Utilize este identificador para referenciar este registo: https://hdl.handle.net/1822/1602

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Campo DCValorIdioma
dc.contributor.authorNogueira, R.-
dc.contributor.authorMelo, L. F.-
dc.contributor.authorPurkhold, Ulrike-
dc.contributor.authorWuertz, Stefan-
dc.contributor.authorWagner, Michael-
dc.date.accessioned2005-05-16T14:42:07Z-
dc.date.available2005-05-16T14:42:07Z-
dc.date.issued2002-
dc.identifier.citation"Water research". ISSN 0043-1354. 36:2 (2002) 469-481.eng
dc.identifier.issn0043-1354-
dc.identifier.urihttps://hdl.handle.net/1822/1602-
dc.description.abstractTwo biofilmreactors operated with hydraulic retention times of 0.8 and 5.0 h were used to study the links between population dynamics and reactor operation performance during a shift in process operation from pure nitrification to combined nitrification and organic carbon removal. The ammonium and the organic carbon loads were identical for both reactors. The composition and dynamics of the microbial consortia were quantified by fluorescence in situ hybridization (FISH) with rRNA-targeted oligonucleotide probes combined with confocal laser scanning microscopy, and digital image analysis. In contrast to past research, after addition of acetate as organic carbon nitrification performance decreased more drastically in the reactor with longer hydraulic retention time. FISH analysis showed that this effect was caused by the unexpected formation of a heterotrophic microorganism layer on top of the nitrifying biofilm that limited nitrifiers oxygen supply. Our results demonstrate that extension of the hydraulic retention time might be insufficient to improve combined nitrification and organic carbon removal in biofilm reactors.eng
dc.description.sponsorshipMinistério da Ciência, Tecnologia e Ensino Superior. Fundação para a Ciência e a Tecnologia (FCT) - PRAXIS XXI BD/15943/98). Deutscher Akademischer Austauschdienst (A/99/06961). European Comission - T.M.R. BioToBio project. Deutsche Forschungsgemeinschaft .eng
dc.language.isoengeng
dc.publisherElsevier Scienceeng
dc.rightsopenAccesseng
dc.subjectNitrificationeng
dc.subjectBiofilmeng
dc.subjectOrganic carboneng
dc.subjectHydraulic retention timeeng
dc.subjectFluorescence in situ hybridizationeng
dc.titleNitrifying and heterotrophic population dynamics in biofilm reactors: effects of hydraulic retention time and the presence of organic carboneng
dc.typearticleeng
dc.peerreviewedyeseng
dc.identifier.doi10.1016/S0043-1354(01)00229-9-
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