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Microplastics extraction from wastewater treatment plants: Two-step digestion pre-treatment and application

Water Research 2023 30 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.
Ziqi Zhang, Gaoyang Luo, Yu-Sheng Pan, Yuanyuan Kang, Yu-Sheng Pan, Gaoyang Luo, Ziqi Zhang, Yuanyuan Kang, Gaoyang Luo, Ziqi Zhang, Fan Lü, Fan Lü, Fan Lü, Wenzong Liu, Fan Lü, Xu Zhou Fan Lü, Yu-Sheng Pan, Shu-Hong Gao, Yuanyuan Kang, Wenzong Liu, Shu-Hong Gao, Fan Lü, Fan Lü, Yu-Sheng Pan, Yuanyuan Kang, Fan Lü, Qun Gao, Yuanyuan Kang, Gaoyang Luo, Fan Lü, Qun Gao, Yuanyuan Kang, Yuanyuan Kang, Ziqi Zhang, Fan Lü, Fang Huang, Qun Gao, Yuanyuan Kang, Yuanyuan Kang, Fang Huang, Yuanyuan Kang, Xu Zhou Xu Zhou Xu Zhou Yuanyuan Kang, Yuanyuan Kang, Aijie Wang, Qun Gao, Fan Lü, Fan Lü, Fan Lü, Yu-Sheng Pan, Fan Lü, Wenzong Liu, Aijie Wang, Wenzong Liu, Yuanyuan Kang, Shu-Hong Gao, Yu-Sheng Pan, Yu-Sheng Pan, Shu-Hong Gao, Yuanyuan Kang, Yu-Sheng Pan, Gaoyang Luo, Aijie Wang, Fan Lü, Xu Zhou Fang Huang, Fang Huang, Wenzong Liu, Gaoyang Luo, Ziqi Zhang, Aijie Wang, Fan Lü, Wenzong Liu, Fan Lü, Xu Zhou Fan Lü, Aijie Wang, Fan Lü, Aijie Wang, Aijie Wang, Aijie Wang, Aijie Wang, Aijie Wang, Aijie Wang, Shu-Hong Gao, Shu-Hong Gao, Shu-Hong Gao, Shu-Hong Gao, Xu Zhou

Summary

Researchers developed an optimized two-step digestion method for extracting microplastics from wastewater treatment plant samples, achieving high recovery rates especially in organic-rich matrices like sludge, and applied it across multiple treatment stages.

Study Type Environmental

As the gathering place of urban wastewater, wastewater treatment plants (WWTPs) are indispensable for removing microplastics (MPs), one of the emerging contaminants of great concern, from cities into the natural environment. A reliable and efficient extraction method for MPs, especially in organic-rich matrices, such as sludge samples, is the basis for studying MPs contamination, while it is still lacking. The digestion process, which requires further optimisation, is the most important step during extraction. In this study, we developed and optimised a two-step digestion process to extract MPs and proposed a recommended dosage of digestion reagents based on the mixed liquid volatile suspended solids (MLVSS) level of the sample. Successive addition of 30% HO + 1 M HNO (v:v = 1:1, T = 60 °C, t = 5 h + 5 h) could efficiently extract MPs from sludge samples (over 90%), and the recommended dosage of digestion reagent was 100 ml 30% HO+100 ml 1 M HNO with the sample MLVSS lower than approximately 0.43 g. This new method was also applied to examine the characteristics of MPs in two typical WWTPs (anaerobic-anoxic-oxic and biofilter processes) in Shenzhen. The concentrations of MPs in the influent, effluent and dewatered sludge were approximately 114.00 n/L, 6.00 n/L, and 126.00 n/g (dry weight) in WWTP A, whereas 404.00 n/L, 22.00 n/L, and 204.00 n/g (dry weight) in WWTP B, respectively. Rayon and polyester were the dominant polymers in both the WWTPs. Fibers accounted for the largest proportion of the influent and effluent. Sizes between 0.20-0.50 mm were most detected. This study provides a new and efficient reference method to extract MPs from WWTPs samples, especially sludge sample, with less MPs loss and more beneficial to subsequent identification.

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