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Predicting methane emissions from longer longwall faces by analysis of emission contributorsBy R. B. Krog
As part of its mining health and safety research program, the National Institute for Occupational Safety and Health (NIOSH) conducted a longwall methane emission and mining time study at a mine operat
Jan 1, 2006
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RI 7229 Effect Of Varied Extrusion Temperature On The Properties Of A Zinc-Copper-Titanium AlloyBy L. A. Neumeier
The Bureau of Mines evaluated the properties of a Zn-0.75 pct Cu-0.12 pct Ti alloy extruded at temperatures between 400° and 720° F. The extrusions were made with a reduction ratio of 28-to-l and at r
Jan 1, 1969
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RI 3627 Progress Report - Metallurgical Division 51. Cinnabar-Reduction Plants of the Southwestern Arkansas Quicksilver DistrictBy S. M. Shelton, W. A. Calhoun
"INTRODUCTION Discovery and development of a southwestern Arkansas quicksilver district are recent history. In July 1930 4/, a specimen was discovered near the Little Missouri River in sec. 1, T. 7S.
Mar 1, 1942
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RI 3772 Thermal Expansion of Pressure Samples of Hydrocarbon Liquids from Gas-Condensate WellsBy M. A. Schellhardt, E. J. Dewees, R. Vincent Smith
"INTRODUCTION Abnormal material requirements of the nation at war impose an intensive demand upon many irreplaceable natural resources. Natural-3as reserves) for example, are being subjected at the pr
Oct 1, 1944
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Remotely Installed Mine Seals for Mine Fire ControlBy Alex C. Smith, Thomas A. Gray, Lynn M. Crayne, Michael A. Trevits, Phil Glogowski
Mine fires constitute one of the greatest threats to the health and safety of those working in the underground environment and each event has the potential for disastrous consequences. Of the major m
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RI 7438 Phase Relations In The Alkaline Earth Fluoride-Yttria Systems (In Three Parts) 2. The BaF2-Y203 Phase DiagramBy Laurance L. Oden
The Bureau of Mines is developing melting data for binary combinations of the alkaline earth fluorides and yttria to facilitate the formulation of slag composition. Liquidus and solidus temperatures a
Jan 1, 1970
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RI 9675 - Self-Contained Self-Rescuer Long Term Field Evaluation: Tenth Phase ResultsThe National Personal Protective Technology Laboratory (NPPTL) of the National Institute for Occupational Safety and Health (NIOSH) has undertaken a collaborative study with the Mine Safety and Health
Jan 6, 2008
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RI 8394 Cristobalite in Fire Clay CalcinesBy C. B. Davison
One goal of the Bureau of Mines is to conserve the Nation's mineral resources by developing improved performance materials. Consistent with this goal, the Bureau conducted studies on the formatio
Jan 1, 1979
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Mine Aerosol Measurement - IntroductionBy Bruce K. Cantrell, Jon C. Volkwein
Exposure to mineral aerosol is an occupational health hazard in mining and mineral processing industries because of the risk of developing pneumoconiosis. Agricola (1556) described this hazard for met
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RI 6843 Presplitting Rock In The Presence Of A Static Stress FieldBy Harry R. Nicholls
Preliminary tests on presplitting rock in the presence of an in situ static stress field were undertaken to study the influence of a horizontal static stress field on the creation of a vertical prespl
Jan 1, 1966
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RI 5166 Estimate Of Known Recoverable Reserves Of Coking Coal In Clearfield County, Pa. ? ConclusionsBy D. W. Blaylock
1. The Lower Freeport and Lower Kittanning beds are the most important beds in Clearfield County, Pa., from the standpoint of production. The Lower Kittanning bed has the largest remaining recoverable
Jan 1, 1955
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RI 4464 Sheath Working Of Metal PowdersBy J. R. Long
The investigations described herein are concerned with a portion of a systematic research, by the Federal Bureau of Mines on ductile titanium. The Bureau's work on the metal has resulted in devel
Jan 1, 1949
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OFR-165-77 Evaluation Of Experimental And Developmental Communication Systems Used In Underground Coal Mines - Performance Of Trapped-Miner Communication SystemBy P. L. Michael
Several evaluations were made by Modified Rhyme Test (MRT) word lists transmitted through various simulations of the Trapped-Miner Communication System being developed by the U.S. Bureau of Mines. The
Jan 1, 1977
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RI 8147 Steel From Urban WasteBy Willard L. Hunter
A series of steel heats, one low-alloy and nine carbon, was made by the Bureau of Mines in a 1-ton arc furnace from ferrous scrap from incinerated refuse, steel cans, and detinned steel cans, both alo
Jan 1, 1976
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IC 8350 Description Of A High Pressure High Accuracy Burnett Compressibility ApparatusBy John E. Miller
A high accuracy Burnett apparatus for use at 12,000 psi and 0° to 65° C has been constructed at the Bureau of Mines Helium Research Center. The apparatus is patterned after Burnett's original app
Jan 1, 1967
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OFR-31-86 Conveyor Belt Dust ControlBy Vinit Mody
The belt conveyor is one of the major pieces of equipment for transferring bulk material in mining operations. However, considerable amount of respirable dust may be generated whenever the bulk materi
Jan 1, 1984
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IC 6865 Electric Cap Lamps In Alabama Mines, 1935 ? IntroductionBy Frank E. Cash
As a part of its safety program the United States Bureau of Mines has fostered the development, use, and improvement of portable electric mine lamps. Although there is still need for better illuminati
Jan 1, 1935
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RI 9005 - Microwave Drying of Fine CoalBy David P. Lindroth
The objective of this research by the Bureau of Mines was to determine the technical feasibility and associated pilot data for drying minus 1/4-in coal with microwave energy at a frequency of 2.45 GHz
Jan 1, 1986
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IC 8537 Strippable Lignite Reserves Of North Dakota - Location, Tonnage, And Characteristics Of Lignite And OverburdenBy Benjamin C. Pollard
The location and production potential of a large block of strippable reserves in North Dakota were determined by using published data as a base and adding new drill hole data or other data contributed
Jan 1, 1972
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RI 6395 Comparative Studies of Explosives in LimestoneBy Thomas C. Atchison, Joseph M. Pugliese
Six explosives were compared by measuring their strain- producing abilities in limestone . Peak strain , e , varied with scaled distance , R/Ro , according to the following equation : € = Kc (R /R 。)-
Jan 1, 1964