Are Northern Hemisphere boreal forest fires more sensitive to future aerosol mitigation than to greenhouse gas–driven warming?

Author:

Allen Robert J.1ORCID,Samset Bjørn H.2ORCID,Wilcox Laura J.3ORCID,Fisher Rosie A.2ORCID

Affiliation:

1. Department of Earth and Planetary Sciences, University of California Riverside, Riverside, CA 92521 USA.

2. CICERO Center for International Climate and Environmental Research in Oslo, Oslo, Norway.

3. National Centre for Atmospheric Science, University of Reading, Reading, UK.

Abstract

Considerable interest exists in understanding how climate change affects wildfire activity. Here, we use the Community Earth System Model version 2 to show that future anthropogenic aerosol mitigation yields larger increases in fire activity in the Northern Hemisphere boreal forests, relative to a base simulation that lacks climate policy and has large increases in greenhouse gases. The enhanced fire response is related to a deeper layer of summertime soil drying, consistent with increased downwelling surface shortwave radiation and enhanced surface evapotranspiration. In contrast, soil column drying is muted under increasing greenhouse gases due to plant physiological responses to increased carbon dioxide and by enhanced melting of soil ice at a depth that increases soil liquid water. Although considerable uncertainty remains in the representation of fire processes in models, our results suggest that boreal forest fires may be more sensitive to future aerosol mitigation than to greenhouse gas–driven warming.

Publisher

American Association for the Advancement of Science (AAAS)

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