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Updated: Oct 11, 2025

Simulating Impacts of Ice Storms on Forest Ecosystems
Published on: June 30, 2020
Observing the climate impact of large wildfires on stratospheric temperature
Matthias Stocker1, Florian Ladstädter1,2, Andrea K Steiner3,4
1Wegener Center for Climate and Global Change (WEGC), University of Graz, 8010, Graz, Austria.
Abstract:
Wildfires are expected to become more frequent and intense in the future. They not only pose a serious threat to humans and ecosystems, but also affect Earth's atmosphere. Wildfire plumes can reach into the stratosphere, but little is known about their climate impact. Here, we reveal observational evidence that major wildfires can have a severe impact on the atmospheric temperature structure and short-term climate in the stratosphere. Using advanced satellite observation, we find substantial warming of up to 10 K of the lower stratosphere within the wildfire plumes during their early development. The short-term climate signal in the lower stratosphere lasts several months and amounts to 1 K for the Northern American wildfires in 2017, and up to striking 3.5 K for the Australian wildfires in 2020. This is stronger than any signal from recent volcanic eruptions. Such extreme events affect atmospheric composition and climate trends, underpinning their importance for future climate.
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