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Centennial Records of Microplastics in Lake Cores in Huguangyan Maar Lake, China

Environmental Science & Technology 2024 16 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Qingsong Ji, Qingsong Ji, Yanxia Zhang, Yubao Xia, Xinkai Wang, Maoyong He, Yi Yang, Clive E. Sabel, Bin Huang, Feng Zhu, Min Shao, Enze Xie, Guojing Yan, Guonai Li, Aoyu Zhou, Huan He, Limin Zhang, Zhangdong Jin

Summary

Researchers analyzed lake sediment cores from Huguangyan Maar Lake in China to reconstruct a century-long record of microplastic pollution. They found that microplastic accumulation in the sediment closely tracked the history of global plastic production, with a sharp increase beginning in the mid-twentieth century. The study demonstrates that even isolated lakes without direct inlets can accumulate significant microplastic contamination, likely through atmospheric deposition.

Polymers
Study Type Environmental

Microplastic records from lake cores can reconstruct the plastic pollution history. However, the associations between anthropogenic activities and microplastic accumulation are not well understood. Huguangyan Maar Lake (HML) is a deep-enclosed lake without inlets and outlets, where the sedimentary environment is ideal for preserving a stable and historical microplastic record. Microplastic (size: 10-500 μm) characteristics in the HML core were identified using the Laser Direct Infrared Imaging system. The earliest detectable microplastics appeared unit in 1955 (1.1 items g-1). The microplastic abundance ranged from n.d. to 615.2 items g-1 in 1955-2019 with an average of 134.9 items g-1. The abundance declined slightly during the 1970s and then increased rapidly after China's Reform and Opening Up in 1978. Sixteen polymer types were detectable, with polyethylene and polypropylene dominating, accounting for 23.5 and 23.3% of the total abundance, and the size at 10-100 μm accounted for 80%. Socioeconomic factors dominated the microplastic accumulation based on the random forest modeling, and the contributions of GDP per capita, plastic-related industry yield, and total crop yield were, respectively, 13.9, 35.1, and 9.3% between 1955-2019. The total crop yield contribution further increased by 1.7% after 1978. Coarse sediment particles increased with soil erosion exacerbated microplastics discharging into the sediment.

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