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[Effects of Wastewater Treatment Processes on the Removal Efficiency of Microplastics Based on Meta-analysis].

Li-Song FuLei HouYanxia WangXiaolin LiWanbin WangQibin Liang

2023PubMedEnvironmental Science被引 2

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摘要

. ② The total removal rate (>90%) of MPs by WWTPs using oxidation ditch, biofilm, and conventional activated sludge treatment processes was higher than that using sequencing batch activated sludge, anaerobic-anoxic-aerobic, and anoxic-aerobic processes. ③ The removal rate of MPs in primary, secondary, and tertiary treatment process were 62.87%, 55.78%, and 58.45%, respectively. The combination process of "grid+ sedimentation tank+primary sedimentation tank" had the highest removal rate towards MPs in primary treatment processes, and the membrane bioreactor had the highest one beyond other secondary treatment processes. Filtration was the best process in tertiary treatment. ④ The film, foam, and fragment MPs were easier to remove (>90%) than fiber and spherical (<90%) MPs by WWTPs. The MPs with particle size larger than 0.5 mm were easier to remove than those with particle size smaller than 0.5 mm. The removal efficiencies of polyethylene (PE), polyethylene terephthalate (PET), and polypropylene (PP) MPs were higher than 80%.

引用本文(GB/T 7714)

Li-Song Fu, Lei Hou, Yanxia Wang, 等. [Effects of Wastewater Treatment Processes on the Removal Efficiency of Microplastics Based on Meta-analysis].[J]. PubMed, 2023.

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DOI:https://doi.org/10.13227/j.hjkx.202208121

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