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    Oxidative leaching of chalcopyrite by cupric ion in chloride media

    , Article Transactions of the Indian Institute of Metals ; Volume 73, Issue 4 , 2020 , Pages 989-997 Rasouli, S ; Mojtahedi, B ; Yoozbashizadeh, H ; Sharif University of Technology
    Springer  2020
    Abstract
    In this study, chalcopyrite concentrate produced in Sarcheshmeh copper plant was subjected to oxidative leaching investigation by cupric ion to determine the effect of several parameters on the copper and iron dissolution, including temperature of leaching, time of holding and cupric concentration as oxidant agent in a range of 38–97 °C, 1.5–8.5 h and 0.2–0.8 M, respectively. The leaching media was chloride providing with 3 M HCl 37% and CuCl2. The experiments were designed by central composite design method. The dissolution of copper and iron was examined. The maximum dissolution of copper 62.64%, was obtained at 85 °C, 7 h and oxidant concentration of 0.7 M. The kinetics model of... 

    Effect of Cu2+ on Leaching of Chalcopyrite in Chloride Media and Investigation of Thermodynamic and Kinetics of Process and Comparison with Sulfate Media

    , M.Sc. Thesis Sharif University of Technology Rasouli Jooryabi, Saleh (Author) ; Yoozbashi Zadeh, Hossein (Supervisor)
    Abstract
    High advantages of hydrometallurgy have led to its recent development in metal extraction. Many investigations have been carried out on applying hydrometallurgy processes on copper extraction. In this study, Chalcopyrite concentrate produced in Sarcheshmeh copper plant was subjected to oxidative leaching investigation by cupric ion to determine the effect of several parameters on the copper and iron dissolution, included temperature of leaching, time of holding and cupric concentration as oxidant agent in a range of 38-97°C, 1.5-8.5 hours and 0.2-0.8 M respectively. The leaching media was chloride providing with 3M HCl 37% and CuCl2. The experiments were designed by central composite... 

    Production of V2C MXene using a repetitive pattern of V2AlC MAX phase through microwave heating of Al-V2O5-C system

    , Article Applied Surface Science ; Volume 542 , 2021 ; 01694332 (ISSN) Ghasali, E ; Orooji, Y ; Azarniya, A ; Alizadeh, M ; Kazem-zad, M ; TouradjEbadzadeh ; Sharif University of Technology
    Elsevier B.V  2021
    Abstract
    The present work focuses on the preparation of V2C MXene from Al-V2O5-C mixture heated in a microwave and etched under HF-based process. In the first stage of process, microwave heating caused the formation of an uncommon periodic pattern of V2AlC-Al2O3 MAX phase. In the second stage of process the aggressive leaching (temperature of 80 °C for 96 h) was performed in HF to remove the interlayer aluminum and Al2O3 particles as impurities. The leaching was not completed at room temperature even after 24 h. XRD and FESEM analyses confirmed the successful formation of V2C MXene and its distorted layer, respectively. HRTEM, XPS and Raman analyses also confirmed a perfect structure of V2C MXene. It... 

    Kinetics of pressure oxidative leaching of molybdenite concentrate by nitric acid

    , Article Hydrometallurgy ; Volume 111-112, Issue 1 , January , 2012 , Pages 52-57 ; 0304386X (ISSN) Khoshnevisan, A ; Yoozbashizadeh, H ; Mozammel, M ; Sadrnezhaad, S. K ; Sharif University of Technology
    2012
    Abstract
    The current study was carried out to investigate the kinetics of reactions for the pressure oxidative leaching of a molybdenite concentrate in less than one hour. The effects of oxygen pressure, stirring speed, pulp density, acid concentration and temperature on the leaching rate of the molybdenum were studied. It was found that about 85% of molybdenite was oxidized to molybdic oxide precipitate with remaining molybdenum dissolved in the leaching liquor. Analysis of experimental data showed that the reaction is chemically controlled with activation energy of 68.8 kJ/mol. Furthermore SEM images showed no significant boundary diffusion layer and it was noted that the molybdic oxide... 

    Application of artificial neural networks to predict pressure oxidative leaching of molybdenite concentrate in nitric acid media

    , Article Mineral Processing and Extractive Metallurgy Review ; Volume 33, Issue 4 , Jul , 2012 , Pages 292-299 ; 08827508 (ISSN) Khoshnevisan, A ; Yoozbashizadeh, H ; Sharif University of Technology
    Taylor and Francis Inc  2012
    Abstract
    This study is concerned with investigation of pressure oxidative leaching of entire molybdenum of a molybdenite concentrate. Effects of oxygen pressure, stirring speed, pulp density, acid concentration, and temperature on the leaching rate of molybdenum were studied. A three-layer feed-forward artificial neural network was applied to model the effect of the abovementioned parameters on the leaching ability. The leaching efficiency was considered as a target value for modeling. The quantified leaching efficiencies obtained by applying different parameters demonstrated a good agreement with neural network predictions  

    Effective degradation of Reactive Red 195 via heterogeneous electro-Fenton treatment: theoretical study and optimization

    , Article International Journal of Environmental Science and Technology ; 2018 ; 17351472 (ISSN) Nazari, P ; Setayesh, S. R ; Sharif University of Technology
    Center for Environmental and Energy Research and Studies  2018
    Abstract
    Abstract: The magnetite (Fe3O4) nanoparticles were synthesized and supported on the reduced graphene oxide. The characterization of the catalyst was performed by FT-IR, VSM, SEM, XRD, and BET techniques. The obtained results indicated that the in situ synthesis of Fe3O4 using coprecipitation method caused the homogenous formation of magnetite nanoparticles on the surface of reduced graphene oxide (average particle size ~ 71.032 nm) with high stability and catalytic activity toward electro-Fenton removal of Reactive Red 195. The effect of various factors (current intensity, initial pollutant concentration, catalyst weight, and pH) was evaluated by response surface methodology using central... 

    Effective degradation of Reactive Red 195 via heterogeneous electro-Fenton treatment: theoretical study and optimization

    , Article International Journal of Environmental Science and Technology ; Volume 16, Issue 10 , 2019 , Pages 6329-6346 ; 17351472 (ISSN) Nazari, P ; Rahman Setayesh, S ; Sharif University of Technology
    Center for Environmental and Energy Research and Studies  2019
    Abstract
    Abstract: The magnetite (Fe3O4) nanoparticles were synthesized and supported on the reduced graphene oxide. The characterization of the catalyst was performed by FT-IR, VSM, SEM, XRD, and BET techniques. The obtained results indicated that the in situ synthesis of Fe3O4 using coprecipitation method caused the homogenous formation of magnetite nanoparticles on the surface of reduced graphene oxide (average particle size ~ 71.032 nm) with high stability and catalytic activity toward electro-Fenton removal of Reactive Red 195. The effect of various factors (current intensity, initial pollutant concentration, catalyst weight, and pH) was evaluated by response surface methodology using central...