0
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. Marine & Wildlife Remediation Sign in to save

Wastewater treatment plants act as essential sources of microplastic formation in aquatic environments: A critical review

Water Research 2022 183 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.
Rouzheng Chen, Xiaoli Zhao Miaomiao Teng, Miaomiao Teng, Xiaoli Zhao Xiaoli Zhao Xiaowei Wu, Miaomiao Teng, Miaomiao Teng, Miaomiao Teng, Xiaowei Wu, Xiaowei Wu, Miaomiao Teng, Xiaowei Wu, Miaomiao Teng, Miaomiao Teng, Xiaoli Zhao Xiaoli Zhao Rouzheng Chen, Miaomiao Teng, Miaomiao Teng, Xiaoli Zhao Miaomiao Teng, Xiaowei Wu, Xiaoli Zhao Peng Liu, Xiaowei Wu, Xiaowei Wu, Peng Liu, Xiaowei Wu, Peng Liu, Xiaowei Wu, Xiaoli Zhao Miaomiao Teng, Xiaoli Zhao Junyu Wang, Xiaowei Wu, Peng Liu, Junyu Wang, Rouzheng Chen, Xiaowei Wu, Xiaowei Wu, Xiaowei Wu, Xiaowei Wu, Xiaoli Zhao Xiaoli Zhao Xiaoli Zhao Xiaoli Zhao Xiaoli Zhao Xiaoli Zhao Xiaoli Zhao Xiaoli Zhao Xiaoli Zhao Xiaoli Zhao Xiaoli Zhao Xiaoli Zhao Xiaowei Wu, Xiaowei Wu, Xiaowei Wu, Xiaowei Wu, Xiaowei Wu, Xiaowei Wu, Xiaowei Wu, Peng Liu, Peng Liu, Peng Liu, Peng Liu, Miaomiao Teng, Miaomiao Teng, Miaomiao Teng, Miaomiao Teng, Miaomiao Teng, Miaomiao Teng, Miaomiao Teng, Miaomiao Teng, Miaomiao Teng, Miaomiao Teng, Miaomiao Teng, Miaomiao Teng, Xiaoli Zhao Xiaoli Zhao Xiaoli Zhao Junyu Wang, Xiaoli Zhao Xiaowei Wu, Xiaowei Wu, Xiaowei Wu, Xiaowei Wu, Rouzheng Chen, Rouzheng Chen, Peng Liu, Peng Liu, Peng Liu, Xiaowei Wu, Rouzheng Chen, Peng Liu, Xiaoli Zhao Xiaoli Zhao Xiaoli Zhao Xiaoli Zhao Xiaoli Zhao Miaomiao Teng, Rouzheng Chen, Rouzheng Chen, Rouzheng Chen, Miaomiao Teng, Xiaoli Zhao Xiaoli Zhao Peng Liu, Xiaowei Wu, Xiaowei Wu, Peng Liu, Xiaowei Wu, Rouzheng Chen, Xiaowei Wu, Xiaowei Wu, Peng Liu, Xiaoli Zhao Peng Liu, Xiaoli Zhao Miaomiao Teng, Rouzheng Chen, Junyu Wang, Xiaoli Zhao Junyu Wang, Peng Liu, Weigang Liang, Weigang Liang, Weigang Liang, Miaomiao Teng, Xiaowei Wu, Xiaoli Zhao Xiaoli Zhao Weigang Liang, Shixiang Gao, Weigang Liang, Weigang Liang, Weigang Liang, Miaomiao Teng, Xiaoli Zhao Miaomiao Teng, Weigang Liang, Xiaowei Wu, Xiaoli Zhao Xiaowei Wu, Shixiang Gao, Weigang Liang, Shixiang Gao, Xiaowei Wu, Junyu Wang, Xiaoli Zhao Junyu Wang, Junyu Wang, Weigang Liang, Weigang Liang, Weigang Liang, Xiaoli Zhao Shixiang Gao, Weigang Liang, Shixiang Gao, Xiaoli Zhao Weigang Liang, Peng Liu, Xiaoli Zhao Xiaoli Zhao Shixiang Gao, Shixiang Gao, Shixiang Gao, Peng Liu, Xiaoli Zhao Xiaowei Wu, Miaomiao Teng, Miaomiao Teng, Xiaoli Zhao Xia Wang, Miaomiao Teng, Xiaowei Wu, Miaomiao Teng, Shixiang Gao, Shixiang Gao, Miaomiao Teng, Shixiang Gao, Shixiang Gao, Shixiang Gao, Xiaoli Zhao Shixiang Gao, Miaomiao Teng, Junyu Wang, Xia Wang, Xia Wang, Shixiang Gao, Shixiang Gao, Shixiang Gao, Shixiang Gao, Xiaoli Zhao Shixiang Gao, Shixiang Gao, Shixiang Gao, Shixiang Gao, Xiaoli Zhao Xiaoli Zhao

Summary

This review reveals that wastewater treatment plants are significant sources of microplastic formation, as treatment processes fragment and weather larger plastics into secondary microplastics with roughened, oxidized surfaces that are more environmentally reactive.

Study Type Environmental

According to extensive in situ investigations, the microplastics (MPs) determined in current wastewater treatment plants (WWTPs) are mostly aged, with roughened surfaces and varied types of oxygen-containing functional groups (i.e., carbonyl and hydroxyl). However, the formation mechanism of aged MPs in WWTPs is still unclear. This paper systematically reviewed MP fragmentation and generation mechanisms in WWTPs at different treatment stages. The results highlight that MPs are prone to undergo physical abrasion, biofouling, and chemical oxidation-associated weathering in WWTPs at different treatment stages and can be further decomposed into smaller secondary MPs, including in nanoplastics (less than 1000 nm or 100 nm in size), suggesting that WWTPs can act as a formation source for MPs in aquatic environments. Sand associated mechanical crashes in the primary stage, microbes in active sewage sludge-related biodegradation in the secondary stage, and oxidant-relevant chemical oxidation processes (light photons, Cl, and O) in the tertiary stage are the dominant causes of MP formation in WWTPs. For MP formation mechanisms in WWTPs, external environmental forces (shear and stress forces, UV radiation, and biodegradation) can first induce plastic chain scission, destroy the plastic molecular arrangement, and create abundant pores and cracks on the MP surface. Then, the physicochemical properties (modulus of elasticity, tensile strength and elongation at break) of MPs shift consequently and finally breakdown into smaller secondary MPs or nanoscale plastics. Overall, this review provides new insights to better understand the formation mechanism, occurrence, fate, and adverse effects of aged microplastics/nanoplastics in current WWTPs.

Sign in to start a discussion.

Share this paper