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Unprecedented Arctic Wildfires Fuel Climate Warming Cycle

The 鈥楢nti-Snowball鈥 Effect of Arctic Fire, Permafrost and Climate Warming

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smoke and flames from aerial fire in Russia's Transbaikal forest
A wildfire burns in the Transbaikal forest. Unprecedented fires in Siberia in recent years have been linked to Arctic warming. (Getty Images)

From to Arctic peatlands, climate warming is turning some long-held carbon sinks into carbon sources as wildfires increasingly send stored carbon up in smoke.

In the Arctic, vast amounts of carbon have been locked beneath frozen soil, much of it in peatlands. Climate warming dries the peat, making it more susceptible to fire, which releases permafrost carbon into the atmosphere as carbon dioxide. This contributes to more climate change, more fires, and more carbon releases. In science circles, this vicious cycle is called a 鈥渇eedback loop,鈥 and it鈥檚 not currently being considered in forecasts for the Arctic.

Polar ecologists Eric Post of 嘿嘿视频 and Michelle Mack of Northern Arizona University explain this dynamic in 鈥,鈥 a 鈥淧erspective鈥 piece published this month in the journal Science.

They describe a study conducted by Adri脿 Descals of Spain鈥檚 Centre de Recerca Ecol贸gica that links 鈥溾 to rising temperatures.

That study found that more of the Siberian Arctic burned in 2019 and 2020 than during the 39 years preceding it.

鈥淟arger and more intense wildfires could substantially accelerate the release of permafrost carbon into the atmosphere,鈥 Post and Mack write.

The authors say Descals鈥 study provides insight into what the future of Arctic wildfires may look like under increased warming. They call for future studies to assess wildfires with the dynamics of thawing permafrost to better understand the climate impacts.

 

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Kat Kerlin is an environmental science writer and media relations specialist at 嘿嘿视频. She鈥檚 the editor of the 鈥What Can I Do About Climate Change?鈥 blog. kekerlin@ucdavis.edu. 

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