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Factors influencing microplastic abundances in the sediments of a seagrass-dominated tropical atoll

Environmental Pollution 2024 12 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 50 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Freya Radford, Freya Radford, Freya Radford, Alice A. Horton Freya Radford, Freya Radford, Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Freya Radford, Freya Radford, Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Alice A. Horton Freya Radford, Freya Radford, Alice A. Horton Alice A. Horton Stacey Felgate, Stacey Felgate, Alice A. Horton Anna Lichtschlag, Alice A. Horton Alice A. Horton Anna Lichtschlag, Alice A. Horton Anna Lichtschlag, James Hunt, Alice A. Horton Alice A. Horton James Hunt, Valdemar Andrade, Valdemar Andrade, Valdemar Andrade, Freya Radford, Richard Sanders, Richard Sanders, Richard Sanders, Claire Evans, Claire Evans, Alice A. Horton Alice A. Horton Freya Radford, Freya Radford, Freya Radford, Freya Radford, Freya Radford, Freya Radford, Freya Radford, Freya Radford, Alice A. Horton

Summary

Researchers investigated factors controlling microplastic abundance in sediments of a seagrass-dominated tropical atoll. They found that seagrass density, water flow patterns, and proximity to human settlements all influenced microplastic accumulation, with denser seagrass meadows trapping more particles in their sediments. The study raises concerns that microplastic buildup in seagrass ecosystems could threaten the ecological services these habitats provide, including carbon storage and biodiversity support.

Polymers
Study Type Environmental

Seagrass meadows are one of the world's most diverse ecosystems offering habitats for an extensive array of species, as well as serving as protectors of coral reefs and vital carbon sinks. Furthermore, they modify hydrodynamics by diminishing water flow velocities and enhancing sediment deposition, indicating the potential for microplastic accumulation in their sediments. The build-up of microplastics could potentially have ecological impacts threatening to ecosystems, however little is known about microplastic abundance and controlling factors in seagrass sediments. Here we investigated microplastic characteristics and abundances within sediments underlying four seagrass meadow sites on the Turneffe Atoll, Belize. Sediment cores were collected and sub-sampled to include a range of replicate surface sediments (0-4 cm) and depth cores (sediment depths 0-2, 2-5, 5-10, 10-20 and 20-30 cm). These were analysed using 25 μm resolution μFTIR, with spectral maps processed using siMPle software. Microplastics were prevalent across the sites with an abundance range (limit of detection (LOD) blank-corrected) of < LOD to 17137 microplastics kg dw found on the east side of the atoll. However, their abundances varied greatly between the replicate samples. Polyethylene and polypropylene were the most commonly detected polymers overall, although the dominant polymer type varied between sites. There were no differences in the abundance of microplastics between sites, nor could abundance distributions be explained by seagrass cover. However, abundances of microplastics were highest in sediments with lower proportions of fine grained particles (clay, <4 μm) suggesting that hydrodynamics override seagrass effects. Additionally, no patterns were seen between microplastic abundance and depth of sediment. This suggests that microplastic abundance and distribution in seagrass meadows may vary significantly depending on the specific geographical locations within those meadows, and that more complex hydrodynamic factors influence spatial variability at a localised scale.

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