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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 Sign in to save

Occurrence and distribution of microplastics in domestic, industrial, agricultural and aquacultural wastewater sources: A case study in Changzhou, China

Water Research 2020 207 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.
Lei Duan, Han Qu, Han Qu, Han Qu, Fang Wang Fang Wang Bin Wang, Han Qu, Han Qu, Bin Wang, Qian Sui, Bin Wang, Fang Wang Qian Sui, Gang Yu, Fang Wang Bin Wang, Bin Wang, Bin Wang, Fang Wang Lei Duan, Bin Wang, Bin Wang, Bin Wang, Han Qu, Qian Sui, Bin Wang, Han Qu, Fang Wang Fang Wang Bin Wang, Bin Wang, Bin Wang, Han Qu, Fang Wang Qian Sui, Yizhe Zhang, Yizhe Zhang, Lei Duan, Yitong Zhou, Gang Yu, Han Qu, Qian Sui, Qian Sui, Lei Duan, Gang Yu, Qian Sui, Bin Wang, Qian Sui, Yizhe Zhang, Gang Yu, Gang Yu, Bin Wang, Dongjiong Xu, Qian Sui, Han Qu, Bin Wang, Gang Yu, Qian Sui, Dongjiong Xu, Qian Sui, Han Qu, Gang Yu, Qian Sui, Gang Yu, Bin Wang, Qian Sui, Bin Wang, Bin Wang, Fang Wang Bin Wang, Qian Sui, Gang Yu, Gang Yu, Bin Wang, Gang Yu, Bin Wang, Qian Sui, Han Qu, Gang Yu, Fang Wang Fang Wang

Summary

Researchers investigated microplastic occurrence across diverse wastewater sources in Changzhou, China, including domestic, industrial, agricultural, and aquaculture facilities. The study found microplastics present in all types of wastewater, with varying compositions and abundances, highlighting the multiple pathways through which microplastics enter the environment from human activities.

Study Type Environmental

The extensive application of plastic in human life brings about microplastic (MP) pollution in the environment. Identifying the potential sources of MPs is necessary to diminish its pollution. In this study, the occurrence, composition and distribution of MPs in the influents and effluents from 9 domestic wastewater treatment plants (WWTPs), 5 industrial WWTPs, wastewater of 10 industrial plants, 4 livestock farms and 4 fish ponds in China were investigated. Water samples were enzymatically treated followed by digestion with hydrogen peroxide and density separation. MPs were characterized using micro-Raman spectroscopy and were categorized by shape, size and color. Results showed that MP abundance in the influents and effluents of domestic WWTPs was 18-890 and 6-26 n·L, respectively, with the removal efficiency ranging from 35 to 98%. The effluents of industrial WWTPs contained 6-12 n·L and the levels of MPs in the wastewater of industrial plants, livestock farms and fish ponds were in the range of 8-23, 8-40 and 13-27 n·L, respectively. No significant differences of MP abundance were demonstrated among effluents or wastewater of different sources, indicating they all constitute sources of MP pollution. Polyethylene (PE), polypropylene (PP) and polystyrene (PS) made up almost 83% of the total MPs. Fragment and film were the most abundant shapes and the majority of MPs were smaller than 500 μm. Polymer type and shape in different sources did not vary statistically, however, there were slight differences among different sources concerning size and color of MPs. This study could fill MP data gaps regarding different sources, guide future monitoring work and policy making.

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