Emil De Borger, Dick van Oevelen, Ninon Mavraki, Annelies De Backer, Ulrike Braeckman, Karline Soetaert, and Jan Vanaverbeke (2025)
Offshore wind farms modify coastal food web dynamics by enhancing suspension feeder pathways
communications earth & environment, 6(330):1-16.
Given the global offshore wind farm (OWF) proliferation, we investigated the impact of OWFs on the
marine food web. Using linear inverse modelling (LIM), we compared theOWF food web with two softsediment
food webs nearby. Novel in situ data on species biomass and their isotopic composition
were combined with literature data to construct food webs.Our findings highlight the prominent role of
hard-substrate species on turbine foundations as organic material inputs for the food web. Hard
substrate species account for approximately 26% of food source uptake from the water column and
increase carbon deposition on the surrounding seafloor by ~10%. OWFs facilitate a novel food web
with a higher productivity than expected based on standing biomass alone, as a result of numerous
interactions between a diverse species community. Our study underscores profound effects of OWFs
on marine ecosystems, suggesting the need for further research into their ecological impacts.
EN, Open Access
Supplementary information The online version contains
supplementary material available at
https://doi.org/10.1038/s43247-025-02253-w.
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