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IC 7812 Thickness Of Bituminous-Coal And Lignite Seams At All Mines And Thickness Of Overburden At Strip Mines In The United States In 1955 ? SummaryBy W. H. Young
The thickness of the coal seam is one of the more important items influencing the productivity and general overall efficiency of operation 1 of a coal mine. The average thickness of coal seams mined i
Jan 1, 1957
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Convergence Measurements For Squeeze Monitoring: Instrumentation And ResultsBy Eric R. Bauer
The magnitude and rate of advance of an inmine coal squeeze was deter-mined by measuring roof-to-floor convergence on a regular basis. A dial-gage tube extensometer was used to collect data. Using the
Jan 1, 1981
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OFR-69-86 Development Of A Water Jet Assisted Cutterhead For Coal Measure RocksBy Levent Ozdemir
The results of a laboratory research program aimed at the development of a water jet assisted drag bit cutting system for coal mine applications are presented. Two types of drag bits, a conical and a
Jan 1, 1986
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RI 6615 Carbonizing Properties Of Coals From Wyoming And Mercer Counties, W. Va.By G. W. Birge
Fifteen coal samples, representing the Winifrede, Chilton, Alma, No. 2 Gas, Powellton, Eagle, Douglas, Sewell, Beckley, Pocahontas No.4, and Pocahontas No.3 beds in Wyoming County, and five samples, r
Jan 1, 1965
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RI 3352 A Method Of Determining Porosity: A List Of Porosities Of Oil Sands ? Introduction (01aa873d-2b30-4272-b0ce-d9b7f0bc3235)By D. B. Taliaferro
Information regarding the pores or voids in reservoir rocks is vitally important in the scientific extraction of petroleum from natural underground reservoirs, and petroleum technologists concerned, w
Jan 1, 1937
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RI 3352 A Method Of Determining Porosity: A List Of Porosities Of Oil Sands ? IntroductionBy D. B. Taliaferro
Information regarding the pores or voids in reservoir rocks is vitally important in the scientific extraction of petroleum from natural underground reservoirs, and petroleum technologists concerned. w
Jan 1, 1937
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RI 5874 Disposal Of Liquid Waste In The Durango-Type Uranium Milling Flowsheet ? SummaryBy K. E. Tame
The Bureau of Mines is studying possible modifications in conventional uranium ore-processing steps to confine and permit controlled disposal of radioactive wastes. Surveys of Ra226 contamination
Jan 1, 1961
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RI 8573 Modification of a Commercial Atomic Absorption Spectrophotometer for Cold-Vapor Determination of MercuryBy Joseph A. Perry
One goal of the Bureau of Mines is to develop technology tp insure a dependable supply of minerals to the United States. To support this goal, the Bureau's Albany Research Center has modified a c
Jan 1, 1981
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RI 5348 Roof-Span Studies In Limestone ? SummaryBy Robert H. Merrill
This report summarizes the first phase of studies to determine the design and behavior of an unsupported roof in an experimental room in limestone. The selection of a roof horizon and the design of th
Jan 1, 1957
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RI 6717 Evaluation Of A Formcoke For Blast Furnace UseBy P. L. Woolf
An investigation was conducted to evaluate the use of a formcoke as the total fuel in the Bureau of Mines experimental blast furnace. The formcoke performed very satisfactorily, and comparisons made w
Jan 1, 1966
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RI 3071 Coal Mine Fatalities In November 1930 (1d140148-bf6f-459b-b29a-adc4b9d1e54c)By W. W. Adams
Reports received by the Bureau of Mines, Department of Commerce, from State mine inspectors, for November, 1930, showed that 219 men were killed in the coal mines of the United States during the month
Jan 1, 1930
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RI 4312 Investigation Of Simon & Coles Manganese Deposit Bedford County, Pa.By W. H. Kerns
The Simon & Coles manganese deposit in Sherman Valley, Bedford County, Pa., was investigated by the Bureau of Mines during the fall of 1942. Two churn-drill holes; 65 and 75 feet deep were bored, and
Jan 1, 1948
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RI 6432 Observations in the Development of Titanium Refining CellsBy Oliver Q. Leone
Three electrorefining cells were designed to investigate various factors associated with the electrorefining of reject - grade titanium sponge . Operation of the cells provided information on cell des
Jan 1, 1964
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RI 9517 - Effect Of Dead-End Crosscuts On Contaminant Travel Times In Mine EntriesBy G. F. Friel
A series of experiments in the U.S. Bureau of Mines Safety Research Coal Mine at the Pittsburgh Research Center evaluated the effects of crosscuts on the travel time of carbon monoxide (CO) along an e
Jan 1, 2010
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RI 8014 Airborne Respirable Dust Generated During Cutting of Coal With Water JetsBy Peter D. Lohn
The Bureau of Mines conducted both laboratory and field investigations to study the effectiveness of medium-pressure (up to 30,000 psi) water jets in controlling the generation of airborne respirable
Jan 1, 1975
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IC 7604 Analysis Of Haulage Fatalities In Bituminous-Coal Mines In 1950 - Part 1. - Occurrence Of Accidents ? IntroductionBy M. J. Ankeny
Coal-mine haulage ranks second as a cause of coal-mine fatalities, and the prevention of such accidents will materially improve progress in safety in the coal-mining industry. Beginning March 1950, Fe
Jan 1, 1951
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RI 5917 Recovery Of Thorium From A Wyoming Ore ? Summary And IntroductionBy S. R. Borrowman
Physical beneficiation, leaching, and solvent extraction investigations were made to recover a high-grade thorium oxide product from Bald Mountain, Wyo., conglomerate. The monazite in the Bald Mountai
Jan 1, 1962
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IC 6421 Method And Cost Of Dredging Sand And Gravel By The Ohio River Sand Co., Louisville, Ky. ? IntroductionBy J. Hamilton Duffy
This is the first of, a series of papers describing dredging methods and costs in recovering sand and gravel from the beds of rivers throughout the United States and deals directly with the methods em
Jan 1, 1931
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RI 5442 Acid-Ferrous Sulfate Leaching Of Low-Grade Manganese Carbonate And Oxide Ores, Cuyuna Range, Minnesota - SummaryBy H. Dolezal
A laboratory study of acid-ferrous sulfate treatment of low-grade manganese ores from the Cuyuna range, Minnesota resulted in 93-percent extraction of manganese as manganese sulfate with consumption o
Jan 1, 1959
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RI 5841 Pilot Plant Development Of The Hot-Gas-Recycle Process For The Synthesis Of High-B.T.U. Gas ? SummaryBy D. Bienstock
A high-B.t.u, gas can be synthesized by the catalytic methanation of a mixture of 2.5 to 3 parts of hydrogen to 1 part of carbon monoxide, obtained in the gasification of coal, using a steel catalyst
Jan 1, 1961