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Isotopic evidence for nitrous oxide production pathways in a partial nitritation-anammox reactor
- Source :
- Water research. 83
- Publication Year :
- 2014
-
Abstract
- Nitrous oxide (N2O) production pathways in a single stage, continuously fed partial nitritation-anammox reactor were investigated using online isotopic analysis of offgas N2O with quantum cascade laser absorption spectroscopy (QCLAS). N2O emissions increased when reactor operating conditions were not optimal, for example, high dissolved oxygen concentration. SP measurements indicated that the increase in N2O was due to enhanced nitrifier denitrification, generally related to nitrite build-up in the reactor. The results of this study confirm that process control via online N2O monitoring is an ideal method to detect imbalances in reactor operation and regulate aeration, to ensure optimal reactor conditions and minimise N2O emissions. Under normal operating conditions, the N2O isotopic site preference (SP) was much higher than expected - up to 40‰ - which could not be explained within the current understanding of N2O production pathways. Various targeted experiments were conducted to investigate the characteristics of N2O formation in the reactor. The high SP measurements during both normal operating and experimental conditions could potentially be explained by a number of hypotheses: i) unexpectedly strong heterotrophic N2O reduction, ii) unknown inorganic or anammox-associated N2O production pathway, iii) previous underestimation of SP fractionation during N2O production from NH2OH, or strong variations in SP from this pathway depending on reactor conditions. The second hypothesis - an unknown or incompletely characterised production pathway - was most consistent with results, however the other possibilities cannot be discounted. Further experiments are needed to distinguish between these hypotheses and fully resolve N2O production pathways in PN-anammox systems.
- Subjects :
- Environmental Engineering
Denitrification
Heterotroph
Nitrous Oxide
Fractionation
Waste Disposal, Fluid
Water Purification
chemistry.chemical_compound
Bioreactors
Ammonia
Anaerobiosis
Nitrite
Waste Management and Disposal
Water Science and Technology
Civil and Structural Engineering
Isotope analysis
Nitrogen Isotopes
Ecological Modeling
Spectrum Analysis
Nitrous oxide
Pollution
chemistry
Anammox
Environmental chemistry
Aeration
Lasers, Semiconductor
Oxidation-Reduction
Subjects
Details
- ISSN :
- 18792448
- Volume :
- 83
- Database :
- OpenAIRE
- Journal :
- Water research
- Accession number :
- edsair.doi.dedup.....b24c0c9854fffa3db79bb1bedbc28d7a