Nitrous oxide dynamic in sea ice

Fluctuations in greenhouse gases (GHGs) concentration alter the energetic budget of the climate system. There is high confidence that natural systems related to snow, ice and frozen ground are affected. Nitrous oxide (N2O) is one of the potent GHG naturally present in the atmosphere, but witch has s...

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Main Authors: Kotovitch, Marie, Fripiat, François, Deman, Florian, Van der Linden, Fanny, Tison, Jean-Louis, Delille, Bruno
Other Authors: FOCUS - Freshwater and OCeanic science Unit of reSearch - ULiège
Format: Conference Object
Language:English
Published: 2017
Subjects:
Online Access:https://orbi.uliege.be/handle/2268/210233
id ftorbi:oai:orbi.ulg.ac.be:2268/210233
record_format openpolar
spelling ftorbi:oai:orbi.ulg.ac.be:2268/210233 2024-10-20T14:03:35+00:00 Nitrous oxide dynamic in sea ice La dynamique du N2O dans la glace de mer Kotovitch, Marie Fripiat, François Deman, Florian Van der Linden, Fanny Tison, Jean-Louis Delille, Bruno FOCUS - Freshwater and OCeanic science Unit of reSearch - ULiège 2017 https://orbi.uliege.be/handle/2268/210233 en eng https://orbi.uliege.be/handle/2268/210233 info:hdl:2268/210233 Gordon Research Conference in Polar Marine Science, Ventura, United States - California [US-CA], du 26 mars 2017 au 31 mars 2017 Sea Ice Nitrous Oxide Isotopes Life sciences Aquatic sciences & oceanology Sciences du vivant Sciences aquatiques & océanologie conference poster not in proceedings http://purl.org/coar/resource_type/c_18co info:eu-repo/semantics/conferencePoster 2017 ftorbi 2024-09-27T07:01:37Z Fluctuations in greenhouse gases (GHGs) concentration alter the energetic budget of the climate system. There is high confidence that natural systems related to snow, ice and frozen ground are affected. Nitrous oxide (N2O) is one of the potent GHG naturally present in the atmosphere, but witch has seen his concentration growing since industrial era. N2O has a lifetime in the atmosphere of 114 years and a global warming potential 300 time higher than that of CO2. Yet, there are still large uncertainties and gaps in the understanding of the cycle of this compound through the ocean and particularly in sea ice. Sources and sinks of N2O are therefore still poorly quantified. The main processes (except the transport processes) involved in the N2O cycle within the aquatic environment are nitrification and denitrification. To date, only one study by Randall et al. 2012 present N2O measurements in sea ice. Randall et al. pointed out that sea ice formation and melt has the potential to generate sea-air or air-sea fluxes of N2O, respectively. Study on ammonium oxidation and anaerobic bacterial cultures shows that N2O production can potentially occur in sea ice. Denitrification can act as a sink or a source of N2O. In strictly anaerobic conditions, N2O is removed by denitrification. However, denitrification can also occur in presence of O2 at trace level concentrations (<0.2 mg L-1), and in these conditions there is a large N2O production. Recent observations of significant nitrification in Antarctic sea ice shed a new light on nitrogen cycle within sea ice. It has been suggested that nitrification supplies up to 70% of nitrate assimilated within Antarctic spring sea ice. Corollary, production of N2O, a by-product of nitrification, can potentially be significant. This was recently confirmed in Antarctic land fast ice in McMurdo Sound, where N2O release to the atmosphere was estimated to 4 µmol.m-2.yr-1. This assessment is probably an underestimate since it only accounts for dissolved N2O while a significant amount of N2O ... Conference Object Antarc* Antarctic McMurdo Sound Sea ice University of Liège: ORBi (Open Repository and Bibliography) Antarctic McMurdo Sound Randall ENVELOPE(167.667,167.667,-72.800,-72.800)
institution Open Polar
