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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

Microplastic abundance, distribution, and diversity in water and sediments along a subtropical river system

Environmental Science and Pollution Research 2023 39 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.
Ross N. Cuthbert, Masimini S. Nkosi, Tatenda Dalu, Ross N. Cuthbert, Tatenda Dalu, Tatenda Dalu, Purvance Shikwambana, Tatenda Dalu, Purvance Shikwambana, Tatenda Dalu, Tatenda Dalu, Tatenda Dalu, Masimini S. Nkosi, Ross N. Cuthbert, Masimini S. Nkosi, Ross N. Cuthbert, Ross N. Cuthbert, Ross N. Cuthbert, Ross N. Cuthbert, Naicheng Wu Ross N. Cuthbert, Ross N. Cuthbert, Ross N. Cuthbert, Tatenda Dalu, Tatenda Dalu, Tatenda Dalu, Tatenda Dalu, Tatenda Dalu, Tatenda Dalu, Tatenda Dalu, Tatenda Dalu, Tatenda Dalu, Naicheng Wu Naicheng Wu Tatenda Dalu, Tatenda Dalu, Ross N. Cuthbert, Ross N. Cuthbert, Tatenda Dalu, Ross N. Cuthbert, Tatenda Dalu, Naicheng Wu Purvance Shikwambana, Ross N. Cuthbert, Ross N. Cuthbert, Tatenda Dalu, Tatenda Dalu, Ross N. Cuthbert, Tatenda Dalu, Tatenda Dalu, Ross N. Cuthbert, Ross N. Cuthbert, Tatenda Dalu, Tatenda Dalu, Ross N. Cuthbert, Naicheng Wu Naicheng Wu Naicheng Wu Tatenda Dalu, Tatenda Dalu, Ross N. Cuthbert, Tatenda Dalu, Naicheng Wu Naicheng Wu Naicheng Wu

Summary

Researchers investigated microplastic abundance in water and sediments along a subtropical river system in South Africa, finding widespread contamination with fibers as the dominant shape and polyethylene as the most common polymer type.

Study Type Environmental

Microplastic pollution in aquatic environments has been a ubiquitous concern in recent years, owing to their rapid production combined with poor waste management practices. However, information on freshwater microplastics in the Global South is still scarce, despite growing research on freshwater microplastics in recent years, particularly within the Global North. To help address this knowledge gap, we studied water and sediment microplastic dynamics along a subtropical river system, i.e. Crocodile River around the Nelspruit City area (South Africa), across three different seasons (i.e. cool-dry, hot-dry, hot-wet) using a combination of diversity indices and multivariate analyses. Microplastics were more abundant during the cool-dry season in the surface water samples (mean 1058 particles m) and high during the hot-dry season (mean 568 particles kg dwt) in the sediment samples. The hot-wet season had a low particle density in both surface water (mean 625 particles m) and sediments (mean 86 particles kg dwt) samples. Microplastic shapes were dominated by fibres and fragments, with the colour scheme dominated by transparent, blue, and black. The abundance of microplastics was positively correlated with pH and resistivity, and negatively with river flow. Wastewater was attributed as a primary source of microplastics, particularly because of the observed dominant fibre microplastics, usually released during laundry. Our results suggest that Crocodile River and its tributaries are temporary sinks of microplastics during periods of low rainfall. Implications of this pollution are far-reaching, including effects on residents who are dependent on the Crocodile River as a source of drinking water and aquatic biota which may be exposed to these pollutants.

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