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Bioreduction of Selenite and Tellurite by Phanerochaete Chrysosporium

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SKU:
9781138030046
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  • Product Details

    Author:
    Erika Jimena Espinosa-Ortiz
    Format:
    Paperback
    Pages:
    180
    Publisher:
    CRC Press (July 28, 2016)
    Language:
    English
    ISBN-13:
    9781138030046
    Weight:
    11.25oz
    Dimensions:
    6.6875" x 9.4375"
    File:
    TAYLORFRANCIS-TayFran_260128060137739-20260128.xml
    Folder:
    TAYLORFRANCIS
    List Price:
    $94.99
    Series:
    IHE Delft PhD Thesis Series
    Case Pack:
    55
    As low as:
    $90.24
    Publisher Identifier:
    P-CRC
    Discount Code:
    H
    Audience:
    College/higher education
    Country of Origin:
    United States
    Pub Discount:
    30
    Imprint:
    CRC Press
  • Overview

    Selenium (Se) and tellurium (Te) are metalloids of commercial interest due to their physicochemical properties. The water soluble oxyanions of these elements (selenite, selenate, tellurite and tellurate) exhibit high toxicities; hence, their release in the environment is of great concern.
    This study demonstrates the potential use of fungi as Se- and Te-reducing organisms. The response of Phanerochaete chrysosporium to the presence of selenite and tellurite was evaluated, as well as its potential application in wastewater treatment and production of nanoparticles. Growth stress and morphological changes were induced in P. chrysosoporium when exposed to selenite and tellurite. Synthesis of Se0 and Te0 nanoparticles entrapped in the fungal biomass was observed, as well as the formation of unique Se0-Te0 nanocomposites when the fungus was cultivated concurrently with Se and Te. The response of P. chrysosporium to selenite exposure was investigated in different modes of fungal growth (pellets and biofilm). A bioprocess for selenite removal and Se0 nanoparticles recovery using an up-flow fungal pelleted reactor was developed. 70% selenite removal (10 mg Se L-1 d-1) was achieved under continuous mode. The use of Se0 nanoparticles immobilized in P. chrysosporium pellets as a new sorbent material for the removal of heavy metals from wastewater was demonstrated.