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    Removal of Zn from Contaminated Sediment by FeCl3 in HCl Solution

    Access Status
    Open access via publisher
    Authors
    Lee, S.
    Kwon, O.
    Yoo, K.
    Alorro, Richard
    Date
    2015
    Type
    Journal Article
    
    Metadata
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    Citation
    Lee, S. and Kwon, O. and Yoo, K. and Alorro, R. 2015. Removal of Zn from Contaminated Sediment by FeCl3 in HCl Solution. Metals. 5 (4): pp. 1812-1820.
    Source Title
    Metals
    DOI
    10.3390/met5041812
    ISSN
    2075-4701
    School
    Dept of Mining Eng & Metallurgical Eng
    URI
    http://hdl.handle.net/20.500.11937/29447
    Collection
    • Curtin Research Publications
    Abstract

    Harbor sediments contaminated with ZnS concentrate were treated by ferric chloride in HCl solution to remove Zn. The sediments were evaluated using Tessier’s sequential extraction method to determine the different metal phase associations of Zn. Leaching tests were performed to investigate the effects of experimental factors, such as agitation speed, ferric ion concentration, temperature, and pulp density, on the removal of Zn. The sequential extraction procedure revealed that about 17.7% of Zn in the sediment was associated with soluble carbonate and oxide phases. The results of the leaching tests indicated that higher ferric concentration and temperature increased the leaching efficiencies significantly, while the agitation speed has a negligible effect on the removal of Zn. The removal ratio increased to more than 99% within 120 min of treatment at 1 kmol·m−3 HCl solution with 1 kmol·m−3 Fe3+, 10% pulp density, and 400 rpm at 90 °C. The dissolution kinetics of Zn were discussed by comparing the two shrinking core models. It was determined that the kinetic data followed the diffusion controlled model well compared to the surface chemical reaction model. The activation energies were calculated to be 76.9 kJ/mol, 69.6 kJ/mol, and 58.5 kJ/mol for 0.25 kmol·m−3, 0.5 kmol·m−3, and 1 kmol·m−3 Fe3+, respectively.

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