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A strong mitigation scenario maintains climate neutrality of northern peatlands

  • Chunjing Qiu*
  • , Philippe Ciais
  • , Dan Zhu
  • , Bertrand Guenet
  • , Jinfeng Chang
  • , Nitin Chaudhary
  • , Thomas Kleinen
  • , Xin Yu Li
  • , Jurek Müller
  • , Yi Xi
  • , Wenxin Zhang
  • , Ashley Ballantyne
  • , Simon C. Brewer
  • , Victor Brovkin
  • , Dan J. Charman
  • , Adrian Gustafson
  • , Angela V. Gallego-Sala
  • , Thomas Gasser
  • , Joseph Holden
  • , Fortunat Joos
  • Min Jung Kwon, Ronny Lauerwald, Paul A. Miller, Shushi Peng, Susan Page, Benjamin Smith, Benjamin D. Stocker, A. Britta K. Sannel, Elodie Salmon, Guy Schurgers, Narasinha J. Shurpali, David Wårlind, Sebastian Westermann
*Corresponding author for this work
  • Commissariat à l’énergie atomique et aux énergies alternatives
  • Université Paris-Saclay
  • Peking University
  • Laboratoire de Géologie de l'École Normale Supérieure de Paris
  • Zhejiang University
  • University of Oslo
  • Lund University
  • Max Planck Institute for Meteorology
  • University of Bern
  • University of Copenhagen
  • University of Montana
  • University of Utah
  • University of Exeter
  • International Institute for Applied Systems Analysis, Laxenburg
  • University of Leeds
  • University of Leicester
  • Western Sydney University
  • Swiss Federal Institute of Technology Zurich
  • Swiss Federal Institute for Forest, Snow and Landscape Research
  • Stockholm University
  • LPC2E
  • Luke Natural Resources Institute Finland

Research output: Contribution to journalArticlepeer-review

Abstract

Northern peatlands store 300–600 Pg C, of which approximately half are underlain by permafrost. Climate warming and, in some regions, soil drying from enhanced evaporation are progressively threatening this large carbon stock. Here, we assess future CO2 and CH4 fluxes from northern peatlands using five land surface models that explicitly include representation of peatland processes. Under Representative Concentration Pathways (RCP) 2.6, northern peatlands are projected to remain a net sink of CO2 and climate neutral for the next three centuries. A shift to a net CO2 source and a substantial increase in CH4 emissions are projected under RCP8.5, which could exacerbate global warming by 0.21°C (range, 0.09–0.49°C) by the year 2300. The true warming impact of peatlands might be higher owing to processes not simulated by the models and direct anthropogenic disturbance. Our study highlights the importance of understanding how future warming might trigger high carbon losses from northern peatlands.

Original languageEnglish
Pages (from-to)86-97
Number of pages12
JournalOne Earth
Volume5
Issue number1
DOIs
StatePublished - 21 Jan 2022
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 13 - Climate Action
    SDG 13 Climate Action

Keywords

  • carbon dioxide
  • carbon-cycle feedback
  • land surface models
  • long-term climate change
  • methane
  • peatland
  • permafrost

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