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State of Wildfires 2023-2024

  • Matthew W. Jones*
  • , Douglas I. Kelley*
  • , Chantelle A. Burton*
  • , Francesca Di Giuseppe*
  • , Maria Lucia F. Barbosa
  • , Esther Brambleby
  • , Andrew J. Hartley
  • , Anna Lombardi
  • , Guilherme Mataveli
  • , Joe R. McNorton
  • , Fiona R. Spuler
  • , Jakob B. Wessel
  • , John T. Abatzoglou
  • , Liana O. Anderson
  • , Niels Andela
  • , Sally Archibald
  • , Dolors Armenteras
  • , Eleanor Burke
  • , Rachel Carmenta
  • , Emilio Chuvieco
  • Hamish Clarke, Stefan H. Doerr, Paulo M. Fernandes, Louis Giglio, Douglas S. Hamilton, Stijn Hantson, Sarah Harris, Piyush Jain, Crystal A. Kolden, Tiina Kurvits, Seppe Lampe, Sarah Meier, Stacey New, Mark Parrington, Morgane M.G. Perron, Yuquan Qu, Natasha S. Ribeiro, Bambang H. Saharjo, Jesus San-Miguel-Ayanz, Jacquelyn K. Shuman, Veerachai Tanpipat, Guido R. Van Der Werf, Sander Veraverbeke, Gavriil Xanthopoulos
*Corresponding author for this work

Research output: Contribution to JournalReview articleAcademicpeer-review

Abstract

Climate change contributes to the increased frequency and intensity of wildfires globally, with significant impacts on society and the environment. However, our understanding of the global distribution of extreme fires remains skewed, primarily influenced by media coverage and regionalised research efforts. This inaugural State of Wildfires report systematically analyses fire activity worldwide, identifying extreme events from the March 2023-February 2024 fire season. We assess the causes, predictability, and attribution of these events to climate change and land use and forecast future risks under different climate scenarios. During the 2023-2024 fire season, 3.9×106 km2 burned globally, slightly below the average of previous seasons, but fire carbon (C) emissions were 16 % above average, totalling 2.4 Pg C. Global fire C emissions were increased by record emissions in Canadian boreal forests (over 9 times the average) and reduced by low emissions from African savannahs. Notable events included record-breaking fire extent and emissions in Canada, the largest recorded wildfire in the European Union (Greece), drought-driven fires in western Amazonia and northern parts of South America, and deadly fires in Hawaii (100 deaths) and Chile (131 deaths). Over 232 000 people were evacuated in Canada alone, highlighting the severity of human impact. Our analyses revealed that multiple drivers were needed to cause areas of extreme fire activity. In Canada and Greece, a combination of high fire weather and an abundance of dry fuels increased the probability of fires, whereas burned area anomalies were weaker in regions with lower fuel loads and higher direct suppression, particularly in Canada. Fire weather prediction in Canada showed a mild anomalous signal 1 to 2 months in advance, whereas events in Greece and Amazonia had shorter predictability horizons. Attribution analyses indicated that modelled anomalies in burned area were up to 40 %, 18 %, and 50 % higher due to climate change in Canada, Greece, and western Amazonia during the 2023-2024 fire season, respectively. Meanwhile, the probability of extreme fire seasons of these magnitudes has increased significantly due to anthropogenic climate change, with a 2.9-3.6-fold increase in likelihood of high fire weather in Canada and a 20.0-28.5-fold increase in Amazonia. By the end of the century, events of similar magnitude to 2023 in Canada are projected to occur 6.3-10.8 times more frequently under a medium-high emission scenario (SSP370). This report represents our first annual effort to catalogue extreme wildfire events, explain their occurrence, and predict future risks. By consolidating state-of-the-art wildfire science and delivering key insights relevant to policymakers, disaster management services, firefighting agencies, and land managers, we aim to enhance society's resilience to wildfires and promote advances in preparedness, mitigation, and adaptation. New datasets presented in this work are available from 10.5281/zenodo.11400539 (Jones et al., 2024) and 10.5281/zenodo.11420742 (Kelley et al., 2024a).

Original languageEnglish
Pages (from-to)3601-3685
Number of pages85
JournalEarth System Science Data
Volume16
Issue number8
Early online date14 Aug 2024
DOIs
Publication statusPublished - Aug 2024

Bibliographical note

Publisher Copyright:
© 2024 Matthew W. Jones et al.

