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RI 5068 Estimate Of Known Recoverable Reserves Of Coking Coal In Mingo County, W. Va. ? ConclusionsBy Joseph J. Wallace
The 1952 Annual Report of the West Virginia Department of Mines lists seven beds that are being mined in Mingo County, of which the Cedar Grove is the most important. The Cedar Grove, Alma, and Coalbu
Jan 1, 1954
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Mining Facts ? 2005 ? Mining OperationsIn 2005, 14,666 mining operations reported employment statistics to the Mine Safety and Health Administration (MSHA).1 Almost half (48.5%) were sand and gravel mines, followed by stone mines (30.6%),
Jan 1, 2008
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IC 8792 Three Potential Longwall Mining Methods For Thick Coal Seams In The Western United StatesBy Richard H. Otto
Three longwall mining methods practiced in foreign countries are described that have potential for increasing underground recovery and productivity in thick coalbeds of the Western United States. The
Jan 1, 1979
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RI 5565 High-Temperature Heat Contents And Entropies Of Aluminates And Ferrites Of Lithium And Sodium, And Of Lithium Titanate - Introduction And SummaryBy A. U. Christensen
THERMODYNAMIC data for many of the common interoxidic compounds are seriously lacking, and appraisal of possible ceramic or metallurgical applications depends upon dubious estimates. In particular, hi
Jan 1, 1960
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IC 6524 Utilization of Dolomite and High-Magnesium LimestonBy Paul Hatmaker
This paper covers briefly the particular field of dolomite and magnesium limestone; certain uses of high-calcium limestone are mentioned only to show more clearly the limita¬ tions of the magnesian ro
Sep 1, 1931
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RI 9389 - Rayleigh Wave Assessment of Damage and Integrity of Mine StructuresBy Michael J. Friedel
The integrity of mine structures, such as the roofs, ribs, face and supporting pillars, is difficult to assess beyond the exposed surface. To mitigate potential rockfall hazards, the U.S. Bureau of Mi
Jan 1, 2010
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RI 4330 Concentration of Oxide Manganese Ores from the Aguila District, ArizonaBy D. T. Holmes, W. G. Sandell
"INTRODUCTION Three representative lots of ore wore obtained from the Aguila minim district in Arizona during the Bureau's exploration of manganese deposits there. Since only selectively mined ore fro
Aug 1, 1948
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RI 9416 - Influence Of Electrode Material On Spark Ignition Probability (450608c8-d644-422e-9fbc-5a903cc93f17)By 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, 2010
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RI 4828 Investigation Of Kasna Creek Copper Prospect, Lake Kontrashibuna, Lake Clark Region, AlaskaBy R. S. Warfield
The Kasna Creek copper deposit near Lake Kontrashibuna in the Lake Clark region, Alaska, was the object of an investigative project by the Bureau of Mines during the fall of 1948. Recessed because of
Jan 1, 1951
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OFR-25-78 Study And Analysis Of Surface Subsidence Over The Mined Pittsburgh CoalbedBy R. E. Gray
[The purpose of the study is to investigate cases of subsidence over abandoned mined-out areas of the Pittsburgh Coal identified from published and unpublished sources and to determine through a consi
Jan 1, 1977
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RI 4370 Concentration Of Fluorite From Tailings And Mine Waste Rock In Crittenden And Livingston Counties, Ky.By M. M. Fine
The flotation work on samples from nine fluorspar properties in Crittenden and Livingston Counties, Ky., reported herewith was part of a wartime project that resulted in increasing the supply of metal
Jan 1, 1948
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RI 3943 Exploration for Fluorite Crittenden & Livingston Co., KYBy Robert C. Hickman, Xavier B. Starnes
"The general location of the Kentucky, Fluorspar District and the Moore Hill fault area are shown in figure 1. An engineer3/ the Bureau of Mines visited the district in July 1942 and reported on the M
Sep 1, 1946
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IC 9045 Water-Jet-Assisted Cutting - Proceedings: Bureau Of Mines Open Industry Meeting, Pittsburgh, PA, June 21, 1984Greater mining productivity requires a more efficient cutting process. The cutting force available from today?s mining machines has been optimized with respect to machine size and weight. Researchers
Jan 1, 1985
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RI 3519 Underground Transportation Of Coal - Progress Report 1By Albert L. Toenges, Frank A. Jones
"INTRODUCTION The introduction of mechanized pining in coal mines, which has speeded loading, has emphasized the importance of efficient underground transportation systems. The purpose of this invest
Jun 1, 1940
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RI 4368 Investigation Of Chromite Deposits Of The Stillwater Complex, Stillwater And Sweetgrass Counties, Mont.By N. L. Wimmler
The chromite deposits along the Stillwater complex in Stillwater and Sweetgrass Counties, Mont., have at various times been studied and reported on by the Federal Geological Survey, the Montana Bureau
Jan 1, 1948
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IC 7602 Mines And Mineral Deposits (Except Fuels) Judith Basin County, Mont.By Almon F. Robertson
This is one of a series of reports describing investigations made within the Missouri River Basin in Montana by mining engineers of the Bureau of Mines, Minerals Division, Region II. The primary purpo
Jan 1, 1951
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Metal Operator Mining Facts - 2005 - Mining OperationsIn 2005, a total of 263 metal mining operations reported employment to the Mine Safety and Health Administration (MSHA). Metal mines were the smallest mining commodity sector, comprising 1.8% of all
Jan 1, 2008
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RI 9269 - Noise Test Report: Handheld Pneumatic Rotary DrillBy Robert R. Stein
Using an automated drill test fooure, the U.S. Bureau of Mines measured the sound power levels produced by a small, pneumatic, rotary roof drill. A series of tests was conducted to determine (1) the r
Jan 1, 1989
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RI 3224 Classification And Tabling Of Alabama Red Iron OresBy B. W. Gandrud
In 1927 Coghill showed that there is considerable liberation of the iron oxide mineral from gangue when the Alabama red iron ores are ground to a size suitable for classification and tabling but that
Jan 1, 1934
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RI 8967 - Recovery of Lithium From a Montmorillonite-Type ClayBy R. H. Lien
The Bureau of Mines investigated a roast-leach process for recovering a marketable lithium product from a montmorillonite-type clay deposit located on the Nevada-Oregon border. The clay sample treated
Jan 1, 1985