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MEPS 755:63-77 (2025)  -  DOI: https://doi.org/10.3354/meps14795

Anaerobic decomposition dynamics of three kelp species from the North-east Atlantic: implications for blue carbon storage

A. R. O’Dell1,*, J. M. Baxter2, P. J. Moore3, D. A. Smale4, C. Smeaton5, I. M. Davies6, M. T. Burrows1

1Scottish Association for Marine Science (SAMS), Oban PA37 1QA, UK
2School of Biology, University of St Andrews, St Andrews KY16 8LB, UK
3Dove Marine Laboratory, School of Natural and Environmental Sciences, Newcastle University, Newcastle-upon-Tyne NE1 7RU, UK
4Marine Biological Association of the United Kingdom, Citadel Hill, Plymouth PL1 2PB, UK
5School of Geography and Sustainable Development, University of St Andrews, St Andrews KY16 9AL, UK
6Marine Directorate, Scottish Government, 375 Victoria Road, Aberdeen AB11 9DB, UK
*Corresponding author:

ABSTRACT: Decomposition pathways of detritus are key processes in the contribution of macroalgal habitats to natural carbon sequestration of ‘blue carbon’. The anaerobic decomposition of 3 North-east Atlantic canopy-forming kelp species was investigated using ex situ decomposition chambers. Thallus parts (stipes, holdfasts and blades) of Laminaria hyperborea, Saccharina latissima and L. digitata were incubated in still seawater in temperature-controlled dark conditions. Refractory potential (Rp), first-order decomposition rate (k) and associated half-life (t1/2) were calculated. Dissolved organic and inorganic carbon (DOC and DIC, respectively) were measured in the incubation water at 0, 7, 14 and 21 d, and thermal gravimetric profiles were determined at each decomposition stage. Oxygen depletion occurred within 24 h. Approximately 5 times as much DOC was released than DIC. Holdfast material produced the most DIC, while blade material released the greatest amounts of DOC. S. latissima released less DOC than L. hyperborea and L. digitata. The mean (SD) Rp of fragments increased from 0.46 ± 0.05 to 0.50 ± 0.04 throughout the 21 d incubations. S. latissima had the highest Rp throughout. First-order decomposition rates, averaged across the 3 kelp species, gave half-lives (t1/2) for blade fragments of 27.8 ± 2.9 d, (k = 0.025 ± 0.002) and stipes as 113.2 ± 21.1 d (k = 0.006 ± 0.001). This experiment clarifies the fate of macroalgal carbon during early decomposition and thus the processes that govern blue carbon pathways of macroalgae, highlighting the differences in breakdown among different species and thallus parts.


KEY WORDS: Macroalgae · Kelp · Carbon · Decomposition · Blue carbon


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Cite this article as: O’Dell AR, Baxter JM, Moore PJ, Smale DA, Smeaton C, Davies IM, Burrows MT (2025) Anaerobic decomposition dynamics of three kelp species from the North-east Atlantic: implications for blue carbon storage. Mar Ecol Prog Ser 755:63-77. https://doi.org/10.3354/meps14795

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