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  • TMS
    Volatilization Behavior Of Minor Elements During Non-Isothermal Oxidation Of Copper Concentrate Particles Falling In One-Dimensional Laminar Gas Flow

    By Ho-Sang Sohn

    Copper concentrate particles of 200 to 300 mesh size were fed from the top of vertical reaction tube of 2.8 cm ID and 2 m long with an O2-N2 gas mixture. The reaction tube was heated to 900 K to 1100

    Jan 1, 2006

  • TMS
    Volatilization Kinetics Of Minor Elements From Matte

    By Xu Zhong

    The theoretical limit to smelting rate and possibly the size of a smelter is dependent on the rate of heat transfer, and the chemical kinetics of both sulfur removal and minor element volatilization.

    Jan 1, 1995

  • TMS
    Volatilization Kinetics of Zinc and Lead in Zn-Pb-Bearing Dust Pellets Containing Carbon

    By D. Y. Wang, G. Y. Sha, X. L. Shen, D. R. Gu

    The study of the volatilization kinetics of zinc and lead in pellets made of zinc-leadbearing dust mixed with coal powder, in a nitrogen atmosphere and at a temperature range between 1100 °C and 1300

    Jan 1, 2000

  • TMS
    Volatilization Of Arsenic In The Teniente Converter At Codelco Norte Smelter

    By Alex Moyano

    At present, the Codelco Norte smelter processes in the Teniente Converter and the Flash smelting Furnace 1,420,000 t/y of its Chuquicamata concentrate with an arsenic content of up to 1.5%. In a near

    Jan 1, 2006

  • TMS
    Volatilization Of Rhenium From Molybdenite Concentrate By Oxidative Roasting

    By Linfeng Zhou, Yuanbo Zhang, Rong Sun, Guanghui Li, Zhiwei Peng

    The volatilization behavior of rhenium in the process of oxidative roasting of a molybdenite concentrate with 43.55 wt.% Mo and 321 g/t Re is explored based on identifying the relationship between vol

    Jan 1, 2016

  • TMS
    Volatilization of Zinc and Manganese From Natural and Synthetic Franklinite, Jacobsite and Willemite in a HCI/H2O Pyrohydrolytic Atmosphere

    By Edgar Peek

    Lixiviant regeneration is by definition a precondition for any hydrometallurgical process. In chloride hydrometallurgy either HCl or Cl2 has to be regenerated in order to establish an economically via

    Jan 1, 1995

  • TMS
    Voltammetric Measurements for CO2 Reduction under Ambient Conditions

    By Maria D. Salazar-Villalpando, Anthony Cugini, Bryan Reyes

    "The electrochemical reduction of CO2 was performed in a laboratory-made, divided Htype cell. A copper electrode was used as the cathode. An Aldrich Nafion 117-type ion exchange membrane (0.18mm thick

    Jan 1, 2010

  • TMS
    Waste Acid / Metal Solution Reduction And Recovery By Vacuum Distillation

    By Evan O. Jones

    Processes involving distillation under reduced pressure were developed at the Pacific Northwest Laboratory several years ago to recover spent acid solutions generated during the manufacture of nuclear

    Jan 1, 1995

  • TMS
    Waste Disposal by Residue Recycling at KGHM Polska Miedz SA

    By Helena Byrdziak

    KGHM Polska Miedz SA, in existence since nineteen seventies, operates three underground mines and three smelters with total production of over 400 000 mtpy of electrolytic copper. Its impact on the en

    Jan 1, 1997

  • TMS
    Waste Heat Integration Potential Assessment through Exergy Analysis in an Aluminium Production Facility

    By Cassandre Nowicki, Louis Gosselin, Carl Duchesne

    "Quebec's primary aluminium production industry consumes roughly 39 TWh of electricity per year and is accountable for roughly 7 million tons of CO2 equivalent. By tapping only a small portion of wast

    Jan 1, 2012

  • TMS
    Waste Heat Recovery from Industrial Smelting Exhaust Gas

    By Geir Wedde, Anders Sorhuus

    "Vast quantities of energy are released as heat to the environment from industrial operations. Many countries target waste heat recovery to mitigate CO2 emission. Exhaust gases from industries such as

    Jan 1, 2012

  • TMS
    Waste Heat Recovery in the Aluminum Melting Furnaces

    By John Norton

    "This presentation will cover the physical properties of waste heat recovery. It is a two part presentation. The first deals with actually recovering the heat with new state of the art heat exchangers

    Jan 1, 2011

  • TMS
    Waste Heat Recovery Opportunities in a Magnesium Silicothermic Reduction Plant

    By James C. Sever

    "With the advent of high energy costs and increasing concern for the environment leading to the incorporation the C02 life cycle as a criteria for the material used in a finished product, it is benefi

    Jan 1, 2013

  • TMS
    Waste Heat Recovery Trial from Aluminum Reduction Cell Exhaust Gases

    By Reza Kamali, Mohsen Bashiri, Hadi Fanisalek

    "Half of the input energy to aluminum reduction cell will be lost as waste heat which could be studied for possible recovery. Since price of energy is increasing and the main production cost in primar

    Jan 1, 2011

  • TMS
    Waste Heat Recovery: Opportunities And Challenges

    By Ilona Johnson

    United States metals and non-metallic minerals manufacturing consume about 5,000 trillion Btu annually. Various studies estimate that as much as 20 to 50 percent of this energy is lost as excess or wa

    Jan 1, 2008

  • TMS
    Waste Heat Reduction and Recovery Options for Metals Industry

    By Arvind Thekdi, Cynthia Belt2

    "Waste heat from industrial operations in metals industry represents 20% to 50% of the total energy used in most manufacturing plants. Reduction and recovery of waste heat offers the most attractive a

    Jan 1, 2011

  • TMS
    Waste Heat Utilization to Increase Energy Efficiency in the Metals Industry

    By Jim Sarvinis, Rory Hynes, Elizabet Cruz, Kerry McKenna, Maytinee Vatanakul

    "Energy efficiency improvements achieved using heat recovery processes offer benefits to both the business case and environmental impact of metallurgical facilities. Global demand drives the developme

    Jan 1, 2011

  • TMS
    Waste Management And Impurities Control At Atlantic Copper Smelter & Refinery

    By G. Ríos

    Atlantic Copper Metallurgical Complex in Huelva (Spain) was commissioned in 1970 with a capacity of 40,000 tpy of copper from concentrate. In 1975 the old blast furnaces were replaced by the Outokumpu

    Jan 1, 2006

  • TMS
    Waste Minimization Activities In The Materials Fabrication Division At Lawrence Livermore National Laboratory

    By J. W. Dini

    Introduction The mission of the Materials Fabrication Division (MFD) is to provide fabrication services and technology in support of all programs at Lawrence Livermore National Laboratory (LLNL). MFD

    Jan 1, 1992

  • TMS
    Waste Minimization And Resource Recovery Using Centrifugation And Thermal Desorption

    By Bradford H. Miller

    Separation and Recovery Systems, Inc. (SRS) provides on-site waste minimization and resource recovery using its state-of-the-art MX-1500 centrifuge and MX-2000 thermal desorber. The MX-1500 can proces

    Jan 1, 1994