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Fracture Toughness of 9Cr-1MoV and Thermally Aged Alloy 617 for Advanced Reactor ApplicationsBy Xiang (Frank) Chen, Mikhail A. Sokolov, Randy K. Nanstad
"Nickel-base Alloy 617 is being considered as a structural material for application in the secondary heat exchanger of the New Generation Nuclear Plant, a very high temperature gascooled reactor. Ther
Jan 1, 2012
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Ausmelt Technology, Flexible, Low Cost Technology For Copper Production In The 21st Century (Invited)By Joseph Sofra
It has become increasingly evident that sustainable metals production in the 21st century requires producers to balance the needs of cost effective, high value production with that of responsible plan
Jan 1, 2003
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Oxygen Production TechnologiesBy K. J. Murphy, A. R. Smith, A. P. Odorski
"The need for large quantities of oxygen for use in metallurgical processes was a major driving force in the commercialization of tonnage air separation plants. Oxygen, nitrogen and argon impact the q
Jan 1, 1988
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Recycling Nickel, Chromium And Iron Catalysts Through The High Temperature Metals Recovery ProcessBy R. H. Hanewald
INMETCO, a subsidiary of Inco Limited, is the only facility in North America that provides High Temperature Metals Recovery for nickel-, chromium-, and iron-bearing wastes. Since 1978, this process ha
Jan 1, 1995
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Lead in the 1990s: Continuing Growth or Beginning of the End?By Jeffrey L. Zelms
Environmental issues and how they are addressed -- or not addressed -- by the lead industry in the 1990s will determine the eventual fate of lead mining in both the U.S. and worldwide. Clearly, govern
Jan 1, 1990
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Converting Of Low-Copper High-Sodium MattesBy C. Ek
In bismuth metallurgy, low-copper high-sodium mattes are by-produced. Different charges containing mixtures- of crude mattes, oxidized matte, and/or copper sulfide concentrate and/or copper silicate o
Jan 1, 1983
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Recycling Metal-Bearing Hazardous WasteBy V. Ramachandran
Under the Resource Conservation and Recovery ACT (RCRA), generators of listed or characteristic hazardous wastes must find satisfactory means for disposal. of wastes. Initially, for many this meant la
Jan 1, 1994
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Bioleaching Process for Metal Recovery from Waste MaterialsBy Jorge Alberto Soares Tenório, Denise Crocce Romano Espinosa, Solange Kazue Utimura, Amilton Barbosa Botelho, Carlos Gonzalo Alvarez Rosario
In this study, the recycling of waste materials is interesting in the environmental aspect to reduce the amount of waste in land fill and attenuate the pollution of groundwater, air and soil due to the
Mar 1, 2017
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Local Temperature Control For Die Casting ProcessesBy Tiebao Yang
In high pressure die casting processes, a die plays a critical role in removing heat from the molten metal during the cavity filling and solidification stages. Proper control of die temperature is ess
Jan 1, 2006
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Recovery of Nickel and Vanadium from Heavy Oil Residues Using DC Plasma SmeltingBy P. Tim Johnson
Relentless increases in demand for nickel and vanadium for uses such as steelmaking, catalysts and battery materials, plus the growing financial and environmental costs of their primary extraction, ha
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Decomposition Kinetics Of Flash Smelting Flue Dust Sulphates (EPD Congress 2006)By Elli Nurminen
In this work the thermodynamics of the metallic sulphate decomposition reactions were studied through thermodynamical calculations and thermogravimetric methods. The decomposition temperatures and mec
Jan 1, 2006
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Risks And Opportunities In Continuous Converting For Nickel At IncoBy J. R. Donald
For processing copper, continuous converting has been successfully employed in a variety of locations, but for nickel, there has yet to be a successful commercial implementation of continuous converti
Jan 1, 2005
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A Parametric Study of Oxy-Fuel Burners in Secondary Aluminum MeltingBy Neeraj Saxena, Madhu Huggahalli, Jerry Bednarski, Ken Grieshaber, David Stoffel
"The use of oxy-fuel burners in secondary aluminum melting applications offers several advantages over air-fuel burners including reduced fuel consumption, faster charge to tap times and lower NOx emi
Jan 1, 2001
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CO2 Reduction Strategies in the Basic Metals Industry: A Systems ApproachBy Dolf Gielen
This paper discusses the results of a Western European energy and materials systems engineering study that analyses the impact of greenhouse gas (GHG) emission reduction on the future of the steel and
Jan 1, 1999
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Lead Recycling From Battery Scrap And Other Raw Materials In Metaleurop's Lead Smelting Plan In OkerBy Gernot Schenker
With the shut-down in the mid-1970s of the last shaft furnaces in the Harz Smelter Plant the long tradition of the Primary Lead Smelter in Oker came to an end. A continuation of the concern was nevert
Jan 1, 1990
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Characterization of High Carbon Equivalent Cast Iron Using Thermal Analysis CurvesBy Zhou Wenbin
In this paper the mechanical properties of high carbon equivalent cast iron for automobile brake discs were analyzed through thermal analysis curves. Experiment results show that the mechanical proper
Jan 1, 2010
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Recovery of Gold by Resin-In-Pulp at the Golden Jubilee MineTwo pilot-plant investigations were conducted in which strong-base resins were compared with activated carbon for the extraction of gold cyanide from leached pulp from the Golden Jubilee Mine. The res
Jan 1, 1989
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Production and Industrial Adaptation of Fast Single Firing Wall Tile Opaque Glass-Ceramic Glazes Containing Borax Solid WastesBy Ali Kucuk, Bekir Karasu, Keriman Karaveli Pekkan
"Zircon (zirconium silicate) is the main opacifier of glossy, opaque, white colored, frit-based wall tile glazes. However, zirconia containing frits employed in the preparation of these glazes increas
Jan 1, 2008
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Physical Processing Efficiency of Saline vs. Alkaline Spent BatteriesBy Marta Cabral, C. A. Nogueira, F. Margarido
"Physical processing of spent batteries which includes shredding and sieving operation is the first step for chemical treatment by hydrometallurgy. A laboratory study was carried out to evaluate physi
Jan 1, 2008
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Sustainability Study in Selective Laser Sintering ? An Energy PerspectiveBy Rameshwar Sreenivasan
This paper presents a sustainability analysis of Selective Laser Sintering (SLS) from an energy standpoint. Data of electrical power consumed by the system over an entire build were acquired using a L
Jan 1, 2010