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Characterization Of Gas Flow In Longwall Gobs: Pittsburgh Coalbed, PaBy S. J. Schatzel, P. W. Jeran, W. P. Diamond, F. E. McCall, F. Garcia, J. C. LaScola, T. P. Mucho
The National Institute for Occupational Safety and Health, Office for Mine Safety and Health Research, is investigating the geologic and mining factors influencing the migration of longwall gob gas. O
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Mineral Industries Of Asia And The Pacific - IntroductionBy Edmond Chin
The area encompassed by the political entities included in this study com-prises 11 million square miles or about 15 percent of the total Earth's land area. The bulk of the region is contained on
Jan 1, 1992
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RI 8545 Modified-Sulfur Cements for Use in Concretes, Flexible Pavings, Coatings, and GroutsBy W. C. McBee
A family of modified-sulfur cements has been developed by the Bureau of Mines for the preparation of construction materials with improved properties. Various types of sulfur cements were prepared by r
Jan 1, 1981
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RI 6538 Washability Studies and Cleaning Trials on Coals From Pierce County, WashBy M. R. Geer
Three coals from the Wilkes on - Carbonado district of Pierce County , Washington , were subjected to washability analyses to estimate the amount and quality of washed coal obtainable . Because the co
Jan 1, 1964
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RI 4871 Separation And Utilization Studies Of Bitumens From Bituminous Sandstones Of The Vernal And Sunnyside, Utah, Deposits - Part I. & Part II.By G. B. Shea
In the search for possible future sources of petroleum products, the recovery and utilization of bitumens from the large outcropping deposits of bituminous sandstones in the United States have been un
Jan 1, 1952
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RI 6559 Effects of Retort-Immersion Depth on Gieseler Plasticity Determination on Western CoalsBy R. R. Allen
Gieseler plastometer tests were performed on eight western coking coals at retort - immersion depths ranging from 2 to 3-3 /4 inches (measured to the center of the coal charge ) . Increased maximum fl
Jan 1, 1964
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RI 9116 - Sampling, Characterization, and Evaluation of Midwest Clays for Iron Ore Pellet BondingBy L. A. Haas
The Bureau of Mines, in cooperation with three Minnesota agencies (Department of Natural Resources, Geological Survey, and the Iron Range Resources and Rehabilitation Board), investigated the potentia
Jan 1, 1987
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IC 7552 Drilling and Blasting, Open-Cut Iron-Ore Mines Lake Superior DistrictBy Roy G. Stott, John A. Johnson, Floyd G. Anderson
"This information circular discusses drilling and blasting in open-cut iron-ore mines and is one of a series of papers describing iron-ore mining practices in the Lake Superior district to aid in prev
Mar 1, 1950
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IC 8992 Use Of Steel Sets In Underground CoalBy J. H. Stears
This Bureau of Mines report presents information on the use of steel supports in U.S. coal mines, including accident statistics for a 3-yr period and a survey of present applications and problems. It
Jan 1, 1984
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RI 9011 - Corrosion Resistance of Selected Ceramic Materials to Sulfuric AcidBy James P. Bennett
The Bureau of Mines is investigating the acid resistance of ceramic materials to identify construction materials for emerging technology in chemical and metallurgical processes. Eight commercial ceram
Jan 1, 1986
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Part One - Assessment Of Electromagnetic Noise Data And Definition Of A New Measurement Program – IntroductionThe first phase of our work for PMSRC on this contract was devoted to a comprehensive and in-depth assessment of electromagnetic (EM) noise measurements and data taken by several contractors for use i
Jan 1, 1974
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Metal-Mine Accidents In The United States During The Calendar Year 1936 ? IntroductionBy W. W. Adams
This bulletin covers all mines in the United States that were operated in 1936 to produce metallic ores and all mines that were operated to produce nonmetallic minerals other than coal, stone, sand, g
Jan 1, 1939
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IC 8433 Injury Experience In The Metallic Mineral Industries, 1965By Forrest T. Moyer
The safety record of the metal mining and milling industries in 1965 is reviewed by the Bureau of Mines. The overall injury-frequency rate of 23.77 per million man-hours was 5 percent lower than in 19
Jan 1, 1969
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Trends In Iron Casting Compositions As Related To Ferrous Scrap Quality And Other Variables: 1981-86By R. H. Nafziger
Owing to the growth of alloy steel production and its influence on tramp element levels when recycled, foundries have expressed concern regarding the quality of scrap used to prepare iron castings. Re
Jan 1, 1990
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IC 8951 Bureau Of Mines Coal Cutting Technology Facilities At The Twin Cities Research CenterBy Wallace W. Roepke
Research on coal cutting at the Bureau of Mines Twin Cities Research Center (TCRC) has evolved from a purely mechanical approach, specifically to reduce dust or frictional methane ignitions, into an u
Jan 1, 1983
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Use Of Tungsten To Reduce Vibration Exposure In Aircraft Manufacturing - IntroductionBy Michael J. Jorgensen, Anoop Polsani, Khurram S. Khan
Riveting operations in aircraft manufacturing involves the use of power tools for manually drilling holes for the rivets, power drills for the setting of the holes for the rivets, as well as rivet gun
Jan 6, 2006
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OFR-89-92 Investigation Of Microbially Induced Permeability Loss During In-Situ LeachingBy Corale L. Brierley
Accumulations of microorganisms in the in-situ leaching environment are believed responsible for plugging of the orebody and thus decreasing uranium extraction. To assess the contribution of microbial
Jan 1, 1982
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RI 7917 Tracer Gas as an Aid in Mine Ventilation Analysis (af6c6e4b-6200-4583-b5eb-0a9f17acf37c)The Bureau of Mines has successfully used sulfur hexafluoride (SF6) as a tracer gas to measure mine air flows under conditions where conventional methods have failed. SF6 was employed experimentally t
Jan 1, 1974
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A Novel 3-D Hand-Arm Vibration Test System And Its Preliminary Evaluations - IntroductionBy Ren G. Dong, Richard McCormick, Dan E. Welcome
Vibration exposure at workplaces is generally multi-axial. The health effects of vibration exposure also likely depend on the vibration direction. Therefore, there is a wide interest in the simulation
Jan 6, 2006
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Appendix B - Program Listing Of Head Loss Calculation Using The Thermodynayic MethodBy R. V. Ramani, R. Stefanko, G. W. Luxbacher
C THRM 1 C CALCULATION OF MINE HEAD LOSSES FROM ALTIMETER SURVEY DATA TURN 2 C PENNSYLVANIA STATE UNIVERSITY - MINERAL ENGINEERING DEPARTMENT THRM 3 C THRM 4 C THRM 5 C THIS PROGRAM CALCULATES PR
Jan 1, 1977