Water-table-driven greenhouse gas emission estimates guide peatland restoration at national scale

Abstract ha of peatlands by 2030. This area corresponds to more than half of the Danish peatland, with an expected reduction in GHG emissions of almost half of the entire land use, land use change and forestry (LULUFC) emissions. Recent advances established the functional relationship between hydrological regimes, i.e., water table depth (WTD), and CO 2 CH 4 CO 2 CH 4 Mt CO 2 - eq, which is around 15 % lower than previous estimates. Lastly, we investigate alternative restoration scenarios and identify substantial differences in the GHG reduction potential depending on the prioritization of fields in the rewetting strategy. If wet fields are prioritized, which is not unlikely in a context of a voluntary bottom-up approach, the GHG reduction potential is just 30 % for the first 10 000 ha with respect to a scenario that prioritizes drained fields. This underpins the importance of the proposed framework linking WTD and GHG emissions to guide a spatially differentiated peatland restoration. The choice of model type used to fit the CO 2 WTD response function, the applied global warming potentials and uncertainties related to the WTD map are investigated by means of a scenario analysis, which suggests that the estimated GHG emissions and the reduction potential are associated with coefficients of variation of 13 % and 22 %, respectively.

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
Water-table-driven greenhouse gas emission estimates guide peatland restoration at national scale ; volume:20 ; number:12 ; year:2023 ; pages:2387-2403 ; extent:17
Biogeosciences ; 20, Heft 12 (2023), 2387-2403 (gesamt 17)

Classification
Biowissenschaften, Biologie

Creator
Koch, Julian
Elsgaard, Lars
Greve, Mogens H.
Gyldenkærne, Steen
Hermansen, Cecilie
Levin, Gregor
Wu, Shubiao
Stisen, Simon

DOI
10.5194/bg-20-2387-2023
URN
urn:nbn:de:101:1-2023062905303096599367
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
14.08.2025, 11:00 AM CEST

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Associated

  • Koch, Julian
  • Elsgaard, Lars
  • Greve, Mogens H.
  • Gyldenkærne, Steen
  • Hermansen, Cecilie
  • Levin, Gregor
  • Wu, Shubiao
  • Stisen, Simon

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