Trees, forests and water: Cool insights for a hot world
Деревья, леса и вода: прохладные выводы для жаркого мира
2017-02-09
SCID: 54.1/b5fd9w8b
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carbon storageclimate coolingforest-water interactionsland-use and climate adaptationwater, energy and carbon cycles
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Abstract (AI)
Forest-driven water and energy cycles are poorly integrated into regional, national, continental and global decision-making on climate change adaptation, mitigation, land use and water management. This constrains humanity’s ability to protect our planet’s climate and life-sustaining functions. The substantial body of research we review reveals that forest, water and energy interactions provide the foundations for carbon storage, for cooling terrestrial surfaces and for distributing water resources. Forests and trees must be recognized as prime regulators within the water, energy and carbon cycles. If these functions are ignored, planners will be unable to assess, adapt to or mitigate the impacts of changing land cover and climate. Our call to action targets a reversal of paradigms, from a carbon-centric model to one that treats the hydrologic and climate-cooling effects of trees and forests as the first order of priority. For reasons of sustainability, carbon storage must remain a secondary, though valuable, by-product. The effects of tree cover on climate at local, regional and continental scales offer benefits that demand wider recognition. The forest- and tree-centered research insights we review and analyze provide a knowledge-base for improving plans, policies and actions. Our understanding of how trees and forests influence water, energy and carbon cycles has important implications, both for the structure of planning, management and governance institutions, as well as for how trees and forests might be used to improve sustainability, adaptation and mitigation efforts.
Key Findings
1
Forest, water, and energy interactions underpin carbon storage, terrestrial cooling, and the distribution of water resources.
2
Ignoring forest-driven hydrologic and cooling effects prevents effective assessment, adaptation, and mitigation of changing land cover and climate impacts.
3
The authors call for shifting from carbon-centric strategies toward prioritizing hydrologic regulation and climate cooling, with carbon storage treated as a valuable secondary benefit.
4
Tree-cover effects across local, regional, and continental scales have underrecognized benefits for sustainability, climate adaptation, and mitigation planning.
5
Trees and forests function as primary regulators of water, energy, and carbon cycles and should be integrated into climate, land-use, and water-management decisions.
Research Object
Trees and forests within terrestrial water, energy, and carbon cycles
Research Subject
The roles and interactions of trees and forests in regulating water distribution, surface cooling, and carbon storage, and their implications for climate adaptation, mitigation, land-use, and water-management planning
Publication Details
Publication Date
2017-02-09
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