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Sand and Gravel Mining Facts - 20011. In 2001, a total of 7,131 sand and gravel mining operations reported employment statistics to the Mine Safety and Health Administration (MSHA). Sand and gravel mines comprised 48.8% of all mining
Jul 1, 2003
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Ground Wire Monitors For Surface Coal M'inesBy W. L. Cooley, K. Y. Lee, M. M. Hassan
Because power system topographies for surface coal mines are significantly different from those for underground coal mines, the requirements for ground wire monitors for surface systems are somewhat d
Jan 1, 1979
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RI 6808 Oxidization Leaching Of Copper Sulfides In Ammoniacal Pulps At Elevated Temperatures And PressuresBy Martin H. Stanezyk
The Bureau of Mines investigated leaching of selected copper sulfide minerals and a composite of impure flotation concentrates at elevated temperatures and pressures with ammoniacal solutions. Copper
Jan 1, 1966
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Mining Facts – 20031. In 2003, 14,391 mining operations reported employment statistics to the Mine Safety and Health Administration (MSHA). Almost half (49%) were sand and gravel mines, followed by stone mines (30%), co
Feb 1, 2005
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Sand & Gravel Operator Mining Facts - 20021. In 2002, a total of 7,125 sand and gravel mining operations reported employment to the Mine Safety and Health Administration (MSHA). The largest percentage of all mining sectors1 was sand and grav
Jan 1, 2004
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IC 6502 TopazBy I. AITKENS
It is a common misconception that all yellow stones are topazes and that all topazes are yellow; but neither statement is true. The real topaz is a rather rare mineral, and a large number of yellow st
Sep 1, 1931
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ConclusionsIn laboratory tests using reconstructed soil columns, rubber latex showed good sealing efficiency when applied at a rate equivalent to 4000-5000 pounds per acre. Results of field testing, however, wer
Jan 1, 1972
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RI 8951 - Electrochemical Conditioning of a Mineral Particle Bed Electrode for FlotationBy J. E. Gebhardt
External control of the electrochemical potential of a bed of mineral particles has been investigated by the Bureau of Mines as a method for controlling particle inter-action with organic collectors a
Jan 1, 1985
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RI 9560 - In Situ Stress at the Lucky Friday Mine (In Four Parts)By M. K. Larson, J. K. Whyatt, F. M. Jenkins
The U.S. Bureau of Mines conducted an overcore stress measurement on the 5300 level of the Lucky Friday Mine, Mullan, ID, to investigate the stress regime around an experimental stope in a rock-burst-
Jan 1, 1995
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RI 8732 Influence of Selected Additives and CaO:SiO2 Ratio on High-Temperature Strength of MgO RefractoriesBy Nancy S. Raymon
The Bureau of Mines investigated the effect of controlled additions of selected metal oxides, as well as the adjustment of the calcia-to-silica ratio on the high-temperature strength of refractory-gra
Jan 1, 1982
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Leadership Characteristics In Escape From Three Underground Mine FiresBy Launa G. Mallett, Kathleen M. Kowalski, Michael J. Brnich
The characteristics of leaders under the duress of an emergency are important in the development of emergency planning, training, and in the management of an actual emergency. Knowledge of human behav
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Technology News - No. 490 - An Inexpensive Device for Monitoring Explosions in Sealed Areas of Underground MinesObjective To develop a passive, inexpensive technique for monitoring explosion overpressures within sealed areas in underground coalmines. Background From 1994 to 2000, seven explosions of me
Jun 1, 2001
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Development of Acoustic Seal Checking SystemBy David A. Monaghan, Kenneth R. Maser, Adi R. Gurdar, D. Randolph Berry
7. Development of Acoustic Seal Checking System The acoustic approach was shown in Section 4 of this report to be the most promising concept for checking the seals. This section describes the devel
Jan 1, 1973
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Appendix E - Refuge Chamber Leakage AnalysisBy David Hoadley, Kenneth R. Maser, Ashok B. Boghani, James E. Billar, D. Randolph Berry, Mackenzie Burnett, Robert H. Trent
APPENDIX E REFUGE CHAMBER LEAKAGE ANALYSIS Variables p 0 = pressure outside of chamber (psi) p = pressure inside of chamber (psi) i q = leakage flow rate (cfm) Q= total leakage (cu ft. ) V
Jan 1, 1976
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IC 6481 Organization Plan of the Holmes Safety AssociationBy M. J. Ankeny, J. J. Forbes
The United States Bureau of Mines often receives inquiries from the mineral , petroleum , and allied industries concerning the essential steps to be taken in the formation of Holmes Safety chapters an
Jul 1, 1931
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IC 9366 Update On Ventilation For Longwall Mine Dust ControlBy Robert A. Jankowski
The U.S. Bureau of Mines, in cooperation with the Mine Safety and Health Administration (MSHA) and the mining industry, has identified and demonstrated the effectiveness of several improved face venti
Jan 1, 1993
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Micro-orifice Uniform Deposit ImpactorBy H. J. Fissan, G. Ananth, K. Rubow, V. Marple
"INTRODUCTION Over the past several years a new type of cascade impactor that utilizes small nozzle diameters (micro-orifice nozzles) has been under development (Kuhlmey et al., 1981; Marple et al., 1
Mar 1, 1989
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Summary Of Field Measurements Of Roof Bolt PerformanceBy Thomas P. Mucho, Dennis Dolinar, Christopher Mark
During the 1990s, the former U.S. Bureau of Mines conducted a number of field studies in which the performance of different types of roof bolts were evaluated in different geologic environments. The
Jan 10, 2000
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RI 9317 - Evaluation of Field-Applied Lubricants to Increase Wire Rope LifeBy Jack E. Fraley
Poor lubrication reduces the life of wire hoist ropes when they are used in corrosive environments. Although lubricants are added to ropes during the manufacturing process, these lubricants can deteri
Jan 1, 1990