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Livestock grazing; plant community and abiotic factors shape blue carbon stocks in Nordic coastal marshes

delete2026-07-06
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OA
AI
A
Anaïs Richard *
C
Carmen Leiva‐Dueñas
C
Christoffer Boström
B
Beke K. Eichert
A
Annie Garnell
N
Nadja H. Nijm
L
Line Holm Andersen
K
Kai Jensen
H
Heli Jutila
D
Dorte Krause‐Jensen
N
Nathalie Labourdette
M
Marianna Lanari
E
Ella L. Logemann
K
Katrin Moeller
M
Mikael von Numers
G
Gry Frederiksberg
S
Sofia A. Wikström
C
Cintia Organo Quintana
G
Gary Thomas Banta
J
Johan S. Eklöf
DOI:10.5194/bg-23-4583-2026delete
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Abstract

Abstract

En 中文
Abstract. Coastal marshes are key habitats contributing to organic carbon (OC) storage but remain understudied in Nordic regions regarding Blue Carbon processes. This study quantified OC stocks in above- and below-ground plant biomass and in the top 50 cm-soil across 12 grazed and ungrazed marshes; spanning a major environmental gradient; and assessed how biotic (plant communities; livestock grazing) and abiotic (soil properties; environmental conditions) drivers shape OC storage. Soil OC stocks accounted for ∼ 73 % of total OC in grazed sites and ∼ 63 % in ungrazed ones and was higher in grazed sites (99.7 ± 57.9 Mg ha−1) than in ungrazed sites (78.2 ± 44.2 Mg ha−1). Grazing and the large-scale environmental gradient strongly structured plant communities; partly by regulating reed (Phragmites australis); prevalent in ungrazed sites. Abiotic soil properties were major large-scale drivers of soil OC storage; while grazing affected soil OC storage indirectly through plant composition. Soil OC increased with finer textures; whereas vegetation and grazing effects were variable and locally expressed. Aboveground OC stocks were reduced by grazing; both directly through biomass removal and indirectly by reducing reed dominance. Belowground OC stocks were driven by plant community composition and indirectly by grazing effects on vegetation. Root biomass was concentrated in the top 15 cm in grazed sites and deeper (15–50 cm) in ungrazed sites; reflecting contrasting plant strategies. Overall; soil OC stocks in Nordic coastal marshes fall within the lower range of global estimates. These findings highlight the need to consider soil processes; grazing and environmental gradients in the sustainable management of Nordic coastal marshes and their carbon storage potential.
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Biogeosciences cover
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