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

AI Article Synopsis

  • Microplastics (MPs) are widespread environmental pollutants found in various ecosystems, and wastewater treatment plants (WWTPs) significantly contribute to their release.
  • A meta-analysis of 78 WWTPs revealed that removal rates of MPs varied based on treatment processes, with oxidation ditch and conventional activated sludge methods achieving over 90% removal efficiency.
  • Factors like the shape, size, and type of polymer influence how effectively MPs are removed, with larger particles and certain materials such as polyethylene showing higher removal rates compared to smaller or different shapes of MPs.

Article Abstract

Microplastics (MPs) are ubiquitous emerging pollutants that have been found in the marine, freshwater, air, and soil environments. Wastewater treatment plants (WWTPs) play an important role in releasing MPs to the environment. Therefore, understanding the occurrence, fate, and removal mechanism of MPs in WWTPs is of great importance towards microplastic control. In this review, the occurrence characteristics and removal rates of MPs in 78 WWTPs from 57 studies were discussed based on Meta-analysis. Specifically, the key aspects regarding MPs removal in WWTPs, such as wastewater treatment processes and MPs shapes, sizes, and polymer compositions were analyzed and compared. The results showed that:① the abundances of MPs in the influent and effluent were 1.56×10-3.14×10 n·L and 1.70×10-3.09×10 n·L, respectively. The abundance of MPs in the sludge ranged from 1.80×10 to 9.38×10 n·g. 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%.

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Source
http://dx.doi.org/10.13227/j.hjkx.202208121DOI Listing

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