Volume 23 Issue 5
Oct.  2010
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YI HUANG, SHU-YING ZHANG, MING-JI LV, SHU-GUANG XIE. Biosorption Characteristics of Ectomycorrhizal Fungal Mycelium for Anthracene[J]. Biomedical and Environmental Sciences, 2010, 23(5): 378-383.
Citation: YI HUANG, SHU-YING ZHANG, MING-JI LV, SHU-GUANG XIE. Biosorption Characteristics of Ectomycorrhizal Fungal Mycelium for Anthracene[J]. Biomedical and Environmental Sciences, 2010, 23(5): 378-383.

Biosorption Characteristics of Ectomycorrhizal Fungal Mycelium for Anthracene

Funds:  the National Natural Science Foundation of China(50979002%20677003)
  • Objective To investigate the potential of Gomphidius viscidus,a kind of ectomycorrhizal fungi,for phytoremediation of anthracene in soil.Methods Absorptioe changes of micro-habitat were studied in detail.Conclusion Ectomycorrhizal plants have a strong potential for remediation of polycyclic aromatic hydrocarn characteristics of both active and inactivated mycelia.Results A high calculated adsorption capacity of 1 886.79 mg/g and 1 515.15 mg/g at 25 ℃,pH 6.0 for active and inactivated mycelia respectively,was obtained based on Langmuir model.The ANT biosorption was more ideally characterized by the Langmuir model than by the Freundlich model.The biosorption of anthracene to biomass was extremely fast and could be modeled with pseudo-second order adsorption kinetics.Moreover,ectomycorrhizal mycelia demonstrated a strong ability to adjust the physiological process to get adapted to the change of micro-habitat.
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Biosorption Characteristics of Ectomycorrhizal Fungal Mycelium for Anthracene

Funds:  the National Natural Science Foundation of China(50979002%20677003)

Abstract: Objective To investigate the potential of Gomphidius viscidus,a kind of ectomycorrhizal fungi,for phytoremediation of anthracene in soil.Methods Absorptioe changes of micro-habitat were studied in detail.Conclusion Ectomycorrhizal plants have a strong potential for remediation of polycyclic aromatic hydrocarn characteristics of both active and inactivated mycelia.Results A high calculated adsorption capacity of 1 886.79 mg/g and 1 515.15 mg/g at 25 ℃,pH 6.0 for active and inactivated mycelia respectively,was obtained based on Langmuir model.The ANT biosorption was more ideally characterized by the Langmuir model than by the Freundlich model.The biosorption of anthracene to biomass was extremely fast and could be modeled with pseudo-second order adsorption kinetics.Moreover,ectomycorrhizal mycelia demonstrated a strong ability to adjust the physiological process to get adapted to the change of micro-habitat.

YI HUANG, SHU-YING ZHANG, MING-JI LV, SHU-GUANG XIE. Biosorption Characteristics of Ectomycorrhizal Fungal Mycelium for Anthracene[J]. Biomedical and Environmental Sciences, 2010, 23(5): 378-383.
Citation: YI HUANG, SHU-YING ZHANG, MING-JI LV, SHU-GUANG XIE. Biosorption Characteristics of Ectomycorrhizal Fungal Mycelium for Anthracene[J]. Biomedical and Environmental Sciences, 2010, 23(5): 378-383.

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