Division of Environmental Science and Ecological Engineering , Korea University , 145 Anam-ro , Seongbuk-gu, Seoul 02841 , Republic of Korea.
Dongmoon ENT Co. , 12 Digital-ro , Guro-gu, Seoul 08377 , Republic of Korea.
Environ Sci Technol. 2020 Feb 4;54(3):1503-1512. doi: 10.1021/acs.est.9b04929. Epub 2020 Jan 14.
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 in influents and 0.004 to 0.51 L 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.
大量微塑料被认为是通过废水处理厂(WWTP)排放到淡水环境中的。为了评估微塑料在韩国 WWTP 中的存在情况,首次在 50 个具有大容量处理能力的代表性 WWTP 中进行了全国性研究。对于进水,使用了Grab 采样和实验室过滤,而对于出水,则使用了定制的采样装置进行原位过滤。在使用解剖显微镜和傅里叶变换红外光谱法识别微塑料之前,先用湿过氧化物法和密度分离法预处理滤液。对微塑料的汇总分析表明,它们主要呈碎片状,热塑性塑料和合成纤维是 WWTP 中主要的微塑料材料。进水浓度范围为 10 至 470 L,出水浓度范围为 0.004 至 0.51 L。在 31 个 WWTP 中,微塑料在废水处理过程中的去除效率计算为 98.7-99.99%。此外,使用先进的除磷工艺的 WWTP 比未实施此类工艺的 WWTP 具有更高的去除效率。尽管对于较小的颗粒不适用,但幂律分布成功地描述了 100 μm 以下的微塑料颗粒尺寸。这项全面的监测研究提供了韩国 WWTP 中微塑料当前水平和特征的信息。