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Contrasting Microplastic Characteristics in Macroinvertebrates from Two Independent but Adjacent Rivers in Kruger National Park, South Africa

Water 2025 Score: 38 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Hindrik Bouwman Purvance Shikwambana, Purvance Shikwambana, Hindrik Bouwman Llewellyn C. Foxcroft, Hindrik Bouwman Hindrik Bouwman Llewellyn C. Foxcroft, Hindrik Bouwman Hindrik Bouwman Jonathan C. Taylor, Hindrik Bouwman Judith Botha, Purvance Shikwambana, Hindrik Bouwman Jonathan C. Taylor, Hindrik Bouwman Jonathan C. Taylor, Hindrik Bouwman Hindrik Bouwman Hindrik Bouwman Hindrik Bouwman

Summary

Researchers investigated microplastics in benthic macroinvertebrates — including filter feeders, predators, and grazers — from the Olifants and Sabie rivers in Kruger National Park, finding an average of 1.0 MPs per organism and significantly higher burdens in filter feeders (8.8/organism) and predators (8.5/organism) than in grazers.

Study Type Environmental

Freshwater macroinvertebrates, often used as indicators of environmental quality for freshwater ecosystems, may be compromised by microplastics (MPs). We investigated MPs occurring in benthic filter feeder, predator, and grazer macroinvertebrates collected from the catchment-independent but adjacent Olifants and Sabie rivers of Kruger National Park as duplicates. We counted 369 MPs in 376 organisms (1.0 n/organism) with a mean of 8.8 n/organism, 8.5 n/organism, and 0.16 n/organism in filter feeders, predators, and grazers, respectively. Based on MP colour, size, and morphotype, significant differences in proportional compositions between predatorial macroinvertebrates and all other macroinvertebrates in both rivers preclude predatorial macroinvertebrates as a proxy indicator for the other macroinvertebrates. Proportional compositions of MP characteristics in macroinvertebrates differed in all respects between the two adjacent rivers, except for one aspect. Microplastic morphotypes occurred in equal proportions in macroinvertebrates of both rivers, suggesting biological selection based on morphotype but not MP colour or size. We found little evidence of trophic transfer between feeding guilds. Of the six polymer types observed (n = 50), butyl and chlorobutyl dominated. Waste mismanagement, single-use plastics, inefficient wastewater treatment plants, mining, and road transportation may be the major MP pollution sources that need mitigation. Microplastics in freshwater ecosystems of nature conservation areas need more attention due to high biodiversity that may be exposed.

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