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Research Article | Open Access

Old-growth mixed beech-dominated forests continue accumulating carbon with advancing age

Katarína Markuljakováa( )Marek Svitoka,b,cMartin MikolášaJeňýk HofmeisteraWiliam S. KeetondAnders AlhströmeDheeraj RalhanaJakob PavlinaAudrey Rose SalernoaDaniel KozákaDaniela DúhováaPavel JandaaStjepan MikacfTzvetan ZlatanovgMomchil PanayotovhElvin ToromaniiSrdjan KerenjAbdulla DikkukCătălin-Constantin RoibulKrešimir BegovićaRadek BačeaIvo PardusaMartin DušátkoaMiroslav Svobodaa
Department of Forest Ecology, Faculty of Forestry and Wood Sciences, Czech University of Life Sciences Prague, Praha 165 21, Czech Republic
Department of Biology and General Ecology, Faculty of Ecology and Environmental Sciences, Technical University in Zvolen, Zvolen 960 01, Slovakia
Plant Science and Biodiversity Centre, Slovak Academy of Sciences, Bratislava 845 23, Slovakia
Rubenstein School of Environment and Natural Resources, University of Vermont, Burlington 05405, USA
Department of Physical Geography and Ecosystem Science, Lund University, Lund 223 62, Sweden
Department of Forest Ecology and Silviculture, Faculty of Forestry, University of Zagreb, Zagreb 10000, Croatia
Institute of Biodiversity and Ecosystem Research, Bulgarian Academy of Sciences, Sofia 1113, Bulgaria
Department of Dendrology, University of Forestry Sofia, Sofia 1797, Bulgaria
Faculty of Forestry Sciences, Agricultural University of Tirana, Koder-Kamez 1029, Albania
Faculty of Forestry, University of Agriculture in Krakow, Krakow 31-425, Poland
PSEDA-ILIRIA Organization, Tirana 1000, Albania
Forest Biometrics Laboratory, Faculty of Forestry, Stefan Cel Mare University of Suceava, Suceava 720229, Romania

Peer review under the responsibility of Editorial Office of Forest Ecosystems.

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Abstract

Old-growth forests uniquely support biodiversity while serving as some of the planet's most important carbon stocks. The influence of tree and stand age on carbon flux dynamics remains debated—an urgent question as climate-driven disturbances may reshape forest age structures and in situ carbon storage. To clarify these relationships in Fagus sylvatica, systems, we examined a unique dataset of 3,503 tree ring series from 190 plots across some of the best preserved old-growth forests from five southern European countries. By employing a dendrochronological approach and integrating key environmental variables, including elevation, slope, temperature, and the presence of large-diameter trees (≥60 cm), we analyzed the complex relationships between tree/stand age within a plot (represented by plot-level mean values, hereafter “stand age”) and aboveground carbon stock across live, standing, and lying deadwood pools. The average stand age was 220 years, with 230 tC·ha-1 of carbon stored in aboveground biomass and necromass. We found a positive correlation between age and carbon storage at both the individual tree and plot levels. Notably, the presence of large-diameter trees was the strongest indicator of carbon stock, with carbon accumulation peaking at about 30% large-tree stems proportion before stabilising, while younger beech trees (below 100 years old) had a smaller contribution to carbon storage. We found no evidence of a decline in carbon stock with advancing stand age across the studied sites. Despite the ecological importance of old-growth forests, many of them remain unprotected and are disappearing across Europe. Our findings highlight the importance of preserving old-growth forests to maximize their role as long-term ecosystem carbon reservoirs.

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Cite this article:
Markuljaková K, Svitok M, Mikoláš M, et al. Old-growth mixed beech-dominated forests continue accumulating carbon with advancing age. Forest Ecosystems, 2026, 15(1). https://doi.org/10.1016/j.fecs.2025.100411

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Received: 14 July 2025
Revised: 13 November 2025
Accepted: 17 November 2025
Published: 01 February 2026
© 2025 The Authors.

This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).