ZHAO Lin-lin, WANG Hai-yan, YANG Hui-fen, HE Zan, ZHOU Yue-xi, ZHANG Le, PANG Zhao-hui. Bacterial Diversity of the Combined Ozonation-ASBR/SBR Sludge Reduction with Simultaneous Nitrogen and Phosphorus[J]. Journal of Environmental Engineering Technology, 2011, 1(2): 123-130. DOI: 10.3969/j.issn.1674–991X.2011.02.021
Citation: ZHAO Lin-lin, WANG Hai-yan, YANG Hui-fen, HE Zan, ZHOU Yue-xi, ZHANG Le, PANG Zhao-hui. Bacterial Diversity of the Combined Ozonation-ASBR/SBR Sludge Reduction with Simultaneous Nitrogen and Phosphorus[J]. Journal of Environmental Engineering Technology, 2011, 1(2): 123-130. DOI: 10.3969/j.issn.1674–991X.2011.02.021

Bacterial Diversity of the Combined Ozonation-ASBR/SBR Sludge Reduction with Simultaneous Nitrogen and Phosphorus

  • The bacterial diversity in the ASBR and SBR of the combined process, i.e. combined ozonation-ASBR/SBR sludge reduction with simultaneous nitrogen and phosphorus removal process was studied by molecular biological PCR-DGGE method before and after sludge reduction. The results indicated that the dominant bacterial communities in the ASBR were Firmicutes bacterium, β-proteobacterium, γ-proteobacterium and Bacteroidetes bacterium. The bacterial richness in SBR after sludge reduction was slightly increased compared with that before sludge reduction, but with high similarity (85%). The dominant bacteria diversity of SBR was not influenced significantly by the ozone dosage for sludge reduction. There were Firmicutes bacterium, Candidate division TM7, ammonia-oxidizing bacterium, Bacteroidetes bacterium, β-proteobacterium, Denitrifying bacterium, Pseudomonas sp and Nitrosococcus halophilus Nc4 in SBR both before and after sludge reduction. However, the number of Bacteroidetes bacterium, β-proteobacterium, Denitrifying bacterium and Nitrosococcus halophilus Nc4 in SBR after sludge reduction was slightly higher than that before sludge reduction.
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