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Massive Sulfide Deposits, Southern Juan De Fuca RidgeBy Willam R. Normark
During a series of dives with the submersible ALVIN in 1984, samples of massive sulfide were recovered from four vent sites. All sites occur within a linear, steep-walled cleft about 50 m wide and as
Jan 1, 1985
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The Influence Of Alkalis On The Boudouard ReactionBy H. B. Arntzen, P. O. Grøntvedt, T. Lindstad, R. J. Ishak, M. Syvertsen
Better utilisation of electric power and coke is vital in reducing production costs and CO2-emissions in production of ferromanganese. All FeMn smelting operations consume 10 to 30 % more carbon than
Jan 1, 2004
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Applied Geology: The Foundation For Mine Design At Exxon Minerals Company's Crandon DepositBy R. G. Hite, R. G. Rowe
The Crandon deposit, located in northern Wisconsin, is a 65.8 million ton Precambrian volcanogenic massive sulfide deposit which averages 1.4% copper and 5.8% zinc. The deposit is classic in origin, m
Jan 1, 1992
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Application and Effectiveness Measurement of Ground Consolidation Products in Longwall MiningBy Richard Campbell, MEHMET KIZIL, Ismet Canbulat, Serkan Saydam
The design and effectiveness of ground consolidation to regain stability of longwall faces vary widely and are often based predominantly on-site precedence or what were considered successful applicat
Jun 25, 2024
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Applied Geology: The Foundation For Mine Design At Exxon Minerals Company's Crandon DepositBy R. G. Hite, R. G. Rowe
The Crandon deposit, located in northern Wisconsin, is a 65.8 million ton Precambrian volcanogenic massive sulfide deposit which averages 1.4% copper and 5.8% zinc. The deposit is classic in origin, m
Jan 1, 1984
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Design, Construction and Initial Operation of the Tailings System at Brenda Mines Ltd.By H. Tetu, F. Pells
"The copper-molybdenum property of Brenda Mines Limited is located in the Okanagan district of British Columbia, approximately 25 miles west of Kelowna. The Okanagan Valley is a resort and fruit-growi
Jan 1, 1971
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Concommitant Backstowing: What Is Its Potential For Alleviating Concerns Associated With High-Production Longwall Mining?By M. J. Sanzotti
This paper examines the potential for controlling longwall-induced subsidence by pneumatically backstowing the void created by mining with waste rock, and having the process scheduled as a unit operat
Jan 1, 1995
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RI 9176 - Comparative Study of Pillar Load Transfer Associated With Multiple-Seam MiningBy R. J. Matetic
The Bureau of Mines, as part of a program to improve mine planning and development, is currently investigating the effects of pillar load transfer, which can impact mining operations within a multiple
Jan 1, 1988
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Estimating Secondary Mining Potential Of Inactive And Abandoned Appalachian HighwallsBy D. E. Hinkle
Past surface-mining operations in Appalachia primarily followed mountain con-tours. It is estimated that about 18,000 mi. of highwalls are exposed throughout Appalachia. An evaluation procedure for de
Jan 1, 1989
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Innovative Strategies For Mine Fire Preparedness ? IntroductionBy Michael J. Brnich
During the past 15 years the number of reportable mine fires has declined. A decline in the number of reportable fires is a gross indicator that allows experts to say something about the underground c
Jan 1, 2006
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Particle Size Analysis – Optimising Returns in Iron OreBy B Stump
Reliable particle size analysis in minerals processing plants is a critical factor to the economic return of a plant. As recovery of valuable minerals is compromised for particles outside the optimal
Jul 11, 2011
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Applied Geology: The Foundation For Mine Design At Exxon Minerals Company?s Crandon DepositBy Roger G. Rowe
The Crandon deposit, located in northern Wisconsin, is a 65.8 million ton Precambrian volcanogenic massive sulfide deposit which averages 1.4% copper and 5.8% zinc. The deposit is classic in origin, m
Jan 1, 1983
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Discontinuity Analysis in Open Cut Exposures - Examples from Selected Central Victorian SitesBy Fowler T. J
Examples are provided of discontinuity analysis at selected sites in central Victoria. Discontinuities are rock fractures of low tensile strength, including bedding, foliations and joints, which are
Jan 1, 1997
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Exploratory Shafts For The Nuclear Waste Repository In BasaltBy Birger Schmidt
INTRODUCTION Conceptual design of the first Exploratory Shaft (ES-I) for the Nuclear Waste Repository in Basalt (NWRB) began in July 1981; detailed design began in February 1982, and was largely co
Jan 1, 1987
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Land Use Change In Mt. Penteli Marble QuarriesBy Elias Apostolidis
Since 500 B.C. Mt. Penteli has been famous as white marble production site, which provided the birthstones for the construction of Athens Acropolis and Parthenon. The Aloula quarry belongs to ?Diony
Jan 1, 2002
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Bureau Of Mines Research On Vibrations From Underground BlastingBy James J. Snodgrass, David E. Siskind
The Bureau of Mines investigated the effects of vibrations from underground blasting in four rock types to define blast parameters that affect vibration amplitudes and to establish means of predicting
Jan 1, 1974
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Study of Blast Over-pressure from Intentional MEC Detonations Using Double Sandbag MitigationBy Daniel Haines, Benjamin Konshak, Michelle Crull
American Technologies Incorporated Group (ATI) is the prime contractor with U.S. Army Corps of Engineers, Huntsville Center (CEHNC) in the Honolulu District for the removal of munitions and explosives
Jan 1, 2008
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Effects Of Bolt Spacing, Bolt Length, And Roof Span On Bolt Loading In A Trona MineBy R. Raines, S. P. Signer
Researchers from the Spokane Research Laboratory of the National Institute for Occupational Safety and Health installed 39instrumented, fully grouted bolts at six test sites in a trona mine retreat pa
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Sealing Of Shafts, Tunnels, And Boreholes For Waste RepositoriesBy R. D. Ellison, D. K. Shukla, D. E. Stephenson
Seals for man-made penetrations into or nearby nuclear waste repositories require several unique capabilities not common to seals for conventional underground activities. Design criteria include long
Jan 1, 1981
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Characterization Of Texas Lignite Based On Proximate Analysis DataBy J. E. Russell, Y. J. Wang
In this paper, we report the results of a study of the characteristics of Texas lignite based on a proximate analysis data base previously published by the Bureau of Economic Geology, University of Te
Jan 1, 1983