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Global modeling of the role of microplastics in riverine pathogen transport, exposure, and risks
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Global modeling of the role of microplastics in riverine pathogen transport, exposure, and risks
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This study developed a plastic reduction roadmap for small island developing states (SIDS), addressing the unique vulnerabilities and capacity constraints these nations face in managing plastic waste and marine pollution. The roadmap provides country-specific guidance for transitioning to plastic-free coastal economies.
Global Modeling of The Role of Microplastics in Riverine Pathogen Transport, Exposure, And Risks
Trailing the flow: source, fate and sink of microplastics in global rivers
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This review synthesized global research on microplastic pollution in rivers, covering sources, entry routes, and the key processes governing transport and transformation—including weathering, aggregation, sinking, and resuspension—along with ecotoxicological and socioeconomic impacts. Because rivers are the primary conduit transferring land-based microplastics to the ocean, understanding riverine dynamics is essential for designing effective interception strategies before contamination reaches marine food webs and human seafood supplies.
Association of Potential Human Pathogens with Microplastics in Freshwater Systems
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Researchers reviewed evidence that microplastics in freshwater systems act as vectors for human bacterial pathogens, showing that the hydrophobic plastic surfaces and biofilm-forming capacity of microplastics enable colonization and transport of potentially dangerous microorganisms through aquatic environments and into drinking water supplies.
The Role of Rivers in Microplastics Spread and Pollution
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Rivers function as the primary transport corridors for microplastics from land-based sources to oceans, carrying particles downstream through complex hydrological and biological interactions. Targeting river pollution hotspots with intervention measures is one of the most impactful strategies available for reducing the total global flux of microplastics into marine environments.
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