Water Science & Technology · 2007 · 336 citations · 10 references
Deammonification short‑cuts the nitrogen cycle by oxidising about half the ammonia to nitrite, then anaerobically converting residual ammonia and nitrite to elemental nitrogen. The pH‑controlled DEMON® process was implemented in a single‑sludge SBR at WWTP Strass, with biomass enrichment and start‑up taking 2.5 years, while transfer of seed sludge shortened start‑up at WWTP Glarnerland to 50 days, enabling energy self‑sufficiency. The DEMON® process achieved energy self‑sufficiency, reduced specific energy demand to 1.16 kWh kg⁻¹ NH₄⁺‑N (vs. 6.5 kWh for mainstream), and operated full‑scale for nearly 3 years with annual ammonia removal rates exceeding 90%.
Deammonification represents a short-cut in the N-metabolism pathway and comprises 2 steps: about half the amount of ammonia is oxidised to nitrite and then residual ammonia and nitrite is anaerobically transformed to elementary nitrogen. Implementation of the pH-controlled DEMON® process for deammonification of reject water in a single-sludge SBR system at the WWTP Strass (Austria) contributed essentially to energy self-sufficiency of the plant. The specific energy demand of the side-stream process equals 1.16 kWh per kg ammonia nitrogen removed comparing to about 6.5 kWh of mainstream treatment. Has this resource saving technology already approached state of the art? Deammonification has been operated in full-scale now for almost 3 years without interruption reaching annual ammonia removal rates beyond 90%. Biomass enrichment and DEMON-start-up in Strass took a period of 2.5 years whereas start-up period at the WWTP Glarnerland (Switzerland) was reduced to 50 days due to transfer of substantial amounts of seed sludge.
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Missing lithotroph identified as new planctomycete
Marc Strous, John A. Fuerst, Evelien H. M. Kramer et al. · Nature · 1999 · 1.6K citations
Key Physiology of Anaerobic Ammonium Oxidation
Marc Strous, J. Gijs Kuenen, Mike S. M. Jetten · Applied and Environmental Microbiology · 1999 · 1.4K citations · Full text