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Stranded in the high tide line: Spatial and temporal variability of beached microplastics in a semi-enclosed embayment (Arcachon, France)

The Science of The Total Environment 2021 35 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 40 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Charlotte Lefebvre Charlotte Lefebvre Charlotte Lefebvre Charlotte Lefebvre Charlotte Lefebvre Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Charlotte Lefebvre Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Bénédicte Morin, Bénédicte Morin, Jérôme Cachot, Isabel Jalón‐Rojas, Jérôme Cachot, Jérôme Cachot, Jérôme Cachot, Jérôme Cachot, Jérôme Cachot, Jérôme Cachot, Jérôme Cachot, Jérôme Cachot, Jérôme Cachot, Bénédicte Morin, Bénédicte Morin, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Jérôme Cachot, Isabel Jalón‐Rojas, Jérôme Cachot, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Jérôme Cachot, Jérôme Cachot, Jean B. Lasserre, Charlotte Lefebvre Jérôme Cachot, Sophie Lecomte, Sophie Lecomte, Jérôme Cachot, Sandrine Villette, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Jérôme Cachot, Sophie Lecomte, Jérôme Cachot, Bénédicte Morin, Bénédicte Morin, Bénédicte Morin, Jérôme Cachot, Bénédicte Morin, Bénédicte Morin, Sophie Lecomte, Jérôme Cachot, Jérôme Cachot, Sophie Lecomte, Sophie Lecomte, Jérôme Cachot, Jérôme Cachot, Jérôme Cachot, Bénédicte Morin, Jérôme Cachot, Jérôme Cachot, Jérôme Cachot, Sophie Lecomte, Jérôme Cachot, Isabel Jalón‐Rojas, Isabel Jalón‐Rojas, Bénédicte Morin, Bénédicte Morin, Bénédicte Morin, Bénédicte Morin, Jérôme Cachot, Jérôme Cachot, Jérôme Cachot, Bénédicte Morin, Sandrine Villette, Jérôme Cachot, Jérôme Cachot, Bénédicte Morin, Bénédicte Morin, Bénédicte Morin, Bénédicte Morin, Jérôme Cachot, Jérôme Cachot, Bénédicte Morin, Bénédicte Morin, Jérôme Cachot, Jérôme Cachot, Sophie Lecomte, Jérôme Cachot, Sophie Lecomte, Sophie Lecomte, Jérôme Cachot, Jérôme Cachot, Sophie Lecomte, Jérôme Cachot, Jérôme Cachot, Sophie Lecomte, Jérôme Cachot, Jérôme Cachot, Bénédicte Morin, Jérôme Cachot, Jérôme Cachot, Jérôme Cachot, Jérôme Cachot, Jérôme Cachot, Jérôme Cachot, Sophie Lecomte, Bénédicte Morin, Bénédicte Morin, Bénédicte Morin, Jérôme Cachot, Jérôme Cachot, Bénédicte Morin, Jérôme Cachot, Jérôme Cachot, Jérôme Cachot, Jérôme Cachot, Jérôme Cachot, Charlotte Lefebvre Jérôme Cachot, Bénédicte Morin, Sophie Lecomte, Jérôme Cachot, Isabel Jalón‐Rojas, Jérôme Cachot, Bénédicte Morin, Bénédicte Morin, Jérôme Cachot, Jérôme Cachot, Bénédicte Morin, Charlotte Lefebvre

Summary

Researchers found significant spatial and temporal variability in beached microplastics (0.5-5 mm) in the semi-enclosed Arcachon Bay, France, with deposition patterns at the high tide line influenced by local hydrodynamics and seasonal factors.

Study Type Environmental

Coastal environments are a predominant ultimate destination of marine debris, becoming a key focus of studies assessing microplastic (MP) contamination. Here, we described the visible fraction of MP (from 0.5 to 5 mm) that washed up during the high tide at different sites of a semi-enclosed mesotidal bay and investigated the main abiotic factors driving MP beaching. Three contrasted beaches of the Arcachon Bay (SW France) were monitored on a monthly basis during 2019. Samplings were made along a 100 m longitudinal transect at the high-water strandline (4 quadrats of 0.25m) and at an intermediate tidal range. Each sampled particle was characterized by morphometric data (e.g. size, shape, color, roughness) and polymer identification was performed by ATR-FTIR technique. Results show that MP concentration was higher on the beach located at the mouth of the bay (36.0 ± 39.2 MP.m) than at the back and the outside of the bay (respectively 2.7 ± 4.4 and 1.7 ± 2.4 MP.m). This may be related to the strong currents at the entry of the embayment and the beach orientation, exposed to predominant winds. Beached MP were mainly pre-production pellets and fragments as they represented respectively 49% and 39% of all analyzed shapes. Polymers with low density were particularly abundant. Polyethylene represented 69% of all the particles while polypropylene accounted for 17% and polystyrene for 10%. We also observed that MP were mostly washed up when wind, waves and river flow were more intense. Analysis suggest that wind direction and speed are key factors influencing beaching as strong onshore wind enhance this process.

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