Plastic debris in the Ecuadorian shoreline, coastal and deep-water zones of the eastern Pacific margin

Although 28 studies worldwide have documented plastic debris on the deep-sea floor, only one has addressed the eastern Pacific margin. Equally uncommon are long-term beach monitoring programs that integrate debris counts with oceanographic and meteorological records. This study delivers the first combined evidence of abyssal contamination and a six-year coastal time series in the equatorial eastern Pacific, establishing a rare dual perspective on plastic transport and deposition across connected marine environments. In February 2024, the submarine NAUTILE completed 13 dives to depths >3 900 m along Ecuador’s continental margin, surveying debris across the shelf, slope, and abyssal trench. The survey covered >560 000 m² and 222 h of video, revealing degraded fishing gear at cold seeps and relatively intact bags, packaging, and bowls at depth, exhibiting a probable polymer composition dominated by polyethylene, polypropylene, and nylon. Approximate visual encounter estimates, the density of abyssal litter reached between 0.016 and 0.019 g/m². To contextualize these findings, a six-year dataset (2019–2025) from a fixed 100 m² beach station recorded 152.9 kg of debris, with an accumulation rate of 5.7 g/week/m². Oceanographic variables (temperature, wind, solar radiation, pH) were associated with transport, burial, and fragmentation processes, with food packaging and fishing gear dominant across depths. Notably, similar items (bags, food bowls, bottles, and nylon threads) were documented both on the beach and at abyssal depths, providing suggestive evidence of connectivity between coastal and deep-sea debris sources. Our study thus represents the first report of plastic pollution in the eastern equatorial Pacific abyss and highlights the need for integrated monitoring and policy frameworks that address marine plastic pollution across connected ecosystems.

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Publication Details

Journal
Frontiers in Marine Science
Published
2026-09-17
DOI
https://doi.org/10.3389/fmars.2026.1870781
Primary Topic
Microplastics and Plastic Pollution
Type
article
Field-Weighted Citation Impact
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article

Plastic debris in the Ecuadorian shoreline, coastal and deep-water zones of the eastern Pacific margin

Cédric Boulart, Audrey Galvé, Jean‐Yves Collot, Gueorgui Ratzov et al.
Frontiers in Marine Science
Microplastics and Plastic Pollution
article

Plastic debris in the Ecuadorian shoreline, coastal and deep-water zones of the eastern Pacific margin

Cédric Boulart, Audrey Galvé, Jean‐Yves Collot, Gueorgui Ratzov, Franklin Ormaza-González, Sylvain Palagonia, Jean‐Noël Proust, Marc Sosson, Jean-Frédéric Lebrun, Matthieu Gougeon, Kouao N’guetta, Boris Marcaillou, Carlos Martillo-Bustamante, Pedro Reyes, Laura Noel, François Michaud, Dafne E. Vera-Mosquera
article en

Abstract

Although 28 studies worldwide have documented plastic debris on the deep-sea floor, only one has addressed the eastern Pacific margin. Equally uncommon are long-term beach monitoring programs that integrate debris counts with oceanographic and meteorological records. This study delivers the first combined evidence of abyssal contamination and a six-year coastal time series in the equatorial eastern Pacific, establishing a rare dual perspective on plastic transport and deposition across connected marine environments. In February 2024, the submarine NAUTILE completed 13 dives to depths >3 900 m along Ecuador’s continental margin, surveying debris across the shelf, slope, and abyssal trench. The survey covered >560 000 m² and 222 h of video, revealing degraded fishing gear at cold seeps and relatively intact bags, packaging, and bowls at depth, exhibiting a probable polymer composition dominated by polyethylene, polypropylene, and nylon. Approximate visual encounter estimates, the density of abyssal litter reached between 0.016 and 0.019 g/m². To contextualize these findings, a six-year dataset (2019–2025) from a fixed 100 m² beach station recorded 152.9 kg of debris, with an accumulation rate of 5.7 g/week/m². Oceanographic variables (temperature, wind, solar radiation, pH) were associated with transport, burial, and fragmentation processes, with food packaging and fishing gear dominant across depths. Notably, similar items (bags, food bowls, bottles, and nylon threads) were documented both on the beach and at abyssal depths, providing suggestive evidence of connectivity between coastal and deep-sea debris sources. Our study thus represents the first report of plastic pollution in the eastern equatorial Pacific abyss and highlights the need for integrated monitoring and policy frameworks that address marine plastic pollution across connected ecosystems.

Frontiers in Marine ScienceVol. 13
Centre National de la Recherche Scientifique (FR), Institut de Recherche pour le Développement (BJ), Escuela Superior Politecnica del Litoral (EC), Universidad Católica de Santiago de Guayaquil (EC), Sorbonne Université (FR), Centre National pour la Recherche Scientifique et Technique (CNRST) (MA), Géosciences Rennes (FR), Adaptation et Diversité en Milieu Marin (FR), Géosciences Montpellier (FR), Observatoire de la Côte d’Azur (FR), Géoazur (FR), Laboratoire des Sciences de l'Environnement Marin (FR), Université Paris 1 Panthéon-Sorbonne (FR), National Polytechnic School (EC)
Life below water
Openalex Percentile: Top 22%
Microplastics and Plastic Pollution
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