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Accumulation of microplastics in predatory birds near a densely populated urban area

The Science of The Total Environment 2024 35 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
C. H. Wayman, Miguel González-Pleiter, Francisca Fernández‐Piñas, Elisa L. Sorribes, Rocío Fernández-Valeriano, Irene López-Márquez, Fernando González, Roberto Rosal

Summary

Researchers found microplastics in every single digestive tract examined from four species of predatory birds near a major city, and 65% also had microplastics in their respiratory systems. On average, each bird contained about 8 microplastic particles, mostly fibers, likely ingested through contaminated prey. This is the first study to document microplastic contamination in the breathing organs of birds of prey, showing how plastic pollution moves up the food chain.

Polymers

The pollution due to plastic and other anthropogenic particles has steadily increased over the last few decades, presenting a significant threat to the environment and organisms, including avian species. This research aimed to investigate the occurrence of anthropogenic pollutants in the digestive and respiratory systems of four birds of prey: Common Buzzard (Buteo buteo), Black Kite (Milvus migrans), Eurasian Sparrowhawk (Accipiter nisus), and Northern Goshawk (Accipiter gentilis). The results revealed widespread contamination in all species with microplastics (MPs) and cellulosic anthropogenic fibers (AFs), with an average of 7.9 MPs and 9.2 AFs per specimen. Every digestive system contained at least one MP, while 65 % of specimens exhibited MPs in their respiratory systems. This is the work reporting a high incidence of MPs in the respiratory system of birds, clearly indicating inhalation as a pathway for exposure to plastic pollution. The content of MPs and AFs varied significantly when comparing specimens collected from central Madrid with those recovered from other parts of the region, including rural environments, suburban areas, or less populated cities. This result aligns with the assumption that anthropogenic particles disperse from urban centers to surrounding areas. Additionally, the dominant particle shape consisted of small-sized fibers (> 98 %), primarily composed of polyester, polyethylene, acrylic materials, and cellulose fibers exhibiting indicators of industrial treatment. These findings emphasize the necessity for further research on the impact of plastic and other anthropogenic material contamination in avian species, calling for effective strategies to mitigate plastic pollution.

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