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Community survey of ammonia-oxidizing bacteria in full-scale activated sludge processes with different solids retention time

  • Sara Gates Hallin
  • , Åsa Jarvis
  • , M Hermansson
  • , S Kokalj
  • , Per-Eric Lindgren
  • , P Lydmark
  • , F Sörensson

    Publikation: Bidrag till tidskriftArtikel i vetenskaplig tidskriftPeer review

    Sammanfattning

    Aims: To study the effects of different solids retention time (SRT) on the nitrification activity and community composition of ammonia-oxidizing bacteria (AOB) in two full-scale activated sludge processes during a 5-month period. Methods and Results: The AOB community composition was analysed using fluorescence in situ hybridization (FISH) and denaturing gradient gel electrophoresis (DGGE), and the identified populations were enumerated by quantitative FISH. Potential nitrification rates were determined in batch tests and the in situ rates were calculated from mass balances of nitrogen in the plants. Increased SRT reduced the nitrification activity, but neither the number per mixed liquor suspended solids nor community composition of AOB were affected. Two dominant AOB populations related to Nitrosomonas europaea. and Nitrosomonas oligotropha were identified by FISH, whereas only the latter could be detected by DGGE. Conclusions: The effect of a longer SRT on the activity was probably because of physiological changes in the AOB community rather than a change in community composition. Significance and Impact of the Study: Physiological alterations of a stable AOB community are possible and may stabilize activated sludge processes. The commonly used FISH probes designed to target all beta-proteobacterial AOB does not detect certain Nitrosomonas oligotropha populations, leading to an underestimation of AOB if a wider set of probes is not used.
    OriginalspråkEngelska
    Sidor (från-till)629-640
    Antal sidor12
    TidskriftJournal of Applied Microbiology
    Volym99
    Nummer3
    DOI
    StatusPublicerad - 2005

    Nyckelord

    • activated sludge
    • ammonia-oxidizing bacteria
    • denaturing gradient gel electrophoresis
    • fluorescence in situ hybridization
    • nitrification
    • nitrogen removal
    • solids retention time

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