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Production of Fine Powder of Tantalum by Reduction of Tantalum Chloride Vapor with HydrogenBy Hitoshi Iijima, Fumitaka Tsukihashi
"Fine powder of tantalum is used as materials of electric condenser. It is important to control the distribution of particle diameter of tantalum fine powders for the commercial use. In this study, fi
Jan 1, 2000
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Recovery of Metal Ions from Process Solutions by CementationBy Raj P. Singh
Applications of cementation in the recovery of metal ions from process solutions have been known for a long time. Cementation reactions involve electrochemical precipitation of a noble metal from solu
Jan 1, 2000
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Bioleaching of Waste Nickel Condenser PowderBy Yasuo Kudo, Wu, Hayato Sato, Hiroshi Nakazawa, Shouming
"In order to recover copper from a waste nickel condenser powder, bioleaching experiments were carried out using Thiobacillus ferrooxidans in a shaking flask. The content of nickel and copper in the w
Jan 1, 2000
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The Current Status of Electric Arc Furnace Dust Recycling In North AmericaBy Marc Liebman
We present the results of a telephone survey of electric arc furnace (EAF) steel producers. This report characterizes the current status of EAF dust generation, treatment and disposal. It indicates th
Jan 1, 2000
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A Macro Model for Steel Usage Patten in Japan using a Population Balance ModelBy Toshia Suzuki, Keiji Kakudate, Yoshihiro Adachi
"A macro model for the steel usage pattern in Japan is proposed. The steels are classified into four types; converter steel for machinery and for construction and electric furnace (EF) steel for machi
Jan 1, 2000
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Characterisation and Removal of Halogens in the EAF Dust and Zinc Oxide Fume Obtained from Thermal Treatment of EAF DustBy Guozhu Ye
"One of the most essential problems associated with the treatment of EAF dust is its high content of halogens. For most thermal processes for zinc recovery, such as the plasma processes with a zinc co
Jan 1, 2000
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Improvements in Scrap Recycling and Dross Processing Using OxygenBy Russell James Hewertson
Since 1989 Air Products and Chemicals, Inc. has converted over 40 air fuel fired furnaces to oxy-fuel and air-oxy-fuel. Advances in burner design, flow control technology and operating experience have
Jan 1, 2000
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Recovery of Zinc and Cadmium from Lead Smelter Furnace Dusts at Met-Mex Penoles by a Solvent Extraction ProcessBy I. Sofia Fernandez del Rio
This paper describes a process for the treatment of the dusts generated during the operation of blast and reverberatory furnaces in the lead smelter, to remove zinc, cadmium, arsenic and halides from
Jan 1, 2000
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The Processing of the Solid Household and Industrial Wastes in the Slag Bubbled Smelt with the Usage of the Vanyukov FurnaceBy A. V. Tarasov, V. M. Paretsky
"The design is based on the thermal processing of the wastes in· the intensively bubbled melt in the Vanyukov furnace at the relatively high temperatures (1350- 1450 °C), In this case: -the secondary
Jan 1, 2000
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Thermodynamics of Deoxidation of Molten Titanium and ZirconiumBy Yoshinao Kobayashi
he removal of oxygen from titanium and zirconium is important for use in application because it significantly affects the mechanical and physical properties such as ductility and toughness. However, t
Jan 1, 2000
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MeltSim: Melting Optimization for Aluminum Reverb FurnacesBy F. L. Meng, C. S. Henkel, R. M. Alchalabi
For secondary aluminum producers to maintain a profitable melting operation, five technical factors have to be taken into account from the initial furnace building decision to the final operation and
Jan 1, 2000
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Modernisation of the Lead Acid Battery Scrap Smelting Technology at "Orzel Bialy" S.A.By Z. Smieszek, W. D?browicz, J. Pawlowski, G. Krawiec, J. Czernecki, J. Por?mbski, S. Gizicki
Rapid development of the automotive industry and motorization has been observed in Poland over the last decade. This phenomenon has increased the amount of used car batteries requiring recycling and h
Jan 1, 2000
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Metal Recycling at Kosaka SmelterBy S. Kawamura, H. Inoue, Y. Maeda, H. Ohike
Kosaka smelter is a copper smelter located in Akita Prefecture in the northern part of Japan. It has treated complex sulfide concentrates for a long time. Recently, in addition to metal production fro
Jan 1, 2000
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Method for Processing Siliceous Zinc OresBy S. Ikenobu
This paper describes a method for processing high-silicate zinc concentrates by hydrometallurgical zinc refining. Silica in concentrates reacts to form zinc silicate during roasting. The zinc silicate
Jan 1, 2000
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The Development of Processes for the Production of Selected Rare Earth Electronic MaterialsBy Renato G. Bautista
"The development of processing methods for the preparation .of three electronic materials with rare-earth components is discussed. The resulting processing innovations are the results of a search for
Jan 1, 2000
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Dross Reclamation at Aluminum Melting Furnace SitesBy Daniel E. Groteke
This paper describes a new technology which allows aluminum drosses to be processed at the generating melting furnace to recover available metallic values. The systems, offered in both manual and auto
Jan 1, 2000
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Optimizing Gas Mass Transfer in AutoclavesBy Ronald Klepper
In hydrometallurgy, pure gases like oxygen and hydrogen are used for oxidation and reduction. The gases are expensive and therefore should be used efficiently. Non reacted gas can be recycled into the
Jan 1, 2000
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Preparation and Characterization of LaxBa1-x TiO3 Ceramic SensorBy Jingbo Liu, Zhimin Wang, Wenchao Li
"IntroductionThe advantages of non-stoichiometric perovskite material are highlighted in many papers[l]and many of this family of materials are well-suited to integration into microsensor devices. Amo
Jan 1, 2000
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Field Emission from CVD Diamond Fabricated by Pulse-Modulated Microwave PlasmaBy Matsufumi Takaya, Yukihiro Sakamoto
"Electric field emission properties from CVD diamond fabricated using pulse-modulated microwave plasma CVD were studied. Diamond was synthesized by microwave plasma CVD apparatus equipped with a pulse
Jan 1, 2000
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Materials Recovery from Shredder ResiduesBy Jr. Pomykala, B. J. Jody, E. J. Daniels
Each year, about five (5) million ton of shredder residues are landfilled in the United States. ·Similar quantities are landfilled in Europe and the Pacific Rim. Landfilling of these residues results
Jan 1, 2000