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Abundance and distribution of microplastics in benthic sediments and Cladocera taxa in a subtropical Austral reservoir

Integrated Environmental Assessment and Management 2024 10 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.
Tatenda Dalu Tatenda Dalu Tatenda Dalu Nombuso N. Themba, Nombuso N. Themba, Nombuso N. Themba, Ross N. Cuthbert, Linton F. Munyai, Tatenda Dalu Tatenda Dalu Tatenda Dalu Linton F. Munyai, Ross N. Cuthbert, Nombuso N. Themba, Tatenda Dalu Tatenda Dalu Ross N. Cuthbert, Ross N. Cuthbert, Ross N. Cuthbert, Ross N. Cuthbert, Ross N. Cuthbert, Tatenda Dalu Tatenda Dalu Nombuso N. Themba, Nombuso N. Themba, Tatenda Dalu Nombuso N. Themba, Linton F. Munyai, Ross N. Cuthbert, Farai Dondofema, Tatenda Dalu Tatenda Dalu Ross N. Cuthbert, Ross N. Cuthbert, Tatenda Dalu Nombuso N. Themba, Farai Dondofema, Tatenda Dalu Tatenda Dalu Linton F. Munyai, Linton F. Munyai, Ross N. Cuthbert, Ross N. Cuthbert, Tatenda Dalu Tatenda Dalu Tatenda Dalu Farai Dondofema, Farai Dondofema, Farai Dondofema, Farai Dondofema, Ross N. Cuthbert, Ross N. Cuthbert, Linton F. Munyai, Ross N. Cuthbert, Linton F. Munyai, Tatenda Dalu Linton F. Munyai, Linton F. Munyai, Farai Dondofema, Ross N. Cuthbert, Ross N. Cuthbert, Ross N. Cuthbert, Tatenda Dalu Tatenda Dalu Linton F. Munyai, Farai Dondofema, Farai Dondofema, Linton F. Munyai, Tatenda Dalu Tatenda Dalu Tatenda Dalu Tatenda Dalu Linton F. Munyai, Linton F. Munyai, Tatenda Dalu Linton F. Munyai, Ross N. Cuthbert, Ross N. Cuthbert, Tatenda Dalu Tatenda Dalu

Summary

Researchers assessed the abundance and distribution of microplastics in sediments and tiny crustaceans called Cladocera in a subtropical reservoir in the Southern Hemisphere. They found microplastics throughout the sediment layers and within the bodies of filter-feeding organisms, indicating contamination of both benthic and pelagic compartments. The study raises concerns about microplastics entering freshwater food webs through these small but ecologically important organisms.

Study Type Environmental

Pollution of the natural environment by microplastics has become a global issue in ecosystems as it poses a potential long-term threat to biota. Microplastics can accrue in high abundances in sediments of aquatic ecosystems while also contaminating pelagic filter feeders, which could transfer pollutants up trophic webs. We assess the abundance and distribution of microplastics in benthic sediments and Cladocera taxa in a subtropical Austral reservoir using a combination of geospatial techniques, physicochemical analyses, diversity indices, and multivariate statistics between two seasons (i.e., hot-wet and cool-dry). We found particularly high densities of microplastics during the cool-dry season for both sediments (mean 224.1 vs. 189 particles kg<sup>-1</sup> dry weight) and Cladocera taxa (0.3 particles per individual). Cladocera microplastic shapes were dominated by fibers with high densities of the transparent color scheme. Pearson correlation results indicated that sediment microplastic abundances were negatively correlated with chlorophyll-a concentration, temperature, and resistivity, whereas they were positively correlated with pH and salinity during the hot-wet season, with no variables significant in the cool-dry season. Cladocera microplastic abundances were positively correlated with conductivity and salinity during the cool-dry season, but no variables in the hot-wet season. These findings provide insights into the role of reservoirs as microplastic retention sites and the potential for uptake and transfer from lower trophic groups. These insights can be used to strengthen future monitoring and intervention strategies. Integr Environ Assess Manag 2024;20:2256-2270. © 2024 SETAC.

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