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Reducing Mining Costs Through Computer Technology
By Michael E. Stickney
"Soft technology" computers and computer programs-brings to mind a room full of machines, tape drives, disks, plotters, and printers spitting out financial reports. Computers now have a much broader s
Jan 4, 1981
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Reducing Overall Toxic Fumes at Fixed Work Output, by Formulating
By Michael Wieland
For shooting rock properly, some relatively fixed quantity of rock work is required from the total charge mass, while keeping the overall toxic fumes to a minimum. The overall fumes weighted for the t
Jan 1, 2006
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Reducing Rock Falls During Mine Rescue
By Reed Thorne
To many people, rescue from elevated, sometimes vertical, locations brings about thoughts of heroism mixed with brawn and self-sacrifice. Images are conjured of cliff rescues where the technical effo
Jan 1, 1996
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Reducing The Fire And Explosion Hazards Of Flame Cutting And Welding In Underground Coal Mines - Preprint 09-007
By W. D. Monaghan
Flame cutting and welding is one of the major causes of fires and explosions in underground U.S. coal mines. On May 20, 2006, a flame cutting operation at the Darby Mine No. 1 led to an explosion tha
Jan 1, 2009
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Reducing the iron content of kaolin from Milos, Greece, by a hydrometallurgical process
By S. G. Tsimas, A. K. Moutsatsou, G. K. Parissakis, M. A. Komiotou
For Greek kaolin producers, a considerable proportion of whose output is from deposits containing more than 4 wt% Fe2O3, the colouring resulting from iron oxide impurity represents a serious problem t
Aug 1, 1995
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Reducing total project cost in the study phase using zero base design
By J Merrells
Fluor, together with our clients, has yielded significant reductions in the total cost of mining projects by employing a systematic and methodical process of cost reduction. This paper outlines this s
Jul 24, 2017
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Reducing ventilation change downtime and increasing operational uptime
By J A. Rowland
When executing a ventilation change the mine ventilation circuit is in a state of flux throughout the entire change period with discrete mine areas both under ventilated and/or over ventilated during
Oct 12, 2022
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Reductant Characterisation And Selection: Implications For Ferroalloys Processing
By R. Khanna, M. Dubikova
A variety of carbonaceous reducing materials are being used for the production of ferroalloys. Reductant materials include not just carbons such as coke, coal, char but also bio-carbons in form of cha
Jan 1, 2004
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Reductant Selection In Ferro-Alloy Production: The Case For The Importance Of Dissolution In The Metal
The typical reactions which the reductants undergo during ferroalloy production are reviewed, and identified as reaction with CO2 and with SiO, and dissolution in metal. Available reactivity tests for
Jan 1, 2002
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Reduction Behaviour Of The Akanvaara Chromites Of Northern Finland
By J. Härkki, R. Hiltunen
The Akanvaara intrusion (surface area 50-55 km2) in Savukoski, Northern Finland, hosts 23 distinct monocumulate layers of small euhedral chromite crystals enclosed in a silicate matrix. These chromiti
Jan 1, 2004
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Reduction Kinetics Of Manganese Oxide From HC FeMn Slags
By M. Tangstad, D. Lu, G. Tranell, S. Gaal, J. Safarian
The kinetics of MnO reduction from high carbon ferromanganese slag was investigated using a sessile drop technique at 1600 ºC. The effects of reductant type, ambient atmosphere and slag composition on
Jan 1, 2007
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Reduction Mechanism Of Chromite Spinel With Carbon
By A. B. Hazar-Yoruç
Ferrochromium produced by smelting chromite ores is an important alloying component in the steel industry. Ore, coke and fluxes are mixed and reacted in an arc furnace for a smelting process of ferroc
Jan 1, 2007
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Reduction Of Chromite Ore At Different Flow Rates Of Inert Gas
By Dolly Chakraborty, S. Ranganathan, S. N. Sinha
Pre-reduction of chromite outside the submerged-arc furnace (SAF) can significantly lower the specific power consumption in the SAF process. Conventional processes for the pre-reduction of the ore ope
Jan 1, 2007
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Reduction Of Chromium Oxide Containing Slags Using CaC2 Injection
By J. Björkvall, S. Ångström, L. Kallin
In this paper results from industrial trials of CaC2 injection during stainless steel production in an electric arc furnace at Sandvik Steel is presented. The main purpose of the investigation was to
Jan 1, 2004
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Reduction Of Chromium Oxide In Stainless Steel Slags
By N. Sano
The chromium oxide in stainless steel slags usually exists as Cr2O3. However, there is a possibility that it is oxidized to hazardous CrO3 after disposal or during use. Therefore, some technical devel
Jan 1, 2004
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Reduction of Copper Sulphide with CO-cO2-He Gas Mixtures in the Presence of CaO
By Moinpour M
The kinetics of reduction of copper (cuprous) sulphide with CO-CO2-He gas mixtures, using an excess of CaO(s) as a sulphur-scavenging substance were investigated in the temperature range 855° - 9
Jan 1, 1989
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Reduction Of Emissions From Ferroalloy Furnaces
By B. Andresen, S. T. Johansen, H. Tveit, S. Grådahl, B. Ravary
The Norwegian ferroalloy industry has high ambitions regarding environmental standards. Basic research work has been performed to improve the fundamental understanding of ferroalloy processes and the
Jan 1, 2007
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Reduction Of Manganese Ores By Methane-Containing Gas
By N. Anacleto, S. Ganguly
Reduction of Groote Eylandt (Australia) and Wessels (South Africa) manganese ores using CH4-H2-Ar gas mixture was investigated in a fixed bed laboratory reactor in the temperature range 1000?1200oC.
Jan 1, 2004
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Reduction of Pelletized Australian Iron Ores
Hydrogen and carbon monoxide reduction data were obtained on pelletized materials of the type currently being prepared commercially in Australia.Pellets, approximately 1 cm diameter, made from Deepdal
Jan 1, 1971
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Reduction roasting of central Indian Ocean nodules by use of fuel oil: a thermodynamic and kinetic analysis
By T. C. Alex, S Srikanth, Premchand
It has been suggested that reduction of the iron and manganese phases as far as FeO and MnO is preferred for the complete liberation and selective reduction of the copper, nickel and cobalt oxides in
Jun 21, 1905