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  • TMS
    Analysis of Aionic Polymer Dispersant Behavior in Dense Silicon Ntiride and Carbide Suspensions using an AFM

    By H. Kamiya, H. Hasegawa, M. Nojiri, S. Matsui, Y. Fukuda, M. Tsukada

    "The present paper focuses on the action mechanism of anionic polymer dispersants in dense Si3N4 and SiC suspension. An atomic force microscope (AFM) was used to determine the relationship between the

    Jan 1, 2000

  • TMS
    Recovery of Zinc Oxide from Secondary Raw Materials: New Developments of the Waelz Process

    By B. Garcia-Egocheaga, J. Rutten, N. Goicoechea, U. Meurer, Mager K., W. Saage, Simonettim F.

    Because of the increasing use of zinc as an active and passive anticorrosion agent for steel, leading to constantly growing return rates of galvanized steel components, especially through the automoti

    Jan 1, 2000

  • TMS
    Behaviour Of Thallium During Lead Smelting (Invited) 2003

    Thallium is a very minor element found in lead ores. It's behaviour during lead smelting has recently become of much greater interest due to the effects it had on the health of waste heat boiler

    Jan 1, 2003

  • TMS
    Destruction Of Nuclear Graphite Using Closed Chamber Incineration

    By D. J. Senor

    Closed chamber incineration (CCI) is a novel technique by which irradiated nuclear graphite may be destroyed without the risk of radioactive cation release into the environment. The process utilizes a

    Jan 1, 1994

  • TMS
    Development of a Thermodynamic Database for the Multicomponent PbO-“Cu2O”-FeO-Fe2O3-ZnO-CaO-SiO2 System for Pyrometallurgical Smelting and Recycling

    By M. Shevchenko

    Integrated experimental and modelling research program on the phase equilibria and development of thermodynamic databases of the lead and copper metallurgical gas/ slag-matte-metal-solids systems (PbO

  • TMS
    Towards Forming Micro-Bubbles in Liquid Steel

    By Roderick Guthrie

    Gas injection into liquid steel baths is widely practiced, ever since the early days of Bessemer’s pneumatic steelmaking process. What has not been fully appreciated is the critical role of bubble siz

  • TMS
    Fused Salt Electrorefining of Zinc

    By Kelly J. Driscoll

    Impure zinc (98.5%) was electrorefined to high purity zinc (99.995%) using a fused salt electrolyte of molar composition 1: 1 : 1 :2 ZnCI2:KCl:NaCl:LiCl with a current efficiency of about 90% at 723 K

    Jan 1, 1992

  • TMS
    A Study of the Extraction of Copper and Iron from Chloride Solutions with Commercial Extractants

    By John C. Carpenter

    Solvent extraction is used to selectively recover copper from iron containing sulphate solutions. As chloride ions, which form series of complexes with transition metals, are now being used for leachi

    Jan 1, 1976

  • TMS
    Analysis of Combustion Efficiency Using Laser-Induced Fluorescence Measurements of OH-Radicals

    By Matthias Schnitzler, Herbert Pfeifer, Ralf Bolling

    "To transform metals high temperatures are usually needed. A fast and efficient heating can reduce the C02 emitted. The fastest way to heat metals is called direct flame impingement (DFI). The flame i

    Jan 1, 2012

  • TMS
    Copper Recovery from the Mine Tailings by Combination of Flotation with High-Pressure Oxidative Leaching and Solvent Extraction

    By Atsushi Shibayama

    The aim of this research was to develop a copper recovery process from mine tailings (0.34%Cu) using flotation followed by high-pressure oxidative leaching (HPOL) and solvent extraction. The results o

  • TMS
    Electrometallurgy. Past, Present, and Future

    By Fathi Habashi

    "Davy, Faraday, and Bunsen laid the foundation of electrometallurgy which had a· great impact on other areas of metallurgy. Electrometallurgy is presently dominated by the production of aluminum, the

    Jan 1, 1997

  • TMS
    The Behaviour of Arsenic in the Copper Electrorefining Process

    By Demaerel. J. P.

    Arsenic plays a major role during electroreflning of copper. Both the arsenic content in the anode and the arsenic concentration of the electrolyte have, in conjunction with other impurities such as l

    Jan 1, 1987

  • TMS
    High-Performing Flash Smelting Furnace at Saganoseki Smelter & Refinery

    By Takayoshi Fujii, Mitsumasa Hoshi, Chikashi Suenaga, Yoshiaki Suzuki

    "In a bid to renovate its Saganoseki Smelter & Refinery and to establish a leading production unit in terms of global competitiveness, Nippon Mining & Metals undertook major - restructuring efforts si

    Jan 1, 2000

  • TMS
    Combustion Modeling Of Hazardous Waste Incineration

    Hazardous waste has often very complicated chemical compositions in a variety of physical forms and is normally processed in rotary kiln incinerators. Due to large variations in waste types and diffic

    Jan 1, 2003

  • TMS
    Direct Reduced Iron: An Advantageous Charge Material for Induction Furnace

    By K. Sadrnezhaad

    Industrial and experimental induction furnaces are used for melting various types of iron ingots, returned scraps and DRI sponge pellets to produce high purity cast-iron and steel heats. The lowest co

    Jan 1, 1988

  • TMS
    Improved Converter Control (54f63626-b2e1-4139-8fcf-d778be45550b)

    By J. -P. Nepper

    It has been possible to largely contain converter aisle emissions of SO2 and fumes in the case of batch-wise operated Peirce Smith converters during normal blowing periods with the help of suitably de

    Jan 1, 1992

  • TMS
    Solubility of Germanium Dioxide in Commonly Used Acids—Effect of Acid Strength, Temperature, and Water Activity

    By T. Feldmann

    Despite the ubiquity of applications for germanium, there is a lack of practically useful solubility data in acidic solutions. Previous studies were done at ambient temperature and only for commonly u

  • TMS
    Effect of Fluid Flow on Inclusion Coarsening in Low-Alloy Steel Welds

    By S. S. Babu, T. Hong, T. DebRoy, S. A. David

    "Oxide inclusions form in welds because of deoxidation reactions in the weld pool. These inclusions control the weld microstructure development. Thermodynamic and kinetic calculation of oxidation reac

    Jan 1, 1999

  • TMS
    Mechanism and Thermodynamics of Floating Slimes Formation

    By J. Brent Hiskey

    The global copper industry faces a technological challenge to develop processing schemes for more complex and impure ores and concentrates. Group 15 elements (As, Sb, and Bi) represent impurities that

    Jan 1, 2012

  • TMS
    Mechanisms Of Formation Of Hydrogen Porosity In 7xso And 2x24 Aluminum Alloys. Effects On Mechanical Behavior

    By F. D. S. Marquis

    An investigation of the mechanisms of formation of two types of porosity-primary and secondary-their characterization, evolution during processing, and effects on the mechanical behavior (fracture, fa

    Jan 1, 1996