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Cross-scale controls on carbon emissions from boreal forest megafires
Xanthe J. Walker
, Brendan M. Rogers
, Jennifer L. Baltzer
, Steven G. Cumming
, Nicola J. Day
,
Scott J. Goetz
, Jill F. Johnstone
,
Edward A.G. Schuur
, Merritt R. Turetsky
,
Michelle C. Mack
Biological Sciences
Ecosystem, Science, and Society, Center for
Informatics, Computing, and Cyber Systems, School of
Research output
:
Contribution to journal
›
Article
›
peer-review
91
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Scopus citations
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Dive into the research topics of 'Cross-scale controls on carbon emissions from boreal forest megafires'. Together they form a unique fingerprint.
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Keyphrases
Accurately Model
25%
Area Burned
25%
Black Spruce
50%
Boreal Forest
100%
Burned Area
50%
C Balance
25%
C Emissions
100%
Canada
50%
Carbon C
25%
Carbon Emissions
100%
Climate Drying
25%
Climate Feedback
25%
Climate Warming
50%
Combustion
75%
Combustion Emissions
25%
Continental Scale
25%
Extreme Fire Weather
25%
Field Plot
25%
Fire Regime
25%
Fire Weather
25%
Future Climate
25%
High Spatial Resolution
25%
Jack pine
25%
Landscape Position
25%
Megafire
100%
Net Ecosystem Production
25%
North America
25%
Northwest Territories
50%
Picea Mariana
25%
Pinus Banksiana
25%
Scale Control
100%
Small Water Bodies
25%
Soil Organic Layer
50%
Spatial Heterogeneity
25%
Specific Calibration
25%
Spruce Stands
25%
Terrestrial Ecosystems
25%
Wildfire Disturbance
25%
Agricultural and Biological Sciences
Americans
25%
Annuals
25%
Body Water
25%
Boreal Forest
100%
Field Plots
25%
Fire Regime
25%
Fire Weather
50%
Jack Pine
50%
Landscape Position
25%
Net Ecosystem Production
25%
Organic Soil
50%
Picea mariana
75%
Terrestrial Ecosystem
25%
Earth and Planetary Sciences
Boreal Forest
100%
Canada
25%
Carbon Dioxide Emission
100%
Emissions
100%
Field Plots
12%
High Spatial Resolution
12%
Net Ecosystem Production
12%
Northwest Territory
25%
Organic Soil
25%
Terrestrial Ecosystem
12%
Water Body
12%