气候变化
环境科学
环境资源管理
生态学
气候学
地质学
生物
作者
William R. L. Anderegg,Anna T. Trugman,Grayson Badgley,Christa M. Anderson,Ann M. Bartuska,Philippe Ciais,Danny Cullenward,Christopher B. Field,Jeremy Freeman,S. J. Goetz,Jeffrey A. Hicke,D. N. Huntzinger,Robert B. Jackson,J. T. R. Nickerson,Stephen W. Pacala,James T. Randerson
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2020-06-18
卷期号:368 (6497)
被引量:790
标识
DOI:10.1126/science.aaz7005
摘要
Forests have considerable potential to help mitigate human-caused climate change and provide society with many cobenefits. However, climate-driven risks may fundamentally compromise forest carbon sinks in the 21st century. Here, we synthesize the current understanding of climate-driven risks to forest stability from fire, drought, biotic agents, and other disturbances. We review how efforts to use forests as natural climate solutions presently consider and could more fully embrace current scientific knowledge to account for these climate-driven risks. Recent advances in vegetation physiology, disturbance ecology, mechanistic vegetation modeling, large-scale ecological observation networks, and remote sensing are improving current estimates and forecasts of the risks to forest stability. A more holistic understanding and quantification of such risks will help policy-makers and other stakeholders effectively use forests as natural climate solutions.
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