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气候驱动因素对森林减缓气候变化潜力的风险。

Climate-driven risks to the climate mitigation potential of forests.

机构信息

School of Biological Sciences, University of Utah, Salt Lake City, UT 84113, USA.

Department of Geography, University of California, Santa Barbara, Santa Barbara, CA 93106, USA.

出版信息

Science. 2020 Jun 19;368(6497). doi: 10.1126/science.aaz7005.

Abstract

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.

摘要

森林在帮助缓解人为气候变化方面具有相当大的潜力,并为社会带来许多协同效益。然而,气候驱动的风险可能从根本上破坏 21 世纪的森林碳汇。在这里,我们综合了目前对森林稳定性的火灾、干旱、生物因子和其他干扰因素的气候驱动风险的理解。我们回顾了目前利用森林作为自然气候解决方案的努力是如何考虑并可以更充分地接受当前科学知识来应对这些气候驱动风险的。植被生理学、干扰生态学、机制植被建模、大规模生态观测网络和遥感方面的最新进展正在提高目前对森林稳定性风险的估计和预测。对这些风险的更全面的理解和量化将有助于决策者和其他利益相关者有效地将森林作为自然气候解决方案加以利用。

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