High-purity recycling of hematite and Zn/Cu mixture from waste smelting slag

被引:0
|
作者
Yang Huo
Xiang Song
Suiyi Zhu
Yu Chen
Xue Lin
Yaqiong Wu
Zhan Qu
Ting Su
Xinfeng Xie
机构
[1] Science and Technology Innovation Center for Municipal Wastewater Treatment and Water Quality Protection,
[2] Northeast Normal University,undefined
[3] Jilin Institute of Forestry Survey and Design,undefined
[4] School of Forest Resources and Environmental Science,undefined
[5] Michigan Technological University,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
In this study, Zn/Cu-bearing smelting slag was recycled via an integrated acid dissolution and hematite precipitation method. The slag was dissolved in nitric acid to generate an acid solution containing 23.5 g/L Fe, 4.45 g/L Zn and 2.81 g/L Cu, which was subjected to hydrothermal treatment with the addition of levulinic acid (LA). More than 99.95% of the initial Fe content was removed as hematite particles with diameters of approximately 200 nm, and the residual Fe concentration in the acid was 0.43 mg/L. The generated hematite contained 97.3% Fe2O3, 0.64% ZnO and 0.58% CuO. Greater than 99% of the initial Zn and Cu was retained in the acid and further precipitated as Zn/Cu-bearing solids by adjusting the solution pH to 9. The precipitated Zn/Cu-bearing solids contained 33.6% Zn and 21.7% Cu, whereas the Fe content was less than 0.2%. This paper is the first report of an environmentally friendly approach for recycling smelting slag without generating any hazardous waste.
引用
收藏
相关论文
共 50 条
  • [31] Recycling of high purity selenium from CIGS solar cell waste materials
    Gustafsson, Anna M. K.
    Foreman, Mark R. St J.
    Ekberg, Christian
    WASTE MANAGEMENT, 2014, 34 (10) : 1775 - 1782
  • [32] Determination of Zn in high-purity GaAs with neutron activation analysis
    Köhler, M
    Harms, AV
    Alber, D
    APPLIED RADIATION AND ISOTOPES, 2000, 53 (1-2) : 197 - 201
  • [33] Synchronous stabilization of Pb, Zn, Cd, and As in lead smelting slag by industrial solid waste
    Sun Q.
    Yang H.
    Feng X.
    Liang Y.
    Gao P.
    Song Y.
    Chemosphere, 2023, 339
  • [34] CHARACTERIZATION AND RECOVERY OF VALUABLES FROM WASTE COPPER SMELTING SLAG
    Prince, Sarfo
    Young, Jamie
    Ma, Guojun
    Young, Courtney
    ADVANCES IN MOLTEN SLAGS, FLUXES, AND SALTS, 2016, : 889 - 898
  • [35] Optimization of Zn Leaching Recovery from Tire Rubber and High-Purity ZnO Production
    Li, Shiyu
    Tran, Thien Q.
    Ji, Bin
    Brand, Alexander S.
    Zhang, Wencai
    JOURNAL OF SUSTAINABLE METALLURGY, 2025, 11 (01) : 406 - 423
  • [36] Process-to-process recycling of high-purity water from semiconductor wafer backgrinding wastes
    Wu, M
    Sun, D
    Tay, JH
    RESOURCES CONSERVATION AND RECYCLING, 2004, 41 (02) : 119 - 132
  • [37] HIGH-PURITY, HIGH-STRENGTH CU-NI ALLOYS
    TAUBENBLAT, PW
    HSU, YT
    OPIE, WR
    METALS ENGINEERING QUARTERLY, 1972, 12 (02): : 63 - +
  • [38] HIGH-PURITY PRODUCTS FROM PLASTIC WASTE: THE W2PLASTICS PROJECT
    Rem, Peter
    Solaria, Venga
    Di Maio, Francesco
    ENVIRONMENTAL ENGINEERING AND MANAGEMENT JOURNAL, 2009, 8 (04): : 963 - 966
  • [39] Hematite tailings to high-purity silica: Mechanistic studies and life cycle assessment analysis
    Li, Cong
    Tang, Xuebao
    Liu, Xingyu
    Li, Suqin
    Chemosphere, 2024, 365
  • [40] Effect of annealing in Zn vapor and liquid Zn on photoluminescence of high-purity polycrystalline ZnTe
    V. S. Bagaev
    V. V. Zaitsev
    Yu. V. Klevkov
    V. S. Krivobok
    E. E. Onishchenko
    Semiconductors, 2003, 37 : 283 - 287