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The distribution of subsurface microplastics in the ocean

Nature 2025 125 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 78 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Lixin Zhu, Erik Zettler, Linda Amaral‐Zettler, Aron Stubbins, Luisa Galgani, Laurent Lebreton, Shiye Zhao, Helge Niemann, R. Nakajima, Matthias Egger, Karin Kvale, Tracy J. Mincer, Martín Thiel, Ryan P. Bos

Summary

This study combined data from nearly 2,000 ocean sampling stations to map how microplastics are distributed at different depths. Smaller microplastics spread more evenly through the water column, while larger ones tend to concentrate near the surface. At deep ocean depths, microplastics make up an increasing share of total organic particles, suggesting they are becoming a significant part of the deep ocean environment.

Study Type Environmental

Marine plastic pollution is a global issue, with microplastics (1 µm-5 mm) dominating the measured plastic count<sup>1,2</sup>. Although microplastics can be found throughout the oceanic water column<sup>3,4</sup>, most studies collect microplastics from surface waters (less than about 50-cm depth) using net tows<sup>5</sup>. Consequently, our understanding of the microplastics distribution across ocean depths is more limited. Here we synthesize depth-profile data from 1,885 stations collected between 2014 and 2024 to provide insights into the distribution and potential transport mechanisms of subsurface (below about 50-cm depth, which is not usually sampled by traditional practices<sup>3,6</sup>) microplastics throughout the oceanic water column. We find that the abundances of microplastics range from 10<sup>-4</sup> to 10<sup>4</sup> particles per cubic metre. Microplastic size affects their distribution; the abundance of small microplastics (1 µm to 100 µm) decreases gradually with depth, indicating a more even distribution and longer lifespan in the water column compared with larger microplastics (100 µm to 5,000 µm) that tend to concentrate at the stratified layers. Mid-gyre accumulation zones extend into the subsurface ocean but are concentrated in the top 100 m and predominantly consist of larger microplastics. Our analysis suggests that microplastics constitute a measurable fraction of the total particulate organic carbon, increasing from 0.1% at 30 m to 5% at 2,000 m. Although our study establishes a global benchmark, our findings underscore that the lack of standardization creates substantial uncertainties, making it challenging to advance our comprehension of the distribution of microplastics and its impact on the oceanic environment.

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