Forests and Climate Change: Forcings, Feedbacks, and the Climate Benefits of Forests
Леса и изменение климата: воздействия, обратные связи и климатические преимущества лесов
2008-06-12
SCID: 54.1/vs9cu773
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albedo effectsbiogeophysical feedbackscarbon sequestrationevaporative coolingforest-climate interactions
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Abstract (AI)
The world's forests influence climate through physical, chemical, and biological processes that affect planetary energetics, the hydrologic cycle, and atmospheric composition. These complex and nonlinear forest-atmosphere interactions can dampen or amplify anthropogenic climate change. Tropical, temperate, and boreal reforestation and afforestation attenuate global warming through carbon sequestration. Biogeophysical feedbacks can enhance or diminish this negative climate forcing. Tropical forests mitigate warming through evaporative cooling, but the low albedo of boreal forests is a positive climate forcing. The evaporative effect of temperate forests is unclear. The net climate forcing from these and other processes is not known. Forests are under tremendous pressure from global change. Interdisciplinary science that integrates knowledge of the many interacting climate services of forests with the impacts of global change is necessary to identify and understand as yet unexplored feedbacks in the Earth system and the potential of forests to mitigate climate change.
Key Findings
1
Biogeophysical feedbacks can either amplify or diminish the cooling effect of carbon sequestration, so net climate forcing from forests is uncertain.
2
Forests influence climate via physical, chemical, and biological processes that alter planetary energy balance, hydrologic cycle, and atmospheric composition.
3
Reforestation and afforestation in tropical, temperate, and boreal regions reduce global warming through carbon sequestration.
4
The evaporative (cooling) effect of temperate forests is unclear, and interdisciplinary research is needed to resolve unexplored feedbacks and assess forests' mitigation potential.
5
Tropical forests tend to mitigate warming through evaporative cooling, while boreal forests produce a positive climate forcing due to low albedo.
Research Object
World's forests (tropical, temperate, and boreal forests) as components of the Earth system
Research Subject
How forests affect climate—their forcings, feedbacks, and net climate benefits (carbon sequestration, biogeophysical effects such as evaporative cooling and albedo changes) and the resulting potential to mitigate or amplify anthropogenic climate change
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2008-06-12
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