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Biodegradation of benzo[a]pyrene in soil by Mucor sp. SF06 and Bacillus sp. SB02 co-immobilized on vermiculite
Authors:SU Dan  LI Pei-jun  FRANK Stagnitti and XIONG Xian-zhe
Institution:1. Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China;Graduate University of Chinese Academy of Sciences, Beijing 100049, China
2. Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China
3. School of Life and Environmental Science, Faculty of Science and Technology, P. O, Box 423, Warmambool Victoria 3280, Australia
Abstract:Two indigenous microorganisms, Bacillus sp. SB02 and Mucor sp. SF06, capable of degrading polycyclic aromatic hydrocarbons (PAHs) were co-immobilized on vermiculite by physical adsorption and used to degrade benzoa] pyrene (BaP). The characteristics of BaP degradation by both free and co-immobilized microorganism were then investigated and compared. The removal rate using the immobilized bacterial-fungal mixed consortium was higher than that of the freely mobile mixed consortium. 95.3% of BaP was degraded using the co-immobilized system within 42 d, which was remarkably higher than the removal rate of that by the free strains. The optimal amount of inoculated co-immobilized system for BaP degradation was 2%. The immobilized bacterial-fungal mixed consortium also showed better water stability than the free strains. Kinetics of BaP biodegradation by co-immobilized SF06 and SB02 were also studied. The results demonstrated that BaP degradation could be well described by a zero-order reaction rate equation when the initial BaP concentration was in the range of 10—200 mg/kg. The scanning electronic microscope (SEM) analysis showed that the co-immobilized microstructure was suitable for the growth of SF06 and SB02. The mass transmission process of co-immobilized system in soil is discussed. The results demonstrate the potential for employing the bacterial-fungal mixed consortium, co-immobilized on vermiculite, for in situ bioremediation of BaP.
Keywords:biodegradation  Bacillus sp  SB02  Mucor sp  SF06  benzo[a]pyrene  immobilization  soil pollution
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