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RI 4089 Good Fortune Iron Mine, Platte Co. Wyo.By Eugene Frey
"INTRODUCTION The Good Fortune mine was sampled by an engineer of the Bureau of Mines in June 1944. Project 984 was set up under the strategic minerals program to make old workings accessible for this
Aug 1, 1947
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RI 8141 Size Distribution and Mass Output of Particulates From Diesel Engine ExhaustsBy John A. Breslin
Size distributions and concentrations of particulates emitted from diesel engine exhausts were measured with cascade impactors. Samples were taken from the exhaust of two types of engines using three
Jan 1, 1976
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RI 6567 Reactions Between Manganous Oxide, Graphite, and Manganese CarbideBy R. V. Lundquist, A. E. Morris, E. L. Singleton
This experimental research was performed to determine rate - of - reaction constants on the MnO - C and Mn , C₂ - 3MnO systems at 1,100 ° , 1,150 ° , and 1,185 ° C. Reactions were conducted at atmosph
Jan 1, 1964
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RI 7102 Evaluation Of Synthetic Organic Flocculants In The Treatment Of Coal Refuse SlurriesBy Kenneth J. Miller
To determine the effectiveness of the many new flocculants available to the coal industry 20 of these reagents were evaluated treating slurry feeds to four refuse thickeners. Settling rates and su
Jan 1, 1968
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RI 5526 X-Ray Emission Spectrographic Analysis Of High-Purity Rare-Earth Oxides ? Summary And IntroductionBy Farrel W. Lytle
Instrumental analysis has become an indispensable tool in research and production of the rare-earth elements. This development can be attributed mainly to a combination of two factors--the marked chem
Jan 1, 1959
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RI 4785 Concentration Of Oxide Manganese Ores From The Steelville And Susie Q Claims, Beaver County, UtahBy K. C. Dean
During the investigations of the occurrence of manganese in the Western United States, a Bureau of Mines examining engineer collected samples frame two properties in Beaver County, Utah. As the ores w
Jan 1, 1951
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RI 4731 Investigation Of Daggett Chief Manganese Deposit, Manila, Daggett County, UtahBy George W. Heim
Before and during World War II, the Bureau of Mines investigated a large number of ore deposits in the United States and Alaska in a search for domestic sources of strategic minerals. Deposits chosen
Jan 1, 1950
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RI 7474 Recovering Elemental Sulfur From Nonferrous Minerals - Ferric Chloride Leaching Of Chalcopyrite ConcentrateBy F. P. Haver
Because of increasing concern with air pollution, the Bureau of Mines has developed a hydrometallurgical procedure to obtain elemental sulfur from chalcopyrite (CuFeS2) by means of the following react
Jan 1, 1971
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RI 6749 Effects Of Certain Mineralogical Features On Phosphate RecoveryBy J. W. Town
The Bureau of Mines conducted phosphate beneficiation studies to determine the influence of mineralogical and textural features on the recovery of phosphate from select bed and composite samples repre
Jan 1, 1966
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RI 4395 Investigation Of Ely Mine Copper Deposit Orange County, Vt.By H. P. Hermance
The Ely mine, which at one time was the largest producer of copper in the United States, has been idle for the past 30 years. A remarkably continuous ore shoot probably averaging 100 feet wide and 19
Jan 1, 1949
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RI 5179 Fabrication Of Titanium Prototypes Of 81-Mm. Mortar Base Plate ? SummaryBy R. W. Huber
The successful development of a titanium prototype of the 81-mm. mortar base plate for the Army Ordnance Corps is outlined in this report. Information is presented dealing with forming, forging, and m
Jan 1, 1956
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RI 7094 Measurement Of Oleic Acid On Mineral Surfaces Using A Radioactive TracerBy J. Vance Batty
Two methods were devised and evaluated for quantitatively measuring the amount of oleic acid on flotation products and in flotation waters. One method involved use of an organic solvent to remove carb
Jan 1, 1968
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RI 6179 Iron-Catalyzed Hydrogenation Of Phenyl Ether, Benzyl Ether, And Phenyl SulfideBy Walter Kawa
The hydrogenation of phenyl ether, benzyl ether, and phenyl sulfide in the presence of iron catalysts was studied by the Bureau of Mines to gain a better understanding of the role of iron catalysts in
Jan 1, 1963
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RI 6511 Low-Temperature Heat Capacities and Entropies at 298.15° K of Sulfides of Arsenic, Germanium, and NickelBy K. K. Kelley, W. W. Weller
This report contains experimentally determined heat capacity data for four crystalline sulfides -- AsS , GeS , NiS , and Ni3 S₂ -- over the temperature range from 50 ° to 298.15 ° K. The heat capacity
Jan 1, 1964
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RI 7316 Chemical Reclaiming Of Superalloy ScrapBy P. T. Brooks
This Bureau of Mines study describes a process for recovering nickel, cobalt, molybdenum, and chromium contained in complex waste superalloy grindings that, for lack of an economical domestic recovery
Jan 1, 1969
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RI 5634 Vapor Pressures of Liquid Manganese and Liquid SilverBy P. L. Woolf, J. P. Morris, E. Foerster, G. R. Zellars
Measurements of vapor pressure can be used to determine the thermodynamic activities of the components of metallic solutions . The determination of activity by this method requires accurate values for
Jul 1, 1960
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RI 8557 Ceramic Mold Inserts for Use in Ferrous DiecastingBy E. G. Davis
A research program to evaluate the use of ceramic die inserts for ferrous diecasting was initiated by the Bureau of Mines at its Tuscaloosa Research Center. Data were compiled from the literature to c
Jan 1, 1981
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IC 8474 Calculation Procedure For Heat Transfer To A Gas-Solid Suspension From An Externally Heated TubeBy M. B. Bransford
A calculation procedure was evolved by the Bureau of Mines for determining the heat-transfer characteristics of dilute gas-solid mixtures in an externally heated tube. The procedure accounts for diffe
Jan 1, 1970
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RI 6568 Studies of the Thickness of the Plastic Layer of CoalsBy M. J. Kovalik, D. E. Wolfson, F. Fischler
Plastometric tests were made to determine the maximum thickness of the plastic layer for different U.S. coals . The effect of test variables on the maximum thickness of the plastic layer was studied .
Jan 1, 1964
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RI 6716 Correlation Of Yield Behavior In Electrorefined Vanadium With Interstitial ImpuritiesBy E. A. Loria
The Bureau of Mines analyzed the effects of oxygen, nitrogen, and carbon on the tensile properties of electrorefined vanadium in terms of the Petch equation. The effects of the different impurities an
Jan 1, 1966