Escalating carbon emissions from North American boreal forest wildfires and the climate mitigation potential of fire management

Author:

Phillips Carly A.12ORCID,Rogers Brendan M.2ORCID,Elder Molly3ORCID,Cooperdock Sol2ORCID,Moubarak Michael4ORCID,Randerson James T.5ORCID,Frumhoff Peter C.1ORCID

Affiliation:

1. Union of Concerned Scientists, Cambridge, MA, USA.

2. Woodwell Climate Research Center, Falmouth, MA, USA.

3. Fletcher School, Tufts University Medford, MA, USA.

4. Hamilton College, Clinton, NY, USA.

5. Department of Earth System Science, University of California, Irvine, CA, USA.

Abstract

Wildfires in boreal forests release large quantities of greenhouse gases to the atmosphere, exacerbating climate change. Here, we characterize the magnitude of recent and projected gross and net boreal North American wildfire carbon dioxide emissions, evaluate fire management as an emissions reduction strategy, and quantify the associated costs. Our results show that wildfires in boreal North America could, by mid-century, contribute to a cumulative net source of nearly 12 gigatonnes of carbon dioxide, about 3% of remaining global carbon dioxide emissions associated with keeping temperatures within the Paris Agreement’s 1.5°C limit. With observations from Alaska, we show that current fire management practices limit the burned area. Further, the costs of avoiding carbon dioxide emissions by means of increasing investment in fire management are comparable to or lower than those of other mitigation strategies. Together, our findings highlight the climate risk that boreal wildfires pose and point to fire management as a cost-effective way to limit emissions.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

Reference82 articles.

1. J. Rogelj D. Shindell K. Jiang S. Fifita P. Forster V. Ginzburg C. Handa H. Kheshgi S. Kobayashi E. Kriegler L. Mundaca R. Séférian M. V. Vilarino K. Calvin J. C. de Oliveira de Portugal Pereira O. Edelenbosch J. Emmerling S. Fuss T. Gasser N. Gillett C. He E. Hertwich L. Höglund-Isaksson D. Huppmann G. Luderer A. Markandya M. Meinshausen D. McCollum R. Millar A. Popp P. Purohit K. Riahi A. Ribes H. Saunders C. Schädel C. Smith P. Smith E. Trutnevyte Y. Xu W. Zhou K. Zickfeld Mitigation pathways compatible with 1.5°C in the context of sustainable development in Global Warming of 1.5 °C (Intergovernmental Panel on Climate Change Geneva 2018) pp. 93–174.

2. The role of fire in global forest loss dynamics

3. Recent changes in the fire regime across the North American boreal region—Spatial and temporal patterns of burning across Canada and Alaska

4. Recent burning of boreal forests exceeds fire regime limits of the past 10,000 years

5. Global estimates of boreal forest carbon stocks and flux

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