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Bioaugmentation of activated sludge towards 3-chloroaniline removal with a mixed bacterial population carrying a degradative plasmid
Authors:Stephan Bathe  Norbert Schwarzenbeck  Martina Hausner
Institution:1. Institute of Water Quality Control and Waste Management, Technical University of Munich, Am Coulombwall, 85748 Garching, Germany;2. Institute of Biology for Engineers and Wastewater Biotechnology, University of Karlsruhe, Am Fasanengarten, 76131 Karlsruhe, Germany;3. Biotech Production – Wastewater Treatment, Sandoz GmbH, Biochemiestrasse 10, 6250 Kundl, Austria;4. Department of Chemistry and Biology, Ryerson University, 350 Victoria Street, Toronto M5B 2K3, Canada
Abstract:A bioaugmentation approach combining several strategies was applied to achieve degradation of 3-chloroaniline (3CA) in semicontinuous activated sludge reactors. In a first step, a 3CA-degrading Comamonas testosteroni strain carrying the degradative plasmid pNB2 was added to a biofilm reactor, and complete 3CA degradation together with spread of the plasmid within the indigenous biofilm population was achieved. A second set of reactors was then bioaugmented with either a suspension of biofilm cells removed from the carrier material or with biofilm-containing carrier material. 3CA degradation was established rapidly in all bioaugmented reactors, followed by a slow adaptation of the non-bioaugmented control reactors. In response to variations in 3CA concentration, all reactors exhibited temporary performance breakdowns. Whereas duplicates of the control reactors deviated in their behaviour, the bioaugmented reactors appeared more reproducible in their performance and population dynamics. Finally, the carrier-bioaugmented reactors showed an improved performance in the presence of high 3CA influent concentrations over the suspension-bioaugmented reactors. In contrast, degradation in one control reactor failed completely, but was rapidly established in the remaining control reactor.
Keywords:Bioaugmentation  3-Chloroaniline degradation  Comamonas testosteroni  Plasmid pNB2  Semicontinuous activated sludge reactor
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