Jeffrey A Hicke
Biographic Data
| ID | 1949529 |
|---|---|
| NAME | Jeffrey A Hicke |
| GIVEN NAMES | Jeffrey A |
| FAMILY NAME | Hicke |
| SIGNATURE | HICKE J A |
| AFFILIATIONS | University of Idaho |
| ORCID | 0000-0003-0494-2866 |
| VERIFIED | Yes |
| TOTAL WORKS | 4 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 4 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2012 |
| LATEST PUBLICATION YEAR | 2020 |
| H-INDEX | 0 |
Climate-driven risks to the climate mitigation potential of forests
Risks to mitigation potential of forests Much recent attention has focused on the potential of trees and forests to mitigate ongoing climate change by acting as sinks for carbon. Anderegg et al. review the growing evidence that forests' climate mitigation potential is increasingly at risk from a range of adversities that limit forest growth and health. These include physical factors such as drought and fire and biotic factors, including the depre…
Tree mortality from fires, bark beetles, and timber harvest during a hot and dry decade in the western United States (2003–2012)
High temperatures and severe drought contributed to extensive tree mortality from fires and bark beetles during the 2000s in parts of the western continental United States. Several states in this region have greenhouse gas (GHG) emission targets and would benefit from information on the amount of carbon stored in tree biomass killed by disturbance. We quantified mean annual tree mortality from fires, bark beetles, and timber harvest from 2003–201…
Carbon stocks of trees killed by bark beetles and wildfire in the western United States
Forests are major components of the carbon cycle, and disturbances are important influences of forest carbon. Our objective was to contribute to the understanding of forest carbon cycling by quantifying the amount of carbon in trees killed by two disturbance types, fires and bark beetles, in the western United States in recent decades. We combined existing spatial data sets of forest biomass, burn severity, and beetle-caused tree mortality to est…
Landscape-scale analysis of aboveground tree carbon stocks affected by mountain pine beetles in Idaho
Bark beetle outbreaks kill billions of trees in western North America, and the resulting tree mortality can significantly impact local and regional carbon cycling. However, substantial variability in mortality occurs within outbreak areas. Our objective was to quantify landscape-scale effects of beetle infestations on aboveground carbon (AGC) stocks using field observations and remotely sensed data across a 5054 ha study area that had experienced…
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Landscape-scale analysis of aboveground tree carbon stocks affected by mountain pine beetles in Idaho
Bark beetle outbreaks kill billions of trees in western North America, and the resulting tree mortality can significantly impact local and regional carbon cycling. However, substantial variability in mortality occurs within outbreak areas. Our objective was to quantify landscape-scale effects of beetle infestations on aboveground carbon (AGC) stocks using field observations and remotely sensed data across a 5054 ha study area that had experienced…
Carbon stocks of trees killed by bark beetles and wildfire in the western United States
Forests are major components of the carbon cycle, and disturbances are important influences of forest carbon. Our objective was to contribute to the understanding of forest carbon cycling by quantifying the amount of carbon in trees killed by two disturbance types, fires and bark beetles, in the western United States in recent decades. We combined existing spatial data sets of forest biomass, burn severity, and beetle-caused tree mortality to est…
Tree mortality from fires, bark beetles, and timber harvest during a hot and dry decade in the western United States (2003–2012)
High temperatures and severe drought contributed to extensive tree mortality from fires and bark beetles during the 2000s in parts of the western continental United States. Several states in this region have greenhouse gas (GHG) emission targets and would benefit from information on the amount of carbon stored in tree biomass killed by disturbance. We quantified mean annual tree mortality from fires, bark beetles, and timber harvest from 2003–201…
Climate-driven risks to the climate mitigation potential of forests
Risks to mitigation potential of forests Much recent attention has focused on the potential of trees and forests to mitigate ongoing climate change by acting as sinks for carbon. Anderegg et al. review the growing evidence that forests' climate mitigation potential is increasingly at risk from a range of adversities that limit forest growth and health. These include physical factors such as drought and fire and biotic factors, including the depre…
Biology (4 works) · Climate change (4 works) · Environmental Science (4 works) · Fire effects on ecosystems (4 works) · Forest Insect Ecology and Management (4 works) · Forest Management and Policy (4 works) · Bark (sound (3 works) · Carbon stock (3 works) · Ecology (3 works) · Forestry (3 works)