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RI 3086 Note On Julius Suspensions ? IntroductionBy M. J. Brevoort
Research work in the Bureau of Mines cryogenic laboratory requires the use of high-sensitivity galvanometers of the d'Arsonval type in a building that is subject to unusually severe vibrations. A
Jan 1, 1931
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RI 3086 Note On Julius SuspensionsBy M. J. Brevoort
Research work in the Bureau of Mines cryogenic laboratory requires the use of high-sensitivity galvanometers of the d'Arsonval type in a building that is subject to unusually severe vibrations. A
Jan 1, 1931
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IC 6159 Method And Cost Of Mining At Barr Mine Tri-State Zinc And Lead District ? IntroductionBy Oliver W. Keener
The operation described herein differs from the usual practice in the Tri-State district in two important respects: (1) the ore is loaded into cars which are tramped to the shaft and hoisted on self-d
Jan 1, 1929
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RI 8404 Detinning Ferrous Products From Urban Waste for Use in SteelmakingBy H. V. Makar
Ferrous fractions recovered from urban refuse were tested by the U.S. Bureau of Mines, U.S. Department of the Interior, to assess their character, composition, and response to detinning. This research
Jan 1, 1979
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RI 8298 Effects of Time Between Exposure and Support on Mine Roof Stability, Bear Coal Mine, Somerset, Colo.By Daryl E. Radcliffe
The Bureau of Mines studied the displacement of the roof in a portion of the Bear coal mine near Somerset, Colo, Horizontal-and vertical-displacement gages were installed in a five-entry section durin
Jan 1, 1978
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Mineral Indicators - Aluminum (71d9fb81-7615-4488-bd6f-7d9b494d4558)In December's marketing of 99.5 percent aluminum ingot, domestic producer pricing remained at 53$ per pound, while dealer quoting rose from 47.5¢ to 48.5¢. BORON Domestic production of bo
Jan 1, 1978
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RI 7897 Geochemistry of Liquids, Gases, and Rocks From the Smackover FormationBy A. Gene Collins
The Bureau of Mines conducted a research study of the geochemistry of the Smackover Formation to determine what geochemical relationships are useful in exploration for and production of oil and gas. S
Jan 1, 1974
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RI 8036 Polymeric Materials for Sealing Radon Gas Into the Walls of Uranium MinesBy John C. Franklin
The Bureau of Mines conducted extensive laboratory and limited field tests to determine whether a polymeric material could effectively reduce the emanation rate of radon gas from uranium ore. In the l
Jan 1, 1975
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RI 6087 Methods Of Analyzing Oilfield Waters - Metallics: Copper, Nickel, Lead, Iron, Manganese, Zinc, And Cadmium ? Introduction And SummaryBy A. Gene Collins
During recent years the interest in trace and minor constituents of oil-field water, petroleum, and their associated reservoir rocks has increased. The metals copper, nickel, lead, manganese, iron, zi
Jan 1, 1962
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Designs For Rapid In-Situ Sealing (12362f3e-3ba5-42be-8010-9514551e0009)By C. Stephan, E. Weiss, J. Trackemas, M. Sapko
The National Institute for Occupational Safety and Health (NIOSH), Pittsburgh Research Laboratory (PRL), in collaboration with the Mine Safety and Health Administration (MSHA), the mining industry, an
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RI 8142 - Three Coal Mine Ventilation Studies Using Sulfur Hexafluoride Tracer GasBy Robert P. Vinson, Fred N. Kissell
This report describes three coal mine ventilation studies by the Bureau of Mines in which sulfur hexafluoride (SFG) was used as a tracer gas. One of these studies was conducted to determine air moveme
Jan 1, 1976
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RI 7185 Recovery Of Sulfur From MolybdeniteBy F. P. Haver
The Bureau of Mines developed a process to extract about 90 percent of the sulfur from molybdenite flotation concentrate by compacting the concentrate with one-quarter of its weight of aluminum powder
Jan 1, 1968
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Effect of Oxidation on the Microstructure of Carbon BlacksBy Árpád B. Palotás, Adel F. Sarofim, John B. Vander Sande, Paolo Ciambelli, Lenore Rainey
"The evolution during oxidation of the internal structure of soot and carbon black particles was studied using high-resolution transmission electron microscopy (HRTEM) and an image analysis system. In
Jan 1, 1998
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IC 8007 Heavy Liquids And Procedures For Laboratory Separation Of Minerals ? Introduction And SummaryBy J. S. Browning
The physical properties and specific gravity ranges of various liquids and salt solutions used for laboratory sink-float separations of rocks or minerals are presented. The test equipment and techniqu
Jan 1, 1961
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RI 7134 Heavy Liquid Cyclone Concentration Of Minerals (In Two Parts) 2. A Study Of Liquid Cyclone Concentration Of Various Mineral SystemsBy R. B. Tippin
Research investigations conducted on five ore samples show the applicability of heavy liquid separation (HLS) techniques to mineral processing. Under proper operating conditions, semicontinuous tests
Jan 1, 1968
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RI 8063 Decomposition Reactions of Nitrogen Oxides in Direct Current Glow DischargesBy D. G. Kuehn
Studies were conducted by the Bureau of Mines to determine the positive ions and neutral species produced in glow discharges of gas streams containing 1.0 percent NO in helium, 29 percent dry air in h
Jan 1, 1975
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RI 7555 Sampling Gold Lode Deposits, Bluff, Seward Peninsula, Alaska - With Section On Petrography By Walter L. GnagyBy John J. Mulligan
The Bureau of Mines sampled a gold-bearing schist series 50 miles east of Nome near Bluff, a dormant mining camp on the southern shore of the Seward Peninsula, Alaska. Gold is unevenly distributed thr
Jan 1, 1971
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TPR 14 - Sorption Investigations of Methane on CoalBy Joseph Cervik, J. H. Perkins
The Bureau of Mines has conducted desorption work on fine coal particles at near atmospheric pressure. An apparatus has been developed that uses a capacitance manometer to measure desorption of methan
Aug 1, 1970
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RI 8359 - Drainage Of Methane From The Overlying Pocahontas No. 4 Coalbed From Workings In The Pocahontas No. 3 CoalbedBy Joseph Cervik, Gerald L. Finfinger
The Bureau of Mines conducted an experimental degasification project in Island Creek Coal Co.'s Virginia Pocahontas No. 5 mine. Methane from the over- lying Pocahontas No. 4 coalbed was entering
Jan 1, 1979
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MLA 59-85 - Mineral Resources Of The Worm Creek Roadless Study Area, Bear Lake County, Idaho ? SummaryBy Richard L. Rains
The 15,770-acre Worm Creek Roadless Study Area is in southeastern Idaho about 8 miles (mi) west of the northern portion of Bear Lake. U.S. Bureau of Mines personnel examined the roadless, area during
Jan 1, 1985