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Simultaneous biodegradation of nitrogen-containing aromatic compounds in a sequencing batch bioreactor
Authors:LIU Xing-yu  WANG Bao-jun  JIANG Cheng-ying  ZHAO Ke-xin  Harold L Drake and LIU Shuang-Jiang
Institution:1. State Key Lab of Microbial Resources at Institute of Microbiology, Chinese Academy of Sciences, Beijing 100080, China;Graduate University of Chinese Academy of Sciences, Beijing 100049, China
2. State Key Lab of Microbial Resources at Institute of Microbiology, Chinese Academy of Sciences, Beijing 100080, China
3. Department of Ecological Microbiology, University of Bayreuth, 95445 Bayreuth, Germany
Abstract:Many nitrogen-containing aromatic compounds (NACs), such as nitrobenzene (NB), 4-nitrophenol (4-NP), aniline (AN), and 2,4-dinitrophenol (2,4-DNP), are environmentally hazardous, and their removal from contaminated water is one of the main challenges facing wastewater treatment plants. In this study, synthetic wastewater containing NB, 4-NP, 2,4-DNP, and AN at concentrations ranging from 50 to 180 mg/L was fed into a sequencing batch reactor (SBR). Analyses of the SBR system indicated that it simultaneously removed more than 99% of the NACs at loading rates of 0.36 kg NB/(m3 x d), 0.3 kg 4-NP/(m3 x d), 0.25 kg AN/(m3 x d), and 0.1 kg 2,4-DNP/(m3 x d). Bacterial groups of Bacteriodetes, Candidate division TM7, alpha-Proteobacteria, and beta-Proteobacteria were dominant in the clone libraries of 16S rRNA genes retrieved from the microbial communities in the SBR system. "Cycle tests" designed to alter feeding and aeration parameters of the SBR system demonstrated that the resident microbial biome of the SBR system responded rapidly to changing conditions. Consumption of O2 was concomitant with the apparent mineralization of NACs. Aromatic ring-cleaving dioxygenase activities suggested that (1) AN and NB were degraded via catechol 2,3-dioxygenase; (2) 4-NP was degraded via 1,2,4-benzentriol 1,2-dioxygenase; and (3) 2,4-DNP was degraded via an unresolved pathway.
Keywords:nitrogen-containing aromatic compounds  biodegradation  sequencing batch reactor  Candidate division TM7  bioreactor  batch  sequencing  aromatic compounds  pathway  catechol  Aromatic  activities  Consumption  mineralization  alter  feeding  aeration  parameters  biome  conditions  Cycle  clone  libraries  rRNA
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