Titel
Soil carbon loss in warmed subarctic grasslands is rapid and restricted to topsoil
Autor*in
Niel Verbrigghe
Research Group Plants and Ecosystems, University of Antwerp
Autor*in
Niki I. W. Leblans
Research Group Plants and Ecosystems, University of Antwerp
Autor*in
Bjarni D. Sigurdsson
Faculty of Environmental and Forest Sciences, Agricultural University of Iceland
... show all
Abstract
Global warming may lead to carbon transfers from soils to the atmosphere, yet this positive feedback to the climate system remains highly uncertain, especially in subsoils (Ilyina and Friedlingstein, 2016; Shi et al., 2018). Using natural geothermal soil warming gradients of up to +6.4 ∘C in subarctic grasslands (Sigurdsson et al., 2016), we show that soil organic carbon (SOC) stocks decline strongly and linearly with warming (−2.8 t ha−1 ∘C−1). Comparison of SOC stock changes following medium-term (5 and 10 years) and long-term (>50 years) warming revealed that all SOC stock reduction occurred within the first 5 years of warming, after which continued warming no longer reduced SOC stocks. This rapid equilibration of SOC observed in Andosol suggests a critical role for ecosystem adaptations to warming and could imply short-lived soil carbon–climate feedbacks. Our data further revealed that the soil C loss occurred in all aggregate size fractions and that SOC stock reduction was only visible in topsoil (0–10 cm). SOC stocks in subsoil (10–30 cm), where plant roots were absent, showed apparent conservation after >50 years of warming. The observed depth-dependent warming responses indicate that explicit vertical resolution is a prerequisite for global models to accurately project future SOC stocks for this soil type and should be investigated for soils with other mineralogies.
Stichwort
Earth-Surface ProcessesEcology, Evolution, Behavior and Systematics
Objekt-Typ
Sprache
Englisch [eng]
Persistent identifier
https://phaidra.univie.ac.at/o:1679380
Erschienen in
Titel
Biogeosciences
Band
19
Ausgabe
14
ISSN
1726-4189
Erscheinungsdatum
2022
Seitenanfang
3381
Seitenende
3393
Verlag
Copernicus GmbH
Erscheinungsdatum
2022
Zugänglichkeit
Rechteangabe
© Author(s) 2022

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