Sensitivity analysis of a biofilm model describing a one‐stage completely autotrophic nitrogen removal (CANON) process
- 6 December 2001
- journal article
- Published by Wiley in Biotechnology & Bioengineering
- Vol. 77 (3) , 266-277
- https://doi.org/10.1002/bit.10105
Abstract
A mathematical model for nitrification and anaerobic ammonium oxidation (ANAMMOX) processes in a single biofilm reactor (CANON) was developed. This model describes completely autotrophic conversion of ammonium to dinitrogen gas. Aerobic ammonium and nitrite oxidation were modeled together with ANAMMOX. The sensitivity of kinetic constants and biofilm and process parameters to the process performance was evaluated, and the total effluent concentrations were, in general, found to be insensitive to affinity constants. Increasing the amount of biomass by either increasing biofilm thickness and density or decreasing porosity had no significant influence on the total effluent concentrations, provided that a minimum total biomass was present in the reactor. The ANAMMOX process always occurred in the depth of the biofilm provided that the oxygen concentration was limiting. The optimal dissolved oxygen concentration level at which the maximum nitrogen removal occurred is related to a certain ammonium surface load on the biofilm. An ammonium surface load of 2 g N/m2. d, associated with a dissolved oxygen concentration level of 1.3 g O2/m3 in the bulk liquid and with a minimum biofilm depth of 1 mm seems a proper design condition for the one-stage ammonium removal process. Under this condition, the ammonium removal efficiency is 94% (82% for the total nitrogen removal efficiency) (30 degrees C). Better ammonium removal could be achieved with an increase in the dissolved oxygen concentration level, but this would strongly limit the ANAMMOX process and decrease total nitrogen removal. It can be concluded that a one-stage process is probably not optimal if a good nitrogen effluent is required. A two-stage process like the combined SHARON and ANAMMOX process would be advised for complete nitrogen removal.Keywords
This publication has 23 references indexed in Scilit:
- Model Based Design of a Novel Process for Nitrogen Removal from Concentrated FlowsMathematical and Computer Modelling of Dynamical Systems, 1999
- Activated Sludge Model No.2d, ASM2dWater Science & Technology, 1999
- Nitrogen loss in a nitrifying biofilm systemWater Science & Technology, 1999
- Nitrogen removal using nitrifying biofilm growth and denitrifying suspended growth in a biofilm airlift suspension reactor coupled with a chemostatWater Research, 1998
- Simultaneous nitrification/denitrification in an aerobic biofilm systemWater Science & Technology, 1998
- The anaerobic oxidation of hydrazine: a novel reaction in microbial nitrogen metabolismFEMS Microbiology Letters, 1998
- Nitrogen loss in a nitrifying rotating contactor treating ammonium-rich wastewater without organic carbonWater Science & Technology, 1998
- Aerobic deammonification: A new experience in the treatment of wastewatersWater Science & Technology, 1997
- Modelling the effect of oxygen concentration on nitrite accumulation in a biofilm airlift suspension reactorWater Science & Technology, 1997
- Biological nitrogen removal from wastewaterPublished by Springer Nature ,1994