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A transdisciplinary, comparative analysis reveals key risks from Arctic permafrost thaw

  • Susanna Gartler*
  • , Johanna Scheer*
  • , Alexandra Meyer*
  • , Khaled Abass
  • , Annett Bartsch
  • , Natalia Doloisio
  • , Jade Falardeau
  • , Gustaf Hugelius
  • , Anna Irrgang
  • , Jón Haukur Ingimundarson
  • , Leneisja Jungsberg
  • , Hugues Lantuit
  • , Joan Nymand Larsen
  • , Rachele Lodi
  • , Victoria Sophie Martin
  • , Louise Mercer
  • , David Nielsen
  • , Paul Overduin
  • , Olga Povoroznyuk
  • , Arja Rautio
  • Peter Schweitzer, Niek Jesse Speetjens, Soňa Tomaškovičová, Ulla Timlin, Jean Paul Vanderlinden, Jorien Vonk, Levi Westerveld, Thomas Ingeman-Nielsen
*Corresponding author for this work

Research output: Contribution to JournalArticleAcademicpeer-review

Abstract

Permafrost thaw poses diverse risks to Arctic environments and livelihoods. Understanding the effects of permafrost thaw is vital for informed policymaking and adaptation efforts. Here, we present the consolidated findings of a risk analysis spanning four study regions: Longyearbyen (Svalbard, Norway), the Avannaata municipality (Greenland), the Beaufort Sea region and the Mackenzie River Delta (Canada) and the Bulunskiy District of the Sakha Republic (Russia). Local stakeholders’ and scientists’ perceptions shaped our understanding of the risks as dynamic, socionatural phenomena involving physical processes, key hazards, and societal consequences. Through an inter- and transdisciplinary risk analysis based on multidirectional knowledge exchanges and thematic network analysis, we identified five key hazards of permafrost thaw. These include infrastructure failure, disruption of mobility and supplies, decreased water quality, challenges for food security, and exposure to diseases and contaminants. The study’s novelty resides in the comparative approach spanning different disciplines, environmental and societal contexts, and the transdisciplinary synthesis considering various risk perceptions.

Original languageEnglish
Article number21
Pages (from-to)1-20
Number of pages20
JournalCommunications Earth and Environment
Volume6
Issue number1
Early online date16 Jan 2025
DOIs
Publication statusPublished - 2025

Bibliographical note

Publisher Copyright:
© The Author(s) 2025.

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