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Analysis of a diverse bacterial community and degradation of organic compounds in a bioprocess for coking wastewater treatment

Authors :
Meng, Xiaojun
Li, Haibo
Sheng, Yuxing
Cao, Hongbin
Zhang, Yuxiu
Source :
Desalination & Water Treatment; September 2016, Vol. 57 Issue: 41 p19096-19105, 10p
Publication Year :
2016

Abstract

AbstractCoking wastewater is one of the most toxic industrial effluents since it contains high concentration of toxic organic compounds. Biological treatments are widely applied in coking wastewater treatment, pollutants can be degraded completely due to the synergistic effect of the community composition. In this study, the community structure and degradation of organic compounds of a full-scale coking wastewater treatment plant with anaerobic, anoxic, and oxic process (A1/A2/O) were studied. GC-MS results showed that phenols, indole, quinoline and pyridine, accounting for 61.70, 13.63, 7.71 and, 2.30%, respectively, were the main organic pollutants in the raw coking wastewater. Those pollutants were degraded gradually during the A1/A2/O bioprocess, respectively. High throughput pyrosequencing was applied to investigate the bacterial community, the sequences could be affiliated to 21 phylogenetic groups, including Proteobacteria, Chloroflexi, Bacteroidetes, Planctomycetes, Synergistetes, Chlorobi, Acidobacteria, Nitrospira, Firmicutes, and Actinobacteria. Diversity and richness indexes, venn analysis and principal component analysis indicated that the diversity and abundance of species in three samples were different. The abundance of the phylum Proteobacteriaaccounted for 84.64% (A1), 62.73% (A2), and 83.24% (O) of the total reads, respectively. The corresponding most dominant orders in three samples were Pseudomonadales(A1), Syntrophobacterales(A2), and Burkholderiales(O), respectively. While genus Pseudomonas, Desulfoglaeba, and Diaphorobacterwas the dominant bacterium in three samples, respectively.

Details

Language :
English
ISSN :
19443994 and 19443986
Volume :
57
Issue :
41
Database :
Supplemental Index
Journal :
Desalination & Water Treatment
Publication Type :
Periodical
Accession number :
ejs39779324
Full Text :
https://doi.org/10.1080/19443994.2015.1100556