collection University of Liège: ORBi (Open Repository and Bibliography)
op_collection_id ftorbi
language English
topic Sea Ice
Nitrous Oxide
Isotopes
Life sciences
Aquatic sciences & oceanology
Sciences du vivant
Sciences aquatiques & océanologie
spellingShingle Sea Ice
Nitrous Oxide
Isotopes
Life sciences
Aquatic sciences & oceanology
Sciences du vivant
Sciences aquatiques & océanologie
Kotovitch, Marie
Fripiat, François
Deman, Florian
Van der Linden, Fanny
Tison, Jean-Louis
Delille, Bruno
Nitrous oxide dynamic in sea ice
topic_facet Sea Ice
Nitrous Oxide
Isotopes
Life sciences
Aquatic sciences & oceanology
Sciences du vivant
Sciences aquatiques & océanologie
description Fluctuations in greenhouse gases (GHGs) concentration alter the energetic budget of the climate system. There is high confidence that natural systems related to snow, ice and frozen ground are affected. Nitrous oxide (N2O) is one of the potent GHG naturally present in the atmosphere, but witch has seen his concentration growing since industrial era. N2O has a lifetime in the atmosphere of 114 years and a global warming potential 300 time higher than that of CO2. Yet, there are still large uncertainties and gaps in the understanding of the cycle of this compound through the ocean and particularly in sea ice. Sources and sinks of N2O are therefore still poorly quantified. The main processes (except the transport processes) involved in the N2O cycle within the aquatic environment are nitrification and denitrification. To date, only one study by Randall et al. 2012 present N2O measurements in sea ice. Randall et al. pointed out that sea ice formation and melt has the potential to generate sea-air or air-sea fluxes of N2O, respectively. Study on ammonium oxidation and anaerobic bacterial cultures shows that N2O production can potentially occur in sea ice. Denitrification can act as a sink or a source of N2O. In strictly anaerobic conditions, N2O is removed by denitrification. However, denitrification can also occur in presence of O2 at trace level concentrations (<0.2 mg L-1), and in these conditions there is a large N2O production. Recent observations of significant nitrification in Antarctic sea ice shed a new light on nitrogen cycle within sea ice. It has been suggested that nitrification supplies up to 70% of nitrate assimilated within Antarctic spring sea ice. Corollary, production of N2O, a by-product of nitrification, can potentially be significant. This was recently confirmed in Antarctic land fast ice in McMurdo Sound, where N2O release to the atmosphere was estimated to 4 µmol.m-2.yr-1. This assessment is probably an underestimate since it only accounts for dissolved N2O while a significant amount of N2O ...
author2 FOCUS - Freshwater and OCeanic science Unit of reSearch - ULiège
format Conference Object
author Kotovitch, Marie
Fripiat, François
Deman, Florian
Van der Linden, Fanny
Tison, Jean-Louis
Delille, Bruno
author_facet Kotovitch, Marie
Fripiat, François
Deman, Florian
Van der Linden, Fanny
Tison, Jean-Louis
Delille, Bruno
author_sort Kotovitch, Marie
title Nitrous oxide dynamic in sea ice
title_short Nitrous oxide dynamic in sea ice
title_full Nitrous oxide dynamic in sea ice
title_fullStr Nitrous oxide dynamic in sea ice
title_full_unstemmed Nitrous oxide dynamic in sea ice
title_sort nitrous oxide dynamic in sea ice
publishDate 2017
url https://orbi.uliege.be/handle/2268/210233
long_lat ENVELOPE(167.667,167.667,-72.800,-72.800)
geographic Antarctic
McMurdo Sound
Randall
geographic_facet Antarctic
McMurdo Sound
Randall
genre Antarc*
Antarctic
McMurdo Sound
Sea ice
genre_facet Antarc*
Antarctic
McMurdo Sound
Sea ice
op_source Gordon Research Conference in Polar Marine Science, Ventura, United States - California [US-CA], du 26 mars 2017 au 31 mars 2017
op_relation https://orbi.uliege.be/handle/2268/210233
info:hdl:2268/210233
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