losses of these metals in
Jan 1, 1975