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Peirce-Smith Converter Hood Improvements At BHP CopperBy Ovidiu Pasca
Several improvements in converter equipment and operation at BHP Copper have reduced the converter cycle time as necessitated by an increase in flash furnace output. The resulting higher intensity per
Jan 1, 1999
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Peirce-Smith Converter Mouth Redesign OverviewNickel WestÆs Kalgoorlie Nickel Smelter operates three Peirce-Smith converters, each processing 110 tonnes of matte per charge. The vessels are lined with chrome-magnesia refractory with a mouth tradi
Jan 1, 2005
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Peirce-Smith Converters: Automation, Design, Operation and Environmental Improvements at Kansanshi Copper SmelterBy David deVries, James Rajith, Paul Mascrenhas, Nurzhan Dyussekenov, Lawrence Hanschar
Kansanshi Copper Smelter commenced operation in March 2015. The smelter features four Peirce- Smith Converters (PSCs) operated in a three hot, two blowing configuration. This paper describes some of t
Jan 1, 2019
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Peirce-Smith Converting – Another 100 Years?By Albert Wraith, Thomas Price, Wayne Boyd, Skip (I. E. ) Hills, Cameron Harris
Most Peirce-Smith converters inject air through tuyeres, with nitrogen representing the majority of gas passing through the process. The nitrogen controls the temperature of the vessel by carrying awa
Jan 1, 2009
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Pelagic Sediments Associated With Polymetallic Nodules In The Clarion Area Fracture ZoneBy Marlene Olivares Cruz
The particles that make up the deep-sea sediments have two main sources: 1) those that are created in situ from dissolved components and 2) those that are washed into the ocean in solid phases from th
Jan 1, 2011
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Pelagic Sediments Associated with Polymetallic Nodules in the Clarion Area Fracture Zone (0561cd29-9a1e-44e4-ad6d-1907506df123)By Marlene Olivares Cruz
The particles that make up the deep-sea sediments have two main sources: 1) those that are created in situ from dissolved components and 2) those that are washed into the ocean in solid phases from th
Sep 14, 2011
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Pellestising of Fine Industrial Solid Wastes: A Contribution to the Protection of the EnvironmentBy Premur V
In industry and power production and distribution large quantities of fine wastes are produced. These are above all fly ash and phosphogypsum. Attempts are made to use them as secondary raw material
Jan 1, 1993
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Pellet Cargo Sampling Facility At The Chicago And Northwestern Ore Dock, Escanaba, MichiganBy John W. Reddy
The C&NW Ore Dock at Escanaba, Michigan, is a major terminal on Lake Michigan for iron ore pellets arriving from the Marquette Iron Range located 112 km (70 miles) to the north. In an average year, t
Jan 1, 1985
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Pellet Feed Addition On Iron Ore Sintering Cold AgglomerationBy Ismael Vemdrame Flores, Lindaura de Souza Cândido D’ Avila, Maurício Covcevich Bagatini, Arthur Felipe Lino Oliveira, Rafael Adriano Lopes Júnior
The use of pellet feed to adjust the chemical quality of the sinter is an alternative to the depletion of iron ore reserves. However, the addition of ultrafine in the sintering process can cause decre
Oct 1, 2019
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Pellet Feed Production Via The Concentration Of Flotation TailingsBy M. G. Vieira
This investigation addressed the possibility of producing pellet feed at a silica content of = 1.0% using a representative sample of Samarco´s mechanical flotation tailings. This sample contained 11.0
Jan 1, 2010
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Pellet Metallurgical Property ImprovementBy R. C. Moe
Pelletizing studies were conducted to find ways of improving the metallurgical properties of acid and fluxed pellets. In acid pellets, melting temperature was controlled by the formation of low meltin
Jan 1, 1990
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Pellet Production By Cold Bonding And Low Temperature Bonding MethodsBy Hou Xilun
Three production methods of rapid cold bonding and low temperature bonding pellets using sponge iron powder as a binder have been successfully developed. These methods differ from ordinary bonding met
Jan 1, 1980
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Pellet Production by Cold Bonding and Low Temperature Bonding Methods (e14fb394-aca1-4ca9-bea4-663f2c3ca0bd)By H. Xi-Lum
Three rapid cold bonding production methods wing sponge iron powder as a binder for low temperature pellets have been successfully developed. These methods differ from ordinary bonding by the eliminat
Jan 1, 1984
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Pelletisation of Coal Fines: An Experimental StudyModern mining and coal cleaning techniques lead to the generation of large quantities of fines which give rise to problems in their storage, handling, transportation and further processing. Pelletisat
Jan 1, 2000
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Pelletisation of New Zealand titanomagnetite ironsand for hydrogen direct reductionBy B H. Yin, S Mendoza, M Nusheh' C W Bumby, A Zhang
Hydrogen-direct-reduction of iron ore in a vertical shaft furnace is a potential process that could significantly reduce CO2 emissions from the steel industry. This approach requires the pelletisation
Sep 18, 2023
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Pelletising Characteristics of the Magnetite Concentrate from Daye Iron MineBy Xu Z, Hu C
An attempt has been made to investigate the performance of green pellet formation of the Daye magnetite concentrate from the weak-magnetic separation plant. The optimum conditions for the commercial
Jan 1, 1999
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Pelletising performance of Western Australian ultra-fine magnetite concentrate and strengthening technique by optimising ore matchingBy X Hu, C-C Yang, J Pan
In this work, preheating and roasting tests of pellets made from blends of Western Australia ultra-fine (WAU) magnetite concentrate and Chinese domestic magnetite concentrate or Brazilian hematite con
Jul 24, 2017
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Pelletization Of Glass Batch With Soda Ash Substituted For Sodium CarbonateBy Junnosuke Yamamoto
Substituting sodium hydroxide for sodium carbonate as a binder in a glass batch yields harder pellets with a lower melting point. This paper explores the degree of NaOH substitution that is feasible,
Jan 1, 1977
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Pelletization Of Iron Ores In Developing Countries - Present And FutureBy M. N. Dastur
In this paper, the current situation in iron ore pelletization in developing countries is reviewed. The main reasons leading to the development of pelletizing in these countries, alternative pelletizi
Jan 1, 1977
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Pelletization of Slag From Steel DesulfurizationBy S. K. Kawatra
"A typical steelmaking facility produced 50,000 tons per year of slag in their hot-metal desulfurization process. This slag had a sufficiently high iron content that it could be beneficiated and recyc
Jan 1, 2008