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HIMMELI v1.0: HelsinkI Model of MEthane buiLd-up and emIssion for peatlands

dc.contributor.authorRaivonen, Maarit
dc.contributor.authorSmolander, Sampo
dc.contributor.authorBackman, Leif
dc.contributor.authorSusiluoto, Jouni
dc.contributor.authorAalto, Tuula
dc.contributor.authorMarkkanen, Tiina
dc.contributor.authorMäkelä, Jarmo
dc.contributor.authorRinne, Janne
dc.contributor.authorPeltola, Olli
dc.contributor.authorAurela, Mika
dc.contributor.authorLohila, Annalea
dc.contributor.authorTomasic, Marin
dc.contributor.authorLi, Xuefei
dc.contributor.authorLarmola, Tuula
dc.contributor.authorJuutinen, Sari
dc.contributor.authorTuittila, Eeva-Stiina
dc.contributor.authorHeimann, Martin
dc.contributor.authorSevanto, Sanna
dc.contributor.authorKleinen, Thomas
dc.contributor.authorBrovkin, Victor
dc.contributor.authorVesala, Tuni
dc.contributor.departmentLuke / Luonnonvarat ja biotuotanto / Ympäristövaikutukset / Maaperä ekosysteeminä (4100100414)-
dc.contributor.departmentid4100100414-
dc.contributor.otherDivision of Atmospheric Sciences, Department of Physics, University of Helsinki-
dc.contributor.otherPrinceton Environmental Institute, Guyot Hall, Princeton University-
dc.contributor.otherClimate research, Finnish Meteorological Institute-
dc.contributor.otherLappeenranta University of Technology, School of Science-
dc.contributor.otherDepartment of Physical Geography and Ecosystem Science, Lund University-
dc.contributor.otherDepartment of Environmental Sciences, University of Helsinki-
dc.contributor.otherSchool of Forest Sciences, University of Eastern Finland-
dc.contributor.otherMax Planck Institute for Biogeochemistry-
dc.contributor.otherEarth and Environmental Sciences Division, Los Alamos National Laboratory-
dc.contributor.otherMax Planck Institute for Meteorology-
dc.contributor.otherDepartment of Forest Sciences, University of Helsinki-
dc.date.accessioned2018-01-10T07:02:45Z
dc.date.accessioned2025-05-29T01:13:44Z
dc.date.available2018-01-10T07:02:45Z
dc.date.issued2017
dc.description.abstractWetlands are one of the most significant natural sources of methane (CH4/ to the atmosphere. They emit CH4 because decomposition of soil organic matter in waterlogged anoxic conditions produces CH4, in addition to carbon dioxide (CO2/. Production of CH4 and how much of it escapes to the atmosphere depend on a multitude of environmental drivers. Models simulating the processes leading to CH4 emissions are thus needed for upscaling observations to estimate present CH4 emissions and for producing scenarios of future atmospheric CH4 concentrations. Aiming at a CH4 model that can be added to models describing peatland carbon cycling, we composed a model called HIMMELI that describes CH4 build-up in and emissions from peatland soils. It is not a full peatland carbon cycle model but it requires the rate of anoxic soil respiration as input. Driven by soil temperature, leaf area index (LAI) of aerenchymatous peatland vegetation, and water table depth (WTD), it simulates the concentrations and transport of CH4, CO2, and oxygen (O2/ in a layered one-dimensional peat column. Here, we present the HIMMELI model structure and results of tests on the model sensitivity to the input data and to the description of the peat column (peat depth and layer thickness), and demonstrate that HIMMELI outputs realistic fluxes by comparing modeled and measured fluxes at two peatland sites. As HIMMELI describes only the CH4-related processes, not the full carbon cycle, our analysis revealed mechanisms and dependencies that may remain hidden when testing CH4 models connected to complete peatland carbon models, which is usually the case. Our results indicated that (1) the model is flexible and robust and thus suitable for different environments; (2) the simulated CH4 emissions largely depend on the prescribed rate of anoxic respiration; (3) the sensitivity of the total CH4 emission to other input variables is mainly mediated via the concentrations of dissolved gases, in particular, the O2 concentrations that affect the CH4 production and oxidation rates; (4) with given input respiration, the peat column description does not significantly affect the simulated CH4 emissions in this model version.-
dc.description.vuosik2017-
dc.formatVerkkojulkaisu-
dc.format.bitstreamfalse
dc.format.pagerange4665-4691-
dc.identifier.olddbid483342
dc.identifier.oldhandle10024/541146
dc.identifier.urihttps://jukuri.luke.fi/handle/11111/51226
dc.language.isoeng-
dc.okm.corporatecopublicationei-
dc.okm.discipline1172 Ympäristötiede-
dc.okm.discipline4112 Metsätiede-
dc.okm.discipline415 Muut maataloustieteet-
dc.okm.internationalcopublicationon-
dc.okm.openaccess1 = Open access -julkaisukanavassa ilmestynyt julkaisu-
dc.okm.selfarchivedei-
dc.publisherEuropean Geosciences Union, EGU-
dc.relation.doidoi:10.5194/gmd-10-4665-2017-
dc.relation.ispartofseriesGeoscientific Model Development-
dc.relation.numberinseries12-
dc.relation.volume10-
dc.source.identifierhttps://jukuri.luke.fi/handle/10024/541146
dc.teh41007-00041300-
dc.teh41007-00041400-
dc.titleHIMMELI v1.0: HelsinkI Model of MEthane buiLd-up and emIssion for peatlands-
dc.type.okmfi=A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä|sv=A1 Originalartikel i en vetenskaplig tidskrift|en=A1 Journal article (refereed), original research|-

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