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Sjögersten, Sofie; van der Wal, René; Loonen, Maarten J J E; Woodin, Sarah J (2011): (Table 1) Carbon pools in different vegetation components in grazed and ungrazed plots near Ny-Ålesund, Spitzbergen [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.837086, Supplement to: Sjögersten, S et al. (2011): Recovery of ecosystem carbon fluxes and storage from herbivory. Biogeochemistry, 106(3), 357-370, https://doi.org/10.1007/s10533-010-9516-4

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Abstract:
The carbon (C) sink strength of arctic tundra is under pressure from increasing populations of arctic breeding geese. In this study we examined how CO2 and CH4 fluxes, plant biomass and soil C responded to the removal of vertebrate herbivores in a high arctic wet moss meadow that has been intensively used by barnacle geese (Branta leucopsis) for ca. 20 years. We used 4 and 9 years old grazing exclosures to investigate the potential for recovery of ecosystem function during the growing season (July 2007). The results show greater above- and below-ground vascular plant biomass within the grazing exclosures with graminoid biomass being most responsive to the removal of herbivory whilst moss biomass remained unchanged. The changes in biomass switched the system from net emission to net uptake of CO2 (0.47 and -0.77 µmol/m**2/s in grazed and exclosure plots, respectively) during the growing season and doubled the C storage in live biomass. In contrast, the treatment had no impact on the CH4 fluxes, the total litter C pool or the soil C concentration. The rapid recovery of the above ground biomass and CO2 fluxes demonstrates the plasticity of this high arctic ecosystem in terms of response to changing herbivore pressure.
Coverage:
Latitude: 78.925000 * Longitude: 11.930000
Date/Time Start: 2007-07-30T00:00:00 * Date/Time End: 2007-07-30T00:00:00
Event(s):
NY-Al * Latitude: 78.925000 * Longitude: 11.930000 * Location: Ny-Ålesund, Spitsbergen
Comment:
Based on C pool data collected at peak biomass in the end of July 2007. Data shown are for grazed (by barnacle geese (Branta leucopsis)) and exclosure plots. Data extracted in the frame of a joint ICSTI/PANGAEA IPY effort, see http://doi.pangaea.de/10.1594/PANGAEA.150150
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1Area/localityAreaSjögersten, Sofie
2DATE/TIMEDate/TimeGeocode
3TreatmentTreatSjögersten, Sofie
4Biomass as carbon per areaBiom Cg/m2Sjögersten, Sofieforbs
5Biomass as carbon, standard deviationBiom C std dev±Sjögersten, Sofieforbs
6Biomass as carbon per areaBiom Cg/m2Sjögersten, Sofiegrasses
7Biomass as carbon, standard deviationBiom C std dev±Sjögersten, Sofiegrasses
8Biomass as carbon per areaBiom Cg/m2Sjögersten, SofieEquisetum
9Biomass as carbon, standard deviationBiom C std dev±Sjögersten, SofieEquisetum
10Biomass as carbon per areaBiom Cg/m2Sjögersten, Sofiedeciduous shrubs
11Biomass as carbon, standard deviationBiom C std dev±Sjögersten, Sofiedeciduous shrubs
12Biomass as carbon per areaBiom Cg/m2Sjögersten, Sofieroots
13Biomass as carbon, standard deviationBiom C std dev±Sjögersten, Sofieroots
14Biomass as carbon per areaBiom Cg/m2Sjögersten, Sofiemoss
15Biomass as carbon, standard deviationBiom C std dev±Sjögersten, Sofiemoss
16Biomass as carbon per areaBiom Cg/m2Sjögersten, Sofietotal vegetation
17Biomass as carbon, standard deviationBiom C std dev±Sjögersten, Sofietotal vegetation
18Biomass as carbon per areaBiom Cg/m2Sjögersten, Sofievascular litter
19Biomass as carbon, standard deviationBiom C std dev±Sjögersten, Sofievascular litter
20Biomass as carbon per areaBiom Cg/m2Sjögersten, Sofiebrown moss tissue, below ground non-photosynthesising
21Biomass as carbon, standard deviationBiom C std dev±Sjögersten, Sofiebrown moss tissue, below ground non-photosynthesising
22Biomass as carbon per areaBiom Cg/m2Sjögersten, Sofietotal litter
23Biomass as carbon, standard deviationBiom C std dev±Sjögersten, Sofietotal litter
Size:
83 data points

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