Assessing the carbon balance of circumpolar Arctic tundra using remote sensing and process modeling.
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Summary
This paper reviews the current status of using remote sensing and process-based modeling approaches to assess the contemporary and future circumpolar carbon balance of Arctic tundra, including the exchange of both carbon dioxide and methane with the atmosphere, and indicates that ArcticTundra will be a small sink for carbon over the next century.
- Type
- article
- Published
- 2007-01-01
- Cited by
- 133
- References
- 139
- OpenAlex
- https://openalex.org/W17479847
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:8958666
Keywords
Computer science
References
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- Using earth observation data to evaluate a land surface model in three Siberian catchments
- Climate Change Implications to Vegetation Production in Alaska
- Evidence and Implications of Frequent Fires in Ancient Shrub Tundra
- Contrasting sensitivity to extreme winter warming events of dominant sub‐Arctic heathland bryophyte and lichen species
- Monitoring Ecosystem Dynamics In An Arctic Tundra Ecosystem Using Hyperspectral Reflectance And A Robotic Tram System
- C–N–P interactions control climate driven changes in regional patterns of C storage on the North Slope of Alaska
- Aircraft‐derived regional scale CO2 fluxes from vegetated drained thaw‐lake basins and interstitial tundra on the Arctic Coastal Plain of Alaska
- Net ecosystem exchange of CO2 with rapidly changing high Arctic landscapes
- Permafrost degradation stimulates carbon loss from experimentally warmed tundra.
- Longer growing seasons do not increase net carbon uptake in the northeastern Siberian tundra
- Evaluation of the terrestrial carbon cycle, future plant geography and climate‐carbon cycle feedbacks using five Dynamic Global Vegetation Models (DGVMs)
- Interactions among shrub cover and the soil microclimate may determine future Arctic carbon budgets.
- Variability of tundra fire regimes in Arctic Alaska: millennial‐scale patterns and ecological implications
- Emission estimates of particulate matter (PM) and trace gases (SO2, NO and NO2) from biomass fuels used in rural sector of Indo-Gangetic Plain, India.
- Greening the terrestrial biosphere: simulated feedbacks on atmospheric heat and energy circulation
- Global climate change and its impacts on the terrestrial Arctic carbon cycle with special regards to ecosystem components and the greenhouse‐gas balance
- Carbon budget estimation of a subarctic catchment using a dynamic ecosystem model at high spatial resolution
- Environmental correlates of peatland carbon fluxes in a thawing landscape: do transitional thaw stages matter?
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