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Preparation Of High Purity Anhydrous Neodymium Chloride
By Georges J. Kipouros
Anhydrous neodymium trichlorids (NdCl3), containing ~1 weight percent neodymium oxychloride (NdOCI) was prepared by the dehydration of neodymium trichioride hexahydrate (NdC13.6H2O). Dehydration of t
Jan 1, 1992
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Technological Advances for Reducing Production Costs of Commodity Metals
By Robert L. Stephens
"It can be argued that one of the most important property of any material is cost, since this property detennines the applications for which a material can be considered. Despite growing demand and pr
Jan 1, 2000
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Recovery of Copper by the Outokumpu VSF Solvent Extraction Technology
By Bror Nyrnan
Solvent extraction technology and equipment have been developed within Outokumpu since the early seventies. During this period altogether nine solvent extraction processes for molybdenium, zinc, rheni
Jan 1, 1994
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PEM Fuel Cell Bipolar Plate - Material Selection, Design and Integration
By Atul Kurnar
In the present research a two-cell polymer electrolyte membrane fuel cell stack (PEMFCS) with SS-316 bipolar plates has been tested. Different flow field designs were studied and a modified multi-para
Jan 1, 2002
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Life Cycle Inventory Analysis of Municipal Solid Wastes Management
By He De-wen
Based on the principle of life cycle assessment (LCA), municipal solid waste management (MSWM) was analyzed by life cycle inventory method. According to the system expansion and substitution method, t
Jan 1, 2009
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The Role Of Processes Modeling In Iron And Steelmaking (c9c214d5-7baf-405b-a4b9-11b318fccef5)
By Pinakin C. Chaubal
Today?s steel industry is in a vibrant and resurgent mode. This transformation has been in the making for some time now. Over the last few decades, the industry was steadily transforming itself into b
Jan 1, 2006
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The Role Of Processes Modeling In Iron And Steelmaking (d9a9d182-cb96-4ff1-b5fd-e0f5f5ed1177)
By Pinakin C. Chaubal
Today?s steel industry is in a vibrant and resurgent mode. This transformation has been in the making for some time now. Over the last few decades, the industry was steadily transforming itself into b
Jan 1, 2006
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The Role Of Processes Modeling In Iron And Steelmaking (782c269e-c2f9-424e-abe4-97c4d5ce9e39)
By Pinakin C. Chaubal
Today?s steel industry is in a vibrant and resurgent mode. This transformation has been in the making for some time now. Over the last few decades, the industry was steadily transforming itself into b
Jan 1, 2006
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Some Aspects Of Calcium Ferrite Slags (Invited)
By Sharif Jahanshahi
Calcium ferrite slags are often associated with Professor Yazawa due to his pioneering work on the thermodynamics of this type of melts. Over the past years CSIRO has invested some effort in studying
Jan 1, 2003
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Application Of Sodium Carbonate Slag To Copper Refining
By Chikabumi Yamauchi
The comprehensive scientific development of conventional industrial technologies stimulates the creation of new ones in the next generation. Prof. Akira Yazawa has just accomplished such an important
Jan 1, 2003
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The Role Of Processes Modeling In Iron And Steelmaking (8ffd2f4f-a45d-4810-87ec-6bb014787854)
By Pinakin C. Chaubal
Today?s steel industry is in a vibrant and resurgent mode. This transformation has been in the making for some time now. Over the last few decades, the industry was steadily transforming itself into b
Jan 1, 2006
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The Role Of Processes Modeling In Iron And Steelmaking
By Pinakin C. Chaubal
Today?s steel industry is in a vibrant and resurgent mode. This transformation has been in the making for some time now. Over the last few decades, the industry was steadily transforming itself into b
Jan 1, 2006
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The Role Of Processes Modeling In Iron And Steelmaking (a0b73a44-23e9-4c71-b297-4eba3d911988)
By Pinakin C. Chaubal
Today?s steel industry is in a vibrant and resurgent mode. This transformation has been in the making for some time now. Over the last few decades, the industry was steadily transforming itself into b
Jan 1, 2006
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The Role Of Processes Modeling In Iron And Steelmaking (69669522-bd8b-4ce0-a514-b718e86b3dbd)
By Pinakin C. Chaubal
Today?s steel industry is in a vibrant and resurgent mode. This transformation has been in the making for some time now. Over the last few decades, the industry was steadily transforming itself into b
Jan 1, 2006
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Coupling Of Electrocoagulation And Alternative Energy Sources For The Removal Of Arsenic Contaminants In Wa-Ter: An Environment-Friendly Materials Processing
By Jewel A. Gomes
Keywords: Electrocoagulation, arsenic removal, fuel cell, windmill, energy simulation, combined Fe-Al electrode assembly Arsenic contamination of well-water in different countries has caused signs
Jan 1, 2005
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Advancements in Smelter Gas Handling and Treatment at Magma Copper (The Minentls, Metals &.Materialo·Society, 1991)
By Kenneth L. Driggs
The Environmental Protection Agency's Clean Air Act? of 1970 provided the driving force for the current Magma Smelter configuration. The historical and technical perspectives of those process dev
Jan 1, 1992
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Strengthening Refractory Iron Ore Sintering With Biomass Fuel
By Xuling Chen, Zhiyun Ji, Min Gan, Wenqi Li, Xiaohui Fan, Zhiyuan Yu
"Specularite and vanadium-titanomagnetite are difficult to granulate, and with the increase of their proportions, the permeability of sintering bed is deteriorated together with the combustion velocit
Jan 1, 2012
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Modeling Of Arsenic Distribution Between Slags And Copper Mattes Or Liquid Copper (f01eb2d1-592f-4f99-8d97-0c066f35dac2)
By Jonkion M. Font
An expression for the distribution ratio of arsenic between slag and copper matte or liquid copper was developed by both, an extension of the Reddy-Blander moderl for deriving a priori the arsenic cap
Jan 1, 2003
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Mineral Changes During Oil Shale Retorting
By Won C. Park
Experiments showed changes in the mineral content of dolomitic oil shale at temperatures and exposure times which bracket conditions encountered during in situ retorting. Laboratory results correlate
Jan 1, 1981
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Microscopic Morphological Compensation Film Thickness For Phase-Separated Composite Film
By Chang Chia -Fu
The generic structure of our bimesogens is shown in and for a typical blue-phase mixture of the type we describe here. We use mixtures of the ratio 33.4% (n =2.6), 34.1% (n =6.57), 36.6% (n= 11.15) wi
Jan 1, 2006