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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 Remediation Sign in to save

Significant effects of rural wastewater treatment plants in reducing microplastic pollution: A perspective from China's southwest area

Journal of Hazardous Materials 2024 13 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 50 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Borui Zhang, Meixue Peng, Meixue Peng, Shilin Gao, Shilin Gao, Qixin Wu, Qixin Wu, Qixin Wu, Qixin Wu, Qixin Wu, Meixue Peng, Borui Zhang, Shilin Gao, Shilin Gao, Meixue Peng, Meixue Peng, Meixue Peng, Meixue Peng, Shilin Gao, Jie Zeng Meixue Peng, Qixin Wu, Qixin Wu, Jie Zeng Jie Zeng Jie Zeng Liang Zhu, Jie Zeng

Summary

Researchers studied microplastic pollution at rural wastewater treatment plants in southwestern China and found influent concentrations of 3.8 to 8.2 particles per liter, with removal rates of only 14 to 55%. Based on national sewage discharge data, they estimated China's annual microplastic emissions through wastewater at nearly 3,000 tons, with rural areas contributing about 25%. The study highlights that rural wastewater systems, though often overlooked, represent a significant source of microplastic pollution entering waterways.

Study Type Environmental

Sewage systems are a major source for microplastics in riverine exports to oceans. Urban areas are generally considered hotspots for microplastic discharge, whereas emissions from rural areas remain largely understudied. Hence, this study investigated the abundance, characteristics, and polymer types of microplastics in rural wastewater treatment plants (WWTPs) in Guiyang and estimated the annual microplastic emissions of China based on sewage discharge. The influent abundance of microplastics was 3.8-8.2 items/L, the effluent abundance was 3.1-5.9 items/L, with a lower removal rate of 14.4 %-54.6 %, which might be influenced by lower operating loads and influent concentrations. Raman spectroscopy analysis revealed that polyvinyl alcohol (PVA) was the predominant polymer type. Rural WWTPs were more effective at removing large-sized particles (> 0.1 mm) and films, resulting in higher removal effectiveness by weight (49.1 %) compared to urban WWTPs (30.8 %). Based on the abundance of microplastics in WWTPs within the study area and China's annual sewage discharge, this study estimated the microplastic emissions released through sewage in China in 2022. The annual microplastic emissions through sewage in China were estimated to be 2995.7 tons, with rural and urban areas contributing 25.1 % and 74.9 %, respectively. Approximately 724.8 tons and 1001.6 tons of microplastics were removed from rural and urban WWTPs, respectively. This work indicates the unignorable emissions of microplastics from rural sewage and highlights the crucial role of rural WWTPs in reducing microplastic pollution.

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