Environmental Studies and ForestryNature
Forest fire size amplifies postfire land surface warming
J. Zhao, C. Yue, et al.
This groundbreaking study reveals how larger fire sizes in Northern Hemisphere forests intensify summer land surface warming per unit area burnt, shedding light on implications for regeneration and permafrost. Conducted by Jie Zhao, Chao Yue, Jiaming Wang, and others, this research calls for climate-smart forestry strategies to counteract the effects of large fires.
Related Publications
Explore these studies to deepen your understanding
Adjacent work that informs or extends this paper's methodology and findings.
Earth Sciences
Steady global surface warming from 1973 to 2022 but increased warming rate after 1990
B. H. Samset, C. Zhou, et al.
Earth Sciences
Future sea ice weakening amplifies wind-driven trends in surface stress and Arctic Ocean spin-up
M. Muilwijk, T. Hattermann, et al.
Earth Sciences
Fire decline in dry tropical ecosystems enhances decadal land carbon sink
Y. Yin, A. A. Bloom, et al.
Environmental Studies and Forestry
Climate change has increased the odds of extreme regional forest fire years globally
J. T. Abatzoglou, C. A. Kolden, et al.

