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Occurrence, influencing factors and sources of atmospheric microplastics in peri-urban farmland ecosystems of Beijing, China

The Science of The Total Environment 2023 16 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.
Ruixuan Zhang, Luli Lu, Luli Lu, Ruixuan Zhang Li Xu, Ruixuan Zhang, Qixin Wu, Qixin Wu, Qixin Wu, Qixin Wu, Ruixuan Zhang Ruixuan Zhang Qixin Wu, Kang Wang, Jiayu Tian, Kang Wang, Kang Wang, Kang Wang, Jiayu Tian, Jiayu Tian, Luli Lu, Luli Lu, Luli Lu, Qixin Wu, Qixin Wu, Luli Lu, Li Xu, Li Xu, Li Xu, Li Xu, Ruixuan Zhang, Ruixuan Zhang

Summary

Researchers measured atmospheric microplastic deposition in farmland areas on the outskirts of Beijing and found an average of about 167 particles per square meter per day settling from the air. The majority were tiny fibers made of polyester and rayon, likely originating from textile sources and urban activities. The study demonstrates that atmospheric fallout is a meaningful pathway for microplastic contamination of agricultural soils near cities.

Polymers

Atmosphere is an important component of the microplastics (MPs) cycle. However, studies on atmospheric MPs in peri-urban farmland ecosystems are limited. Herein, the occurrence, influencing factors and geographic sources of atmospheric MPs in peri-urban farmland ecosystems have been analyzed. The average deposition flux of atmospheric MPs was found to be 167.09 ± 92.03 item·m·d. Around 68 % MPs had particle size <1000 μm, while the main colors of MPs were black (40.71 %) and blue (20.64 %). Approximately 91 % MPs were fibers, while polyethylene terephthalate (49 %) and rayon (36.93 %) were observed as the major microplastic types. The main factors influencing the atmospheric deposition of MPs were gross domestic product (GDP), population density, air pressure, and wind direction. Deposition fluxes exhibited positive correlations with GDP, population density and air pressure, and negative correlations with wind direction. Combined with the backward trajectory model, MPs were mainly found to be originated from the southeast in September and from the northwest in October-February. The study of atmospheric MPs in farmland ecosystems in peri-urban areas is important for the protection of ecological environment, prevention of human diseases and control of MPs pollution.

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