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Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Environmental Sources Marine & Wildlife Sign in to save

Surface habitat modification through industrial tuna fishery practices

ICES Journal of Marine Science 2021 19 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 35 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Amaël Dupaix, Manuela Capello, Christophe Lett, Christophe Lett, Marco Andrello, Nicolas Barrier, Gaëlle Viennois, Laurent Dagorn

Summary

This fisheries science paper examines how industrial fish aggregating devices (FADs) — large floating objects deployed by tuna fishing vessels — are changing ocean surface habitat. FADs are typically made of plastic and other materials, and their proliferation adds to marine plastic pollution. Abandoned and lost FADs become ghost fishing gear and degrade into microplastics, making this paper indirectly relevant to plastic pollution in open ocean systems.

Study Type Environmental

Abstract Natural floating objects (FOBs) have always been a major component of the habitat of pelagic species. Since the 1990s, the number of FOBs in the open ocean has increased greatly as a result of the introduction of fish aggregating devices (FADs) by the industrial tropical tuna purse seine vessels. These changes, and their potential impacts on the species that associate with FOBs, remain poorly understood. Using fisheries observer data, data from satellite-linked tracking buoys attached to FOBs and Lagrangian simulations, this study quantifies the temporal changes in the density and spatial distribution of FOBs due to the use of FADs in the Indian Ocean (IO) between 2006 and 2018. From 2012 to 2018, the entire western IO is impacted, with FADs representing more than 85% of the overall FOBs, natural FOBs less than 10%, and objects originating from pollution 5%. Results also suggest that both FADs and natural FOBs densities are lower in the eastern IO, but this initial investigation highlights the need for further studies. Our study confirms that FADs have greatly modified the density and spatial distribution of FOBs, which highlights the need to investigate potential consequences on the ecology of associated species.

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