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  • TMS
    Doe Run Company's Resource Recovery Facility

    By A. W. Worcester

    The plant is designed to produce 60,000+ tons of refined lead per year from a nominal feed consisting of 110,000 tons of SLI and industrial batteries, and 10,000 tons of lead contained in drosses and

    Jan 1, 1990

  • TMS
    A Recycling Alternative To Disposal

    By S. Rick Gilbert

    In the course of producing a final metal product, smelters, refineries, and other metallurgical facilities produce wastes which often come under the ?scrutiny of Federal and state regulatory agencies.

    Jan 1, 1995

  • TMS
    Thermodynamics Of Iron Reduction From Metallurgical Residues

    By Ivan Imris

    The iron production has generated many tonnes of very fine residues with high concentration of iron. In addition, during the recycling of galvanised steel scrap in the steel making processes the zinc

    Jan 1, 2003

  • TMS
    The Environment Load Assessment of Iron and Steel Producing BF-BOF and EAF Route Process

    By Shengli Tao, Hongxu Li, Hao Bai, Yu Chen, Daqiang Cang

    "China is the world's largest steel producer, in order to give environment load comprehensive analysis of steel and iron industry in china using LCA method, the life cycle inventory was compiled and a

    Jan 1, 2012

  • TMS
    The Effects of Experimental Variables on Iron Removal from Nitrided Malaysian Ilmenite by Becher Process

    By Eltefat Ahmadi

    Iron-free titanium oxycarbonitride (TiOxCyNz) is a promising feedstock for production of titanium tetrachloride (TiCl4) at low temperatures. In this study, the effects of leaching variables such as te

  • TMS
    Electrode Tip Melting Simulation during Vacuum Arc Remelting of Inconel 718*

    By L. A. Bertram, F. J. Zanner

    "The goal of this paper is to present a tool to simulate transient melting of the electrode tip. This capability is needed to develop and test furnace control algorithms since experimental determinati

    Jan 1, 1986

  • TMS
    Operational Experience Of Jinlong's Copper Flash Smelting

    By Bao Xiancheng

    Jinlong's copper flash smelting process started up in April 1997. In the early days of production, lots of equipment and process problems were encountered. But, through continuous improvements in

    Jan 1, 2002

  • TMS
    Quartz-Cristobalite Transformation And Its Effect On Reactions In Si Production: Initial Studies

    By Dian Adisty, Leiv Kolbeinsen, Eli Ringdalen

    In Si and FeSi production, the main Si source is SiO2, in the form of quartz. Reactions with SiO2 generate SiO-gas that further reacts with SiC to Si. During heating, quartz will transform to other Si

    Jan 1, 2014

  • TMS
    High Vacuum Mercury Retort Recovery

    By John M. Boyle

    The use of high vacuum mercury retort recovery as a safe and effective means of removing mercury from mercury hazardous waste solids rendering them non-hazardous and recovering mercury suitable for re

    Jan 1, 1995

  • TMS
    New Approach For The Optimization Of Copper Concentrates Flash Combustion By The Control Of Blends (Invited) (dd2a87e2-362b-4742-ba27-746fbc519d7b)

    By Roberto Parra

    The classic criteria of the preparation of the charge for the smelting of copper concentrates in at flash furnace considers the mass and energy balance from the chemical and mineralogy composition of

    Jan 1, 2003

  • TMS
    He Cooling Of ,Hot, Dirty, Corrosive, Non-Ferrous Smelter Gase5 With Particular Reference To Waste Heat Boilers

    By W. Drummond

    The cooling of smelter gases by air dilution, adiabatic evaporative cooling and indirect heat exchange is discussed with reference to the ,process, to the subsequent cleaning of the gas and to the use

    Jan 1, 1992

  • TMS
    Effects Of Niobium Microalloying On The Pearlite Of Ductile Iron

    By Xiangru Chen, Qijie Zhai, Wei Zhang, Haicheng Li, Chao Yang

    In this paper, ductile iron material with different content of niobium was prepared by a scientific melting method. Image Analysis Software was used to studied the effect of niobium microalloying on b

    Jan 1, 2015

  • TMS
    Mathematical Description of Flash Smelting

    By W. G. Davenport

    The remainder of this book develops and uses mass and heat balances to describe steady"state flash smelting. Its objectives are to: a) describe the many ways a flash furnace operator can produce spec

    Jan 1, 2001

  • TMS
    Aluminum Smelter Waste Heat Recovery Plant (Heat Exchangers Fouling and Corrosion-a Detailed Investigation)

    By Reza Kamali, Mohsen Bashiri, Hadi Fanisalek

    "Nomenclature: A: area (m2), C: heat capacity (WIK), cp: specific heat (J/Kg K), d: internal tube diameter (in), F: correction factor for multi-pass and crossflow heat exchanger, h: convective heat tr

    Jan 1, 2012

  • TMS
    Structure-Property-Processing Relationships in Nanocrystalline and Fine-Grained NbC and Co-NbC Composites

    By T. H. Courtney, B. R. Murphy

    "Nominal room temperature mechanical alloying (MA) has been used to synthesize the high melting temperature NbC and Cu-NbC composites. Elemental powders of Cu and Nb were alloyed in the presence of ei

    Jan 1, 1994

  • TMS
    Kinetics of Oxychlorination of Magnesium Oxide

    By N. Kanari

    The kinetics of oxychlorination of MgO by C12+02 was studied in the temperature range of 850 °C - 1025 °C, using thermogravimetric analysis. The effects of C12/02 ratio, gas velocity, temperature and

    Jan 1, 1999

  • TMS
    Dissolution of Fe- NbC in Liquid Fe-C Alloys

    By Jogre A. S Tenório

    he aim of the present investigation was to investigate technological features of the Fe-NbC dissolution in liquid Fe-C alloys. Fe-NbC is a Ferro-niobium alloy with 7%C, has a particle size smaller tha

    Jan 1, 1994

  • TMS
    Treatment And Minimization Of Wastes In Onahama Smelter

    By K. Abe

    Onahama Smelter has two green-charge reverberatory furnaces and the annual smelting capacity is 600 thousand tons copper concentrate. In addition to the concentrate, various kind of industrial wastes

    Jan 1, 1996

  • TMS
    Validation and Development of Flow-3D for Casting

    By M. Barkhudarov

    The results are presented of research aimed at validation and development of a general purpose CFD code FLOW-3D. FLOW-3D is a commercial code developed by FLOW SCIENCE, INC. A number of physical model

    Jan 1, 1992

  • TMS
    Mitsubishi Materials' High Performance Oxygen Free Copper and High Performance Alloys

    By Norihisa Iida, Yutaka Koshiba, Tsutoipu Masui

    "Mitsubishi Materials has many years of experience in the production of oxygen free copper (OFC) and its alloys with a fully continuous-casting process. Four grades of OFC, commercial, electronic, sup

    Jan 1, 2000