Hink, LindaLycus, PawelGubry-Rangin, CécileFrostegård, ÅsaNicol, Graeme W.Prosser, James I.Bakken, Lars R.2018-09-202018-09-202017-12Hink, L, Lycus, P, Gubry-Rangin, C, Frostegård, Å, Nicol, G W, Prosser, J I & Bakken, L R 2017, 'Kinetics of NH 3 -oxidation, NO-turnover, N 2 O-production and electron flow during oxygen depletion in model bacterial and archaeal ammonia oxidisers', Environmental Microbiology, vol. 19, no. 12, pp. 4882-4896. https://doi.org/10.1111/1462-2920.139141462-2920RIS: urn:A2666785408552E53F9EB2AC979D39C3ORCID: /0000-0002-5937-2496/work/161309443http://hdl.handle.net/2164/11144The authors are members of the Nitrous Oxide Research Alliance (NORA), a Marie Skłodowska-Curie ITN and research project under the EU's seventh framework program (FP7), 316472. GN is funded by the AXA Research Fund and CGR by a Royal Society fellowship. We thank Lars Molstad and Peter Dörsch for their generous and invaluable technical assistance. We thank Martin G Klotz for a very constructive review of our paper, and especially for pointing out the possible electron dissipation via periplasmic cytochromes, thus providing a possible explanation for the high N2O at high ammonium concentrations.15887236engQH301 BiologyQH301Kinetics of NH3-oxidation, NO-turnover, N2O-production and electron flow during oxygen depletion in model bacterial and archaeal ammonia oxidisersJournal article10.1111/1462-2920.139141912