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Fluidized Bed Roasting Of Micro-Pelletized Zinc Concentrate: Part I?Pellet Strength And Roasting Kinetics - SynopsisBy S. Heukelman
Zinc or, a zinc refinery in South Africa, uses oxygen enrichment of up to 26% O2 in its fluidizing air to increase concentrate-throughput in its fluidized bed roasters. The aim of the study is to dete
Jan 1, 2011
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Fluidized Bed Roasting Of Micro-Pelletized Zinc Concentrate: Part II?Particle Entrainment And Residence Time ? SynopsisBy S. Heukelman
Zincor uses O2 enrichment (up to 26% O2 in the fluidizing air) to increase the processing rate of zinc concentrates in the fluidized bed roasters. The aim of this study is to determine whether O2 enri
Jan 1, 2011
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Fluidized Bed Technology Applications for Nickel ExtractionBy K. Adham, C. Lee
The demand for nickel is continuing to exceed inventories, and producers are working vigorously to increase capacity. Many nickel processes utilize the fluidized bed technology for its fast heat and m
Jan 1, 2005
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Fluidized Bed Technology for Gold Ore and Gold ConcentrateBy J. Güntner
A significant portion of Outotec's business relates to the application of fluidized bed for processing a wide range of industrial materials, including gold ore and gold concentrate. As part of th
Jan 1, 2011
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Fluidized Gasification Of Noncaking Coals With Steam In A Small Pilot PlantBy A. Poll, J. E. Stantan, L. J. Jolley
THE basic problem in the generation of water gas from carbonaceous fuels and steam is the supply of the heat of reaction, and in general the source of this heat is the combustion of a further quantity
Jan 1, 1953
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Fluidized- bed reduction of fine iron ore by the in situ combustion of coalBy R. J. Dippenaar, J. C. van den Berg
This paper describes an investigation into the prereduction of hematite fines in a fluidized-bed reactor as a means by which they can be prepared for direct smelting in a transfered-arc plasma furnace
Jan 1, 1989
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Fluidized-Bed Combustion: Development StatusBy A. A. Jonke
The combustion of fossil fuels in a fluidized bed of calcined limestone particles is a potentially efficient and economically attractive process for the generation of steam for electric power producti
Jan 1, 1974
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Fluidized-Bed Combustion: Development Status (a78f6a8f-e05e-46e4-9ee1-41856a928f6d)By A. A. Janke, G. J. Vogel, W. M. Swift
The combustion of fossil fuels in a fluidized bed of calcined limestone particles is a potentially efficient and economically attractive process for the generation of steam for electric power producti
Jan 1, 1976
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Fluidized-bed firing of coal for steam generationBy P. J. Adams
Environmental regulations require means for controlling emissions of SO2 NOx and particulate when burning coal. The combustion of coal in limestone fluidized beds is one of the most promising techniqu
Jan 1, 1979
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Fluidized-bed technology for the production of iron products for steelmaking - SynopsisBy F. J. Plaul
The dominating technologies for steelmaking are the basic oxygen furnace (BOF or LD process, Linz-Donawitz) and the electric-arc furnace (EAF). The main iron input materials for both are liquid iron a
Jan 1, 2009
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Fluidynamic Effects On The Deposition Of Alumina Particles At The Upper Tundish NozzleBy Enif Gutiérrez Guerrero
Inclusion deposition is still a standing problem in the continuous casting of steel since the deposition of alumina inclusions inside the SEN affects the productivity and the product quality. The pres
Aug 17, 2017
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Flujos de escombros volcánicos en el valle del río chili-arequipa, un peligro geológico latenteBy Cristina Cereceda
El presente texto describe los flujos volcánicos en el valle de Chili, Arequipa con el objetivo de establecer la estratigrafía y reconocer las características sedimentológicas de los flujos de escombr
Sep 14, 2009
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Fluo-Solids Roaster And Acid Plant At Trepca Lead & Zinc Mines & Refineries, Mitrovica, Yugos1aviaBy Gligorije Stankovic
This paper describes the fluo-solids roaster and acid plants at the new 40,000-TPY Trepca electrolytic zinc plant. The electrolytic zinc plant units were constructed to the design of Singmaster and Br
Jan 1, 1970
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Fluo-Solids Roasting of Arsenopyrite Concentrates at Cochenour WillansBy Owen Matthews
Introduction For the past year and a half, the mill of Cochenour Willans Gold Mines, Limited, McKenzie Island, Ontario has been roasting arsenopyrite-gold concentrates, prior to cyanidation, by mea
Jan 1, 1949
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Fluor SOx Cleanup Process - A Cost Effective "SO2 To Elemental Sulfur" Technology For Global Green EnvironmentBy Thomas K. Chow
For the well-being of all living creatures and in response to green-environment policy from governments around the global, it is essential to reduce SO2 emissions from mining / smelters as well as oth
Jan 1, 2006
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Fluorescent Characterization of Fine Multicomponent Particles of Yttrium and EuropiumBy M. Kobayashi, Y. Nishisu
"Fine multicomponent particles of yttrium and europium were synthesized through the precipitation from homogeneous solution, and the various characteristics related with the fluorescence were investig
Jan 1, 2000
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Fluoride activation in oleate flotation of collophaniteBy A. Yehia, J. S. Hu, J. D. Miller, M. Misra
Fluoride activation has been evaluated by Hallimond tube flotation of collophanite in terms of fluoride concentration, conditioning time, pH, and temperature. The results reveal that efficient oleate
Jan 1, 1988
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Fluoride Activation In Oleate Flotation Of Collophanite (c982710c-3798-47d6-8e6c-eccb90bced21)By A. Yehia
Fluoride activation has been evaluated by Hallimond-tube flotation of collophanite in terms of fluoride concentration, conditioning time, pH, and temperature. The results reveal that efficient oleate
Jan 1, 1986
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Fluoride in Ground Water of AlabamaBy Philip E. LaMoreaux
Fluoride, generally less than 0.5 ppm, is present in ground water from rocks of Paleozoic age and older, in northern and eastern Alabama. Some of the water-bearing formations in the Coastal Plain area
Jan 8, 1950
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Fluoride in the Ground Water of AlabamaBy Philip E. LaMoreaux
Fluoride, generally less than 0.5 ppm, is present in ground water from rocks of Paleozoic age and older, in northern and eastern Alabama. Some of the water-bearing formations in the Coastal Plain area
Jan 1, 1950