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RI 4125 Inflammability of Dimethyl Ether-Dichlorodifluoromethane-Air MixturesBy G. W. Jones, F. E. Scott
"INTRODUCTION During the last war, considerable attention was given to the search for materials or combinations of materials for use as expelling agents for aerosols in the well-known ""aerosol bomb."
Sep 1, 1947
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RI 4542 Investigation Of Oat Hill Mercury Mine Napa County, Calif.By Fremont T. Johnson
Credited with production of more than 164,000 flasks Of quicksilver from 1876 to 1944, the Oat Hill mine has ranked third in output in the United States. During World War II, when the demand for merc
Jan 1, 1949
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IC 9499 - Guidelines For The Development Of A New Miner Training CurriculumBy Launa G. Mallett, Charles Vaught
This report is intended to help mine safety trainers better prepare to teach the influx of new underground coal miners who are entering the industry. This is done by identifying two different approach
Jan 1, 2008
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RI 3855 Explor. of Hog Creek Corundum Mine - Towns Co., GABy T. J. Ballard
"The Hog Creek mine, in lot 92 of the 17th district in Towns County, Georgia, was examined in 1890 by F. P. King, who reported the existence there of a 4-foot vein of corundum. The mine is about 2 mil
Mar 1, 1946
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IC 8999 Video-Supplemented Task Training At The United States Steel Corp. Minntac Mine, Mt. Iron, MNBy D. T. Couillard
Video technology is becoming an important tool for many designers of industrial training programs. This report describes how trainers at the Minntac Mine, Mt. Iron, MN, have developed videocassettes o
Jan 1, 1985
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RI 3045 Concentration Tests On The Manganiferous Iron Ores Of The Cuyuna District, MinnesotaBy F. D. DeVaney
[In the course of the investigation by the U. S. Bureau of Mines and the Missouri School of Mines and Metallurgy at the Mississippi Valley experiment Station at Rolla, Mo., on the beneficiation of the
Jan 1, 1930
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RI 8338 Stress-Induced Failures in Mine RoofBy James R. Aggson
This Bureau of Mines report presents a finite element analysis of roof stresses associated with a 4-foot-high by 18-foot-wide underground coal mine entry. This analysis starts with known loading condi
Jan 1, 1979
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RI 2224 State Regulations on Accident Prevention Covering Electric Circuits in Coal MinesBy L. C. IlsLey, R. A. Kearns
As the use of electricity becomes more and more general in mining opera- tions, interest in regulations governing its application becomes greater. During the past year the electrical section of the Bu
Mar 1, 1921
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RI 4213 Ione-Carbondale Clays, Amador Co., Calif.By Spangler Ricker, F. T. Johnson
"SUMMARYThe Ione-Carbondale clays area is 2 miles northwesterly of Ione, Amador County, Calif. It was explored during the war by the Bureau of Mines to obtain data on the alumina content and to recove
Mar 1, 1948
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IC 7196 Crude Oil And Gasoline Pipe Lines In The United States, May 1, 1941 ? Total MileageBy G. R. Hopkins
Crude-petroleum pipe lines in the United States on May 1, 1941, had a total length of 118,350 miles - an increase of 7,770 miles since Jun, 30, 1936, then the last previous survey was made by the Bure
Jan 1, 1941
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RI 5280 An Investigation Of Some Variables In The Treatment Of Scheelite With Soda Ash - SummaryBy F. W. Wessel
This report summarizes Bureau of Mines laboratory tests of four tungsten¬-bearing materials of various grades, The test work has demonstrated that the dry reaction between sodium carbonate and scheeli
Jan 1, 1956
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RI 3315 Washability Studies of Coal From Henry Ellen Bed at Acmar No. 5 Mine Acmar, ALA.By B. W. Gandrud, G. D. Coe
"INTRODUCTION The Southern Experiment Station of the U.S. Bureau of Mines, cooperating with the University of Alabama and Alabama coal producers, has made a series of investigations of the washability
Nov 1, 1936
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RI 5660 Removing Hydrogen Sulfide By Hot Potassium Carbonate Absorption ? Introduction And SummaryBy J. H. Field
Results of studies by the Federal Bureau of Mines on a pilot-plant scale for removing hydrogen sulfide and carbonyl sulfide from gas mixtures by the hot carbonate system are given in this publication.
Jan 1, 1960
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RI 9482 - Calculation of Promotion Energies and Atomic Sizes for Atoms With Two Valence "S" Electrons: Supplement to Engel-Brewer Theory for Alloy DesignBy Jack R. Woodyard
Bonding angles, promotion energies, and relative atomic sizes can be estimated through the solution of a set of algebraic equations generated from simple atomic models, and quantum mechanical paramete
Jan 1, 2010
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Distribution of Sulfur and Ash in Ultrafine CoalBy R. Hogg, T. F. Dumm
"A procedure for evaluating the size/specific gravity distribution of ultrafine coal and the distributions of sulfur and ash with respect to particle size and specific gravity is described. The proced
Jan 1, 1989
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RI 4163 Electrowinning of Manganese from Domestic OresBy J. H. Jacobs
The first authorization, in November 1940, was for a plant of only several hundred pounds capacity at Boulder City, Nev. Improvements in the process and subsequent additions to some sections have enab
Dec 1, 1947
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RI 6623 Amenability Of Coals From The Roslyn-Cle Elum (Washington) Field To The Production Of High-Ash Boiler FuelBy M. R. Geer
Samples of coal from six beds in the Roslyn-Cle Elum field of Washington were subjected to float-and-sink tests to determine their amenability to the production of high-ash boiler fuel for on-site pow
Jan 1, 1965
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RI 4784 Investigation Of The Norwich Manganese Deposit, Silver Bow County, Mont.By John W. Cole
The Butte district has been the principal producer of metallurgical-grade manganese in the United States since World War I. Manganese dioxide nodules are produced from rhodochrosite ore by concentrati
Jan 1, 1951
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Dust Underfoot - Enclosed Cab-Floor Heaters Can Significantly Increase Operator’s Respirable Dust ExposureBy Andrew Cecala, John Organiscak, William Heitbrink
Many types of heavy equipment used in the mining and construction industries use enclosed cabs to protect equipment operators from dust and noise exposure. Normally, when the equip- [ ] ment is new,
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RI 4755 Phenol And Cresols In Coal Tar From Coals Carbonized At 800° And 900° C.By Erik Bengtsson
Phenol was discovered in coal tar by Runge (1)1/ in 1834 and was isolated (2) in 1841 as pure phenol by distilling the tar, extracting with caustic soda, acidifying the extract, and fractionating the
Jan 1, 1950