Optimizing start-up strategies for the two-inflow nitritation/anammox process: Influence on biofilm microbial community composition

Water Sci Technol. 2024 Mar;89(6):1583-1594. doi: 10.2166/wst.2024.065. Epub 2024 Mar 2.

Abstract

Low-energy nitrogen removal from ammonium-rich wastewater is crucial in preserving the water environment. A one-stage nitritation/anammox process with two inflows treating ammonium-containing wastewater, supplied from inside and outside the wound filter, is expected to stably remove nitrogen. Laboratory-scale reactors were operated using different start-up strategies; the first involved adding nitritation inoculum after anammox biomass formation in the filter, which presented a relatively low nitrogen removal rate (0.171 kg N/m3 · d), at a nitrogen loading rate of 1.0 kg N/m3 · d. Conversely, the second involved the gradual cultivation of anammox and nitritation microorganisms, which increased the nitrogen removal rate (0.276 kg N/m3 · d). Furthermore, anammox (Candidatus Brocadia) and nitritation bacteria (Nitrosomonadaceae) coexisted in the biofilm formed on the filter surface. The abundance of nitritation bacteria (10.5%) in the reactor biofilm using the second start-up strategy was higher than that using the first (3.7%). Thus, the two-inflow nitritation/anammox process effectively induced habitat segregation using a suitable start-up strategy.

Keywords: Candidatus Brocadia; Nitrosomonadaceae; biofilm; habitat segregation; one-stage nitritation/anammox process.

MeSH terms

  • Ammonium Compounds*
  • Anaerobic Ammonia Oxidation
  • Bacteria
  • Biofilms
  • Bioreactors / microbiology
  • Denitrification
  • Microbiota*
  • Nitrogen
  • Oxidation-Reduction
  • Sewage
  • Wastewater

Substances

  • Wastewater
  • Ammonium Compounds
  • Nitrogen
  • Sewage