The browser you are using is not supported by this website. All versions of Internet Explorer are no longer supported, either by us or Microsoft (read more here: https://www.microsoft.com/en-us/microsoft-365/windows/end-of-ie-support).

Please use a modern browser to fully experience our website, such as the newest versions of Edge, Chrome, Firefox or Safari etc.

Default user image.

Anna Maria Jönsson

Professor

Default user image.

Climate change will increase forest disturbances in Europe throughout the 21st century

Author

  • Marc Grünig
  • Werner Rammer
  • Cornelius Senf
  • Katharina Albrich
  • Frédéric André
  • Andrey L.D. Augustynczik
  • Martin Baumann
  • Friedrich J. Bohn
  • Meike Bouwman
  • Harald Bugmann
  • Alessio Collalti
  • Irina Cristal
  • Daniela Dalmonech
  • Francois De Coligny
  • Laura Dobor
  • Christina Dollinger
  • Josep Maria Espelta
  • David I. Forrester
  • Jordi Garcia-Gonzalo
  • José Ramón González-Olabarria
  • Ulrike Hiltner
  • Tomáš Hlásny
  • Juha Honkaniemi
  • Nica Huber
  • Mathieu Jonard
  • Anna Maria Jönsson
  • Georges Kunstler
  • Fredrik Lagergren
  • Marcus Lindner
  • Marco Mina
  • Christine Moos
  • Xavier Morin
  • Bart Muys
  • Gert Jan Nabuurs
  • Mats Nieberg
  • Marco Patacca
  • Mikko Peltoniemi
  • Christopher P.O. Reyer
  • Mart Jan Schelhaas
  • Ilié Storms
  • Dominik Thom
  • Maude Toïgo
  • Rupert Seidl

Summary, in English

Wildfires, insect outbreaks, and storms cause large pulses of tree mortality. Climate change amplifies these forest disturbances, yet their future magnitude and extent remain uncertain. Here, we simulated future forest disturbance regimes at 100-meter resolution across Europe using a deep learning–based simulation framework. Our results show that forest disturbances will continue to increase throughout the 21st century, with disturbed areas more than doubling relative to the recent past under an unabated continuation of climate change. Wildfires are the main agent driving future disturbance change. Changing disturbances result in an increase in young forests, substantially altering Europe’s forest demography. Because of their profound implications for forest carbon storage and the habitat value of forest ecosystems, disturbances should be a priority of forest policy and management.

Department/s

  • Department of Earth and Environmental Sciences (MGeo)
  • LU Profile Area: Nature-based future solutions
  • Dept of Physical Geography and Ecosystem Science
  • BECC: Biodiversity and Ecosystem services in a Changing Climate

Publishing year

2026

Language

English

Publication/Series

Science

Volume

391

Issue

6789

Document type

Article

Publisher

American Association for the Advancement of Science (AAAS)

Topic

  • Physical Geography
  • Forest Science

Keywords

  • SDG 13 - Climate Action

Status

Published

ISBN/ISSN/Other

  • ISSN: 0036-8075