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Global change could amplify fire effects on soil greenhouse gas emissions
Audrey Niboyet
, Jamie R. Brown
,
Paul Dijkstra
, Joseph C. Blankinship
, Paul W. Leadley
, Xavier Roux
, Laure Barthes
, Romain L. Barnard
, Christopher B. Field
, Bruce A. Hungate
Biological Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
42
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Scopus citations
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Dive into the research topics of 'Global change could amplify fire effects on soil greenhouse gas emissions'. Together they form a unique fingerprint.
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Keyphrases
N2O Emission
100%
Fire Effects
100%
Global Change
100%
Soil Greenhouse Gas Emissions
100%
Ecosystem Function
66%
Elevated CO2
66%
Global Environmental Change
66%
Fire Disturbance
66%
Ecological Disturbance
66%
Combined Impact
66%
Nitrogen Supply
66%
Interactive Effects
33%
Ecosystem Processes
33%
Climate Change
33%
Soil Moisture
33%
Wildfire
33%
Soil Nitrogen Availability
33%
CO2 Concentration
33%
Grassland Ecosystem
33%
Nitrification
33%
Main Drivers
33%
Low Severity
33%
N2O Production
33%
Denitrification
33%
Soil Emissions
33%
Greenhouse Gas Emissions
33%
Global Change Experiment
33%
Microbial Processes
33%
Soil N2O
33%
Soil Nitrous Oxide
33%
Microbial Denitrification
33%
Nitrous Oxide (N2O) Emission
33%
Combined Influence
33%
Soil Carbon Availability
33%
Earth and Planetary Sciences
Emissions
100%
Nitrous Oxide
100%
Global Change
100%
Greenhouse Gas Emission
100%
Global Environmental Change
40%
Denitrification
40%
Climate Change
20%
Soil Moisture
20%
Soil Carbon
20%
Greenhouse Gas
20%
Grassland Ecosystem
20%
Nitrification
20%
Soil Emission
20%
Nitrous Oxide
20%
Feedback
20%
Agricultural and Biological Sciences
Global Change
100%
Greenhouse Gas
100%
Denitrification
50%
Soil Moisture
25%
Grassland
25%
Feeds
25%
Climate Change
25%
Soil Carbon
25%
Nitrification
25%