Funding

Matthew W. Jones was funded by the UK Research and Innovation (UKRI) Natural Environment Research Council (NERC) (NE/V01417X/1). Douglas I. Kelley was supported by UKRI NERC as part of the LTSM2 TerraFIRMA project and NC-International programme (NE/X006247/1) delivering National Capability. Chantelle A. Burton was funded by the Met Office Climate Science for Service Partnership (CSSP) Brazil project, which is supported by the Department for Science, Innovation and Technology (DSIT), and by the Met Office Hadley Centre Climate Programme funded by DSIT. Paulo M. Fernandes received support from National Funds by the Funda\u00E7\u00E3o para a Ci\u00EAncia e a Tecnologia (project UIDB/04033/2020, 10.54499/UIDB/04033/2020). Francesca Di Giuseppe and JMCTS70 were both funded by a service contract from the Joint Research Centre (no. 942604) issued by the Joint Research Centre on behalf of the European Commission. Liana O. Anderson was supported by the Funda\u00E7\u00E3o de Amparo \u00E0 Pesquisa do Estado de S\u00E3o Paulo (FAPESP) (projects: 2021/07660-2 and 2020/16457-3) and by the Conselho Nacional de Desenvolvimento Cient\u00EDfico e Tecnol\u00F3gico (CNPq), productivity scholarship (process: 314473/2020-3). Guilherme Mataveli was supported by FAPESP (grants 2019/25701-8, 2020/15230-5 and 2023/03206-0). Seppe Lampe was supported by a PhD Fundamental Research Grant by Fonds Wetenschappelijk Onderzoek \u2013 Vlaanderen (11M7723N). Sarah Meier was supported by the Dragon Capital Chair on Biodiversity Economics. Emilio Chuvieco was supported by the European Space Agency's Climate Change Initiative (ESA CCI) programme (FireCCI: contract no. 4000126706/19/I-NB). Crystal A. Kolden was supported by the USDA National Institute of Food and Agriculture (award 2022-67019-36435). Yuquan Qu was supported by the China Scholarship Council (CSC) under grant number 201906040220. Morgane M. G. Perron was supported by a HORIZON EUROPE Marie Sk\u0142odowska-Curie Actions Postdoctoral Fellowship 2021, funding number 101064063. Hamish Clarke was funded by the Westpac Scholars Trust via a Westpac Research Fellowship (HamishClarkeFellowship). Stefan H. Doerr was supported by UKRI NERC (grant NE/X005143/1) and the FirEUrisk project, which has received funding from the European Union's Horizon 2020 Research and Innovation programme under grant agreement no. 101003890. Esther Brambleby was supported by the UKRI NERC ARIES Doctoral Training Partnership (grant number NE/S007334/1). Jacquelyn K. Shuman was supported by the National Aeronautics and Space Administration (NASA) FireSense project. Niels Andela was supported by the Sense4Fire project as part of the European Space Agency C Cycle Cluster (ESA contract numbers: 4000134840/21/I-NB). Maria Lucia F. Barbosa was supported by the Coordena\u00E7\u00E3o de Aperfei\u00E7oamento de Pessoal de N\u00EDvel Superior (CAPES), FinanceCode001. The contribution of Sander Veraverbeke was funded by a Consolidator grant from the European Research Council (grant agreement no. 101000987). Rachel Carmenta was financially supported by the Tyndall Centre for Climate Change Research. The authors thank the following people for their contributions to the identification and description of key events in the 2023-2024 fire season: Robert Ang'ila (Karatina University, Kenya), Miltiadis Athanasiou (Institute of Mediterranean Forest Ecosystems, Greece), Davide Ascoli (University of Turin), Chris Collins (Tasmania Fire Service, Australia), Abigail Croker (Imperial College, London), Helen De Klerk (Stellenbosch University), Kebonyethata Dintwe (University of Botswana), David Field (NSW Rural Fire Service, Australia), Ronald Heath (Forestry South Africa), Konstantinos Kaoukis (Institute of Mediterranean Forest Ecosystems, Greece), Agnes Kristina (Department of Fire and Emergency Services, Australia), Niall MacLennan (Scottish Fire and Rescue Service), John Mendelsohn (Okavango Research Institute), Grant Pearce (Fire and Emergency New Zealand, New Zealand), Galia Selaya (Ecosconsult, Bolivia), Russell Stephens Peacock (QLD Fire and Emergency Services, Australia), Simeon Telfer (SA Country Fire Service, Australia), Emmanuela Zevgoli (Agricultural University of Athens, Greece), the Hellenic Agricultural Organization DIMITRA , and The Chico Mendes Institute for Biodiversity Conservation (ICMBio, Brazil, Santar\u00E9m Office). The authors thank Andrew Ciavarella (Met Office) for guidance on using the HadGEM3-A data for the FireWeather Index. The authors thank Anna Bradley (UK Met Office) for JULES-ES-ISIMIP data processing and submission to the ISIMIP repository. The authors thank the working groups FLARE: Fire science Learning AcRoss the Earth System and TerraFIRMA: Dummies Guide to using Fire Models for contributing to defining the report scope and establishing contributor links.

FundersFunder number
Instituto Chico Mendes de Conservação da Biodiversidade
Scottish Fire and Rescue Service
Helen De Klerk
David Field
National Aeronautics and Space Administration
UKRI NERC
Institute of Mediterranean Forest Ecosystems
Karatina University
Ronald Heath
Niall MacLennan
Department for Science, Innovation and Technology
Okavango Research Institute
Hellenic Agricultural Organization DIMITRA
Andrew Ciavarella
Westpac Scholars Trust
Miltiadis Athanasiou
Simeon Telfer
Galia Selaya
Met Office Hadley Centre Climate Programme
NSW Rural Fire Service
John Mendelsohn
Konstantinos Kaoukis
Agricultural University of Athens
Met Office
Department of Fire and Emergency Services
European Research Council
Tyndall Centre for Climate Change Research
Universiteit Stellenbosch
UK Research and Innovation
National Institute of Food and Agriculture2022-67019-36435
European Space Agency's Climate Change Initiative4000126706/19/I-NB
Fundação para a Ciência e a TecnologiaUIDB/04033/2020
Natural Environment Research CouncilNE/X005143/1, NE/X006247/1, NE/V01417X/1
European Space Agency4000134840/21/I-NB
HORIZON EUROPE Marie Sklodowska-Curie Actions101064063
Conselho Nacional de Desenvolvimento Científico e Tecnológico2020/15230-5, 2023/03206-0, 314473/2020-3, 2019/25701-8
Coordenação de Aperfeiçoamento de Pessoal de Nível SuperiorFinanceCode001
Horizon 2020 Framework Programme101000987
European Commission101003890, NE/S007334/1
Fonds Wetenschappelijk Onderzoek – Vlaanderen11M7723N
Joint Research Centre942604
Fundação de Amparo à Pesquisa do Estado de São Paulo2020/16457-3, 2021/07660-2
China Scholarship Council201906040220

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