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National Reconnaissance Survey of Microplastics in Municipal Wastewater Treatment Plants in Korea

Environmental Science & Technology 2020 152 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 45 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Jung‐Hwan Kwon Hee-Jin Park, Hyun-Joong Kang, Jung‐Hwan Kwon Jung‐Hwan Kwon Hee-Jin Park, Pil-Gon Kim, Min-Ju Oh, Hee-Jin Park, Min-Ju Oh, Pil-Gon Kim, Pil-Gon Kim, Pil-Gon Kim, Jung‐Hwan Kwon Jung‐Hwan Kwon Jung‐Hwan Kwon Jung‐Hwan Kwon Jung‐Hwan Kwon Jung‐Hwan Kwon Jung‐Hwan Kwon Jung‐Hwan Kwon Jung‐Hwan Kwon Jung‐Hwan Kwon Jung‐Hwan Kwon Jung‐Hwan Kwon Jung‐Hwan Kwon Jung‐Hwan Kwon Hee-Jin Park, Won Seok Lee, Hyun-Joong Kang, Jung‐Hwan Kwon Pil-Gon Kim, Pil-Gon Kim, Gwonbo Kim, Jung‐Hwan Kwon Gwonbo Kim, Jung‐Hwan Kwon Jung‐Hwan Kwon Jung‐Hwan Kwon Jung‐Hwan Kwon Dong Hwan Jeong, Jung‐Hwan Kwon Jung‐Hwan Kwon Jung‐Hwan Kwon Byoung-Kyu Ju, Pil-Gon Kim, Byoung-Kyu Ju, Jung‐Hwan Kwon Jung‐Hwan Kwon Won Seok Lee, Jung‐Hwan Kwon Jung‐Hwan Kwon Hyen-Mi Chung, Hyen-Mi Chung, Jung‐Hwan Kwon Hyun-Joong Kang, Jung‐Hwan Kwon Jung‐Hwan Kwon

Summary

A nationwide survey of South Korean wastewater treatment plants found that large quantities of microplastics are discharged into freshwater environments, with treatment processes only partially effective at removing them. The study highlights WWTPs as a major pathway for microplastic entry into rivers and ultimately the ocean.

Study Type Environmental

Large quantities of microplastics are thought to be emitted to freshwater environments via wastewater treatment plants (WWTPs). To evaluate the occurrence of microplastics in Korean WWTPs, a nationwide study was conducted for the first time in 50 representative WWTPs with large treatment capacities. Grab sampling and laboratory filtration were used for influents, whereas in situ filtration using a custom-made sampling device was used for effluents. The filtrates were pretreated using wet peroxidation and density separation prior to the identification of microplastics with a dissection microscope and Fourier-transform infrared spectroscopy. Pooled analyses of the microplastics revealed that they were predominantly fragment-shaped, and thermoplastics and synthetic fibers were the dominant microplastic materials in WWTPs. The concentration ranged from 10 to 470 L<sup>-1</sup> in influents and 0.004 to 0.51 L<sup>-1</sup> in effluents. The removal efficiency of microplastics during wastewater treatment was calculated to be 98.7-99.99% in 31 WWTPs. Additionally, WWTPs using advanced phosphorus removal processes exhibited higher removal efficiency than those not implementing such processes. Power-law distribution was successful in describing microplastic particle sizes down to 100 μm, although it was not applicable for smaller particles. This comprehensive monitoring study provides information on the current level and characteristics of microplastics in WWTPs in Korea.

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