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Characterization of 4-nonylphenol-degrading bacterial consortium obtained from a textile wastewater pretreatment plant.

Authors :
Di Gioia, Diana
Salvadori, Laura
Zanaroli, Giulio
Coppini, Ester
Fava, Fabio
Barberio, Claudia
Source :
Archives of Microbiology. Dec2008, Vol. 190 Issue 6, p673-683. 11p. 2 Diagrams, 4 Charts, 4 Graphs.
Publication Year :
2008

Abstract

4-Nonylphenol (4-NP) isomers are toxic and recalcitrant compounds often resulting, together with short-chain ethoxylated nonylphenol (NP nEO, where n is the number of ethylene oxide units), from NP nEO biodegradation in conventional activated sludge plants. In this work, a microbial consortium, defined as Consortium A, capable of removing 100 mg/L of 4-NP with no accumulation of metabolites with aromatic moiety was isolated from textile wastewaters after enrichment with 4-NP. The consortium showed remarkable degradation activities toward several short-chain NP nEO congeners. Culture-dependent techniques were used to isolate from the consortium twenty-six strains assigned to seven different amplified ribosomal DNA restriction analysis groups. Two- and three-member cocultures were prepared with the strains showing highest 4-NP-degrading capabilities, but neither the single strains nor the cocultures were as efficient in 4-NP degradation as Consortium A. FISH was used to characterize the microbial composition of Consortium A: it evidenced a strong occurrence of Proteobacteria and, in particular, of Gammaproteobacteria along with a relevant stability of the culture. Therefore, the isolated consortium has the potential of being used in the development of a biotechnological process for the tertiary treatment of effluents of activated sludge plants fed with NP nEO-contaminated wastewaters. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03028933
Volume :
190
Issue :
6
Database :
Academic Search Index
Journal :
Archives of Microbiology
Publication Type :
Academic Journal
Accession number :
35261586
Full Text :
https://doi.org/10.1007/s00203-008-0419-x