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RI 8056 Using Oxygen To Reactivate a Nearly Dormant Copper Sulfide LeachBy B. W. Madsen
A nearly dormant copper sulfide pilot-scale experimental leach containing 8.7 tons of are was injected with oxygen to determine its effect on the copper-leaching rate. Prior treatment of the uncrushed
Jan 1, 1975
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IC 8736 Computer Graphics Demonstration-Area Coal Availability StudiesBy John R. Bitler
A computerized napping system was developed by the Bureau of Mines to provides procedures for the rapid and inexpensive display of coal reserve data. Mapping system output consists of two types of map
Jan 1, 1977
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RI 6247 Oxidation Of Coal Mine PyritesBy Walter C. Lorenz
Samples of materials containing pyrite from various coal mines and coalbeds were studied to compare their compositions and oxidizing characteristics. Pyrite was the only form of iron sulfide identifie
Jan 1, 1963
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Load Capacity And Stiffness Characteristics Of Screen Materials Used For Surface Control In Underground Coal MinesBy Dennis R. Dolinar
Screen material in the form of welded wire mesh and geogrids are used in underground coal mines to prevent the fall of small pieces of rock from the roof between roof bolts. Further, if the screen is
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RI 6138 The Effect Of Suspension In Bolting Bedded Mine RoofBy Louis A. Panek
Tests of mine-roof models in a centrifuge show that the suspension effect due to bolting a horizontally bedded mine roof with frictionless surfaces of contact between beds depends principally on the n
Jan 1, 1962
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A Rapid Method for Determination of Changes in Shape of Comminuted Particles Using a Laser DiffractometerBy T. F. Dumm, O. Trass, V. R. Koka, L. G. Austin
"The size distributions of carefully screened 2 size fractions of ground materials were determined using a Microtrac laser dif-fractometer. The size distributions were fitted to the empirical function
Jan 1, 1988
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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 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 7421 Prediction Of Coal Grindability From Exploration DataBy Manuel Gomez
A general prediction model for the Hardgrove grindability index was constructed from 735 coal samples using the proximate analysis, heating value, and sulfur content. The coals used to develop the gen
Jan 1, 1970
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OFR-6(3)-81 Mine Electrical Power Systems - Transients Protection, Reliability Investigation, And Safety Testing Of Mine Electrical Power Systems - Vol. III - Optimal Design Of Mine Electrical Power SystemsBy M. M. Hassan
This report describes the analysis tools developed at West Virginia University which can be implemented to optimally design coal mine electrical systems. The basic analytical tools for all power syst
Jan 1, 1979
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OFR-105-82 Diesel Exhaust Emissions From Engines For Use In Underground MinesBy B. H. Eccleston
Experimental data were obtained from two medium-duty diesel engines derated to qualify for use in underground mines. Gaseous and particulate emissions from these engines were measured and results prov
Jan 1, 1981
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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
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RI 6093 Physical Properties And Clay Mineral Contents Affecting Susceptibility Of Oil Sands To Water Damage, Powder River Basin, Wyo. ? Summary And ConclusionsBy Eliot J. White
The physical properties and clay mineral content of the major oil-producing formations in the Powder River Basin of Wyoming were determined by analyses of cores from 100 wells. Interrelationships were
Jan 1, 1962
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RI 8053 Electrolytic Preparation of Titanium and Zirconium Diborides From Their Oxides and Mineral ConcentratesBy J. M. Gomes
The Bureau of Mines investigated electrolytic techniques for preparing diborides of the group IV B metals. TiB2, ZrB2, and HfB2 were electro-deposited from their respective oxides dissolved in borate-
Jan 1, 1975
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One-Step Electrolytic Process Regenerates Chromic Acid Solutions - Problem DescriptionEtching solutions containing hexavalent chromium ions (e.g., chromic acid) are used in brass finishing, printed circuit board etching, preparation of plastic for plating, anodizing, and various other
Jan 1, 1980
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RI 9222 - Acid Sulfation of AluniteBy L. J. Froisland
The U.S. Bureau of Mines conducted laboratory studies on sulfuric acid (H2S04) digestion of alunite [KA13(S04)2(OH)6] as a means for treating domestic deposits of this mineral. Digesting alunite ore i
Jan 1, 1989
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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 5473 Using Radiant Heat To Reduce Filter-Cake Moisture In Coal Preparation ? SummaryBy T. M. Nasiatka
This report sterns from a study undertaken by the Federal Bureau of Mines to determine the possibility of reducing filter-cake moisture by applying radiant heat. Suitable laboratory equipment was set
Jan 1, 1959
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RI 8021 Structural Response of Propped Fractures in Green River Oil Shale as It Relates to Underground RetortingBy P. R. Tisot
The structural response of propped oil shale fractures was determined for each of two different grades of Green River oil shales (38.0 and 29.0 gpt) as they were heated in an inert atmosphere from amb
Jan 1, 1975
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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