Operational boundaries for nitrite accumulation in nitrification based on minimum/maximum substrate concentrations that include effects of oxygen limitation, pH, and free ammonia and free nitrous acid inhibition.
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Summary
A generalized conclusion is that having pH approximately 8 is favorable in many situations, in which the effluent concentrations of total nitrite and total ammonium should be approximately equal.
- Type
- article
- Published
- 2010-01-01
- Cited by
- 126
- References
- 26
- OpenAlex
- https://openalex.org/W2013757287
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:19427659
Keywords
Nitrite, Chemistry, Nitrous acid, Anammox, Ammonium
References
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- Nitrite reduction by a mixed cultureunder conditions relevant to shortcut biologicalnitrogen removal
- Evaluation of the SHARON process (partial nitritation in a chemostat): using simulation
- KINETICS OF THE NITRITE OXIDATION BY NITROBACTER WINOGRADSKYI
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- Modeling and simulation of oxygen‐limited partial nitritation in a membrane‐assisted bioreactor (MBR)
- Empirical model of the pH dependence of the maximum specific nitrification rate
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- Partial nitrification of high ammonia concentration wastewater as a part of a shortcut biological nitrogen removal process
- A structured model of dual‐limitation kinetics
- Influence of dissolved oxygen concentration on nitrite accumulation in a biofilm airlift suspension reactor.
- Operation of suspended-growth shortcut biological nitrogen removal (SSBNR) based on the minimum/maximum substrate concentration.
- Towards a more sustainable municipal wastewater treatment system
- Partial nitrification to nitrite using low dissolved oxygen concentration as the main selection factor
- Comparison of Reject Water Treatment with Nitrification/Denitrification via Nitrite in SBR and Sharon Chemostat Process
- Long-term stability of partial nitritation of swine wastewater digester liquor and its subsequent treatment by Anammox.
- Prediction of the optimum pH for ammonia-n oxidation by nitrosomonas Europaea in well-aerated natural and domestic-waste waters
- Nitrification with high nitrite accumulation for the treatment of wastewater with high ammonia concentration.
Cited by
- A model for determination of operational conditions for successful shortcut nitrification
- Toward energy-neutral wastewater treatment: A membrane combined process of anaerobic digestion and nitritation–anammox for biogas recovery and nitrogen removal
- Strategies for recovering inhibition caused by phenolic compounds in a short-cut nitrogen removal reactor treating coal gasification wastewater
- Coupling Nitrogen Removal and Anaerobic Digestion for Energy Recovery from Swine Waste Through Nitrification/Denitrification
- Partial nitrification in a sequencing batch reactor treating acrylic fiber wastewater
- Anaerobic-aerobic treatment of swine wastewater in uasb and batch reactors in series
- Multi‐species nitrifying biofilm model (MSNBM) including free ammonia and free nitrous acid inhibition and oxygen limitation
- Influence of physicochemical and operational parameters on Nitrobacter and Nitrospira communities in an aerobic activated sludge bioreactor.
- Metabolic properties of a mixed culture of aerobic ammonia oxidizers and its optimal reaction conditions.
- Effect of alkalinity on nitrite accumulation in treatment of coal chemical industry wastewater using moving bed biofilm reactor.
- Enhanced nitrification at short hydraulic retention time using a 3-stage biological aerated filter system incorporating an organic polishing reactor
- Long-term partial nitrification in an intermittently aerated sequencing batch reactor (SBR) treating ammonium-rich wastewater under controlled oxygen-limited conditions
- Start up partial nitrification at low temperature with a real-time control strategy based on blower frequency and pH.
- A Feasible Biofilter Media Moisture Sensor
- Achieving nitritation at low temperatures using free ammonia inhibition on Nitrobacter and real-time control in an SBR treating landfill leachate.
- Operation of suspended-growth shortcut biological nitrogen removal (SSBNR) based on the minimum/maximum substrate concentration.
- Coupling the treatment of low strength anaerobic effluent with fermented biowaste for nutrient removal via nitrite.
- Partial nitrification/denitrification can be attributed to the slow response of nitrite oxidizing bacteria to periodic anoxic disturbances.
- The role of nitrite and free nitrous acid (FNA) in wastewater treatment plants.
- Population dynamics of nitrifying bacteria for nitritation achieved in Johannesburg (JHB) process treating municipal wastewater.
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