4.8 Article

Anammox Growth on Pretreated Municipal Wastewater

Journal

ENVIRONMENTAL SCIENCE & TECHNOLOGY
Volume 48, Issue 14, Pages 7874-7880

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/es500632k

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Funding

  1. KRW grant (European Union Water Framework Directive) [KRW09035]
  2. STOWA (Foundation for Applied Water Research, The Netherlands)

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Autotrophic nitrogen removal from municipal wastewater enables development of energy autarkic wastewater treatment plants. In this study we report the evaluation of the anammox process in a granular sludge fluidized bed lab-scale reactor continuously fed with the actual effluent of the A-stage of the WWTP of Dokhaven, Rotterdam. The reactor was anoxic, and nitrite was dosed continuously to support anammox activity only. The system was operated for more than ten months at temperatures between 20 and 10 degrees C. COD was also consumed during the process, but heterotrophs could not outcompete anammox bacteria. Volumetric N-removal rates obtained were comparable or higher than those of conventional N-removal systems, with values higher than 0.4 g-N L-1 d(-1) when operated at 10 degrees C. The biomass specific N-removal rate at 10 degrees C was on average 50 +/- 7 mg-N g-VSS-1 d(-1) during the last month of operations, almost two times higher than previously reported activities at this temperature. FISH analysis revealed that the dominant anammox species was Candidatus Brocadia Fulgida throughout the experimentation. Evidence for growth of anammox bacteria at mainstream conditions was demonstrated for the entire temperature range tested (10-20 degrees C), and new granules were shown to be actively formed and efficiently retained in the system.

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