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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 Human Health Effects Sign in to save

Environmental pollution with antifouling paint particles: Distribution, ecotoxicology, and sustainable alternatives

Marine Pollution Bulletin 2021 70 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 55 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Fernando G. Torres, Fernando G. Torres, Fernando G. Torres, Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre Gabriel Enrique De-la-Torre

Summary

This review examines antifouling paint particles as a type of microplastic pollution loaded with toxic biocidal compounds in the marine environment. Researchers found that these particles are mainly concentrated around boatyards and port areas and contribute significantly to overall microplastic pollution, while also discussing recent advances in nontoxic, biobased antifouling alternatives.

Study Type Environmental

Antifouling paint particles (APPs) are a type of paint particle loaded with toxic biocidal compounds. The present review focused on the current knowledge in respect of the abundance, distribution, and ecotoxicological effects of APPs in the marine environment. Also, the recent advances in nontoxic biobased antifouling paints were discussed as potential alternatives to contemporary marine coatings. The presence of APPs is mainly associated with boat maintenance in boatyards and port areas. Conventional microplastic assessments showed a significant contribution of paint particles to the morphological composition. Moreover, recent ecotoxicological studies demonstrated that environmental concentrations of APPs induce mortality (LC) in sediment dwellers and macroinvertebrates. Novel biocides from natural sources and biopolymer binders in the formulation of antifouling paints are proposed as potential alternatives to conventional antifouling paints. The toxicity of most natural biocides is negligible to nontargeted species, while biopolymers are expected to prevent the formation of APPs.

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