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Wildfire as a major driver of recent permafrost thaw in boreal peatlands
Wildfire as a major driver of recent permafrost thaw in boreal peatlands
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Wildfire as a major driver of recent permafrost thaw in boreal peatlands
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Wildfire as a major driver of recent permafrost thaw in boreal peatlands
Wildfire as a major driver of recent permafrost thaw in boreal peatlands

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Wildfire as a major driver of recent permafrost thaw in boreal peatlands
Wildfire as a major driver of recent permafrost thaw in boreal peatlands
Journal Article

Wildfire as a major driver of recent permafrost thaw in boreal peatlands

2018
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Overview
Permafrost vulnerability to climate change may be underestimated unless effects of wildfire are considered. Here we assess impacts of wildfire on soil thermal regime and rate of thermokarst bog expansion resulting from complete permafrost thaw in western Canadian permafrost peatlands. Effects of wildfire on permafrost peatlands last for 30 years and include a warmer and deeper active layer, and spatial expansion of continuously thawed soil layers (taliks). These impacts on the soil thermal regime are associated with a tripled rate of thermokarst bog expansion along permafrost edges. Our results suggest that wildfire is directly responsible for 2200 ± 1500 km 2 (95% CI) of thermokarst bog development in the study region over the last 30 years, representing ~25% of all thermokarst bog expansion during this period. With increasing fire frequency under a warming climate, this study emphasizes the need to consider wildfires when projecting future circumpolar permafrost thaw. Future permafrost thaw may be underestimated unless effects of wildfire are considered. Here the authors show that wildfires in boreal permafrost peatlands influence soil temperature and seasonal thaw depth for several decades, and increase the rate of complete permafrost thaw along permafrost edges.