Riding Mountain National Park: Total Ecosystem Forest Carbon Density
“Riding Mountain National Park - Total Ecosystem Forest Carbon Density” is the annual carbon density (tonnes carbon per hectare) within Riding Mountain’s forested ecosystems over a 31-year period from 1990 to 2020. Total Ecosystem Forest Carbon Density includes aboveground and belowground biomass, soil carbon, and dead organic matter.
Total Ecosystem Forest Carbon Density was estimated for 31 national parks using the Generic Carbon Budget Model (GCBM), a spatially explicit carbon budget model developed by Canadian Forest Service which uses forest inventory, disturbance, and mean annual temperature data along with yield data to estimate growth and merchantable volume for dominant tree species. Species- and Ecozone-specific equations are then used to convert merchantable volume to aboveground and belowground biomass carbon. Ecozones were classified according to Canada Ecological Land Classification Level 1. The GCBM simulates carbon dynamics to produce spatially explicit estimations of carbon stocks and fluxes. The model simulates and tracks carbon stocks, transfers between Intergovernmental Panel on Climate Change-defined pools, and other metrics including net ecosystem production, net biome production, and emissions of carbon dioxide (CO2), methane (CH4), and nitrous oxide (N2O) in annual time steps. The stocks and fluxes are also tracked by disturbance event (e.g., forest fires, insect outbreaks). Total Ecosystem Forest Carbon Density accounts for the effects of natural and anthropogenic disturbances, including wildfires, prescribed burns, and insect outbreaks.
These products have a spatial resolution of 30m.
This information is part of the Parks Canada Carbon Atlas Series. To obtain a copy of this report, please contact changementclimatique-climatechange@pc.gc.ca.
When using this data, please cite as follows:
Sharma, T., Kurz, W.A., Fellows, M., MacDonald, A.L., Richards, J., Chisholm, C., Seutin, G., Richardson, K., Keenleyside, K. (2023). Parks Canada Carbon Atlas Series: Carbon Dynamics in the Forests of Canada’s National Parks. Scientific Report. Parks Canada Agency, Gatineau, QC, Canada, 104 p.
Simple
- Date ( RI_366 )
- 2020-05-15
- Date ( RI_367 )
- 2023-10-06T09:00:00
- Status
- completed; complété RI_593
- Maintenance and update frequency
- asNeeded; auBesoin RI_540
- Keywords ( RI_528 )
-
- carbon
- greenhouse gas
- GHG
- Keywords ( RI_525 )
-
- Riding Mountain
- Manitoba
- Keywords ( RI_530 )
-
- Generic Carbon Budget Model
- GCBM
- CBM-CFS3
- Carbon Budget Model
- Government of Canada Core Subject Thesaurus Thésaurus des sujets de base du gouvernement du Canada ( RI_528 )
-
- Forests
- National parks
- Terrestrial ecosystems
- Climate change
- Environment
- Use limitation
- Open Government Licence - Canada (http://open.canada.ca/en/open-government-licence-canada)
- Access constraints
- licenseUnrestricted; licenceSansRestriction RI_610
- Use constraints
- licenseUnrestricted; licenceSansRestriction RI_610
- Spatial representation type
- grid; grille RI_636
- Metadata language
- eng; CAN
- Metadata language
- fra; CAN
- Topic category
-
- Environment
- Geoscientific information
- Begin date
- 1990-01-01
- End date
- 2020-12-31
))
- Reference system identifier
- http://www.epsg-registry.org / EPSG:4326 / 6.14(3.0.1)
- Distribution format
-
-
TIFF
(
unknown
)
-
TIFF
(
unknown
)
- OnLine resource
-
Riding Mountain National Park: Total Ecosystem Forest Carbon Density from 1990 to 2020
(
HTTPS
)
Dataset;ZIP;eng,fra
- File identifier
- a61fcd17-c16b-4154-9a60-36a5af5728e1 XML
- Metadata language
- eng; CAN
- Character set
- utf8; utf8 RI_458
- Parent identifier
- Parks Canada Carbon Atlas Series: Total Ecosystem Forest Carbon Density of Canada’s National Parks 366afb76-279d-4de7-9b70-dcd0ce2e7f4a
- Hierarchy level
- dataset; jeuDonnées RI_622
- Date stamp
- 2023-10-27T18:50:29
- Metadata standard name
- North American Profile of ISO 19115:2003 - Geographic information - Metadata
- Metadata standard version
- CAN/CGSB-171.100-2009
Overviews
Spatial extent
))
Provided by
