Yu Ran, Li Peng, Shen Rong
Department of Bioengineering, Beijing Polytechnic, Daxing District, Beijing 100176, China.
Xinkai Environment Investment Co., Ltd, Tongzhou District, Beijing 101101, China; Beijing Zhiyu Tiancheng Design Consulting Co., Ltd, Tongzhou District, Beijing 101101, China E-mail:
Water Sci Technol. 2025 Feb;91(4):438-452. doi: 10.2166/wst.2025.023. Epub 2025 Feb 20.
Plastics are used in large quantities in food packaging and industrial products in China, which results in ecological risks of microplastics (MPs) to the environment. In this study, the MPs' removal efficiency of a full-scale wastewater treatment plant (WWTP) and the internal interaction of microorganisms, antibiotic resistance genes (ARGs), and heavy metals with MPs were investigated. The dominant MPs in urban sewage were polyurethane (PU), acrylate copolymer (ACR), fluororubber, and polyethylene. MPs in wastewater were removed by WWTP with a total efficiency of 76%. The removal efficiencies of ACR, ethylene-vinyl acetate copolymer, polybutadiene, poly(tetrafluoroethylene), polystyrene, and polypropylene reached 100%. The highest concentration of MPs PU in the influent got a removal efficiency of 93.41%. The interactions between MPs, heavy metals, microorganisms, and ARGs involved adsorption, hydrogen bonds, coprecipitation, and polar interaction. Heavy metals and MPs formed larger aggregated particles, which were removed in the primary process. Heavy metals accumulated in sludge pose ecological risks to soil during landfill or compost to fertilizer. The release of MPs from WWTPs leads to accumulation in organisms and soil. It may affect the entire food chain and promote the transmission of ARGs in the environment, posing potential threats to the entire ecosystem.
在中国,塑料大量用于食品包装和工业产品,这导致微塑料(MPs)对环境产生生态风险。本研究调查了一座全尺寸污水处理厂(WWTP)对MPs的去除效率以及微生物、抗生素抗性基因(ARGs)和重金属与MPs之间的内在相互作用。城市污水中的主要MPs为聚氨酯(PU)、丙烯酸酯共聚物(ACR)、氟橡胶和聚乙烯。污水处理厂对废水中MPs的总去除效率为76%。ACR、乙烯-醋酸乙烯酯共聚物、聚丁二烯、聚四氟乙烯、聚苯乙烯和聚丙烯的去除效率达到100%。进水MPs中PU的最高浓度去除效率为93.41%。MPs、重金属、微生物和ARGs之间的相互作用包括吸附、氢键、共沉淀和极性相互作用。重金属和MPs形成更大的聚集颗粒,在初级处理过程中被去除。污水处理厂污泥中积累的重金属在填埋或堆肥制成肥料过程中对土壤构成生态风险。污水处理厂排放的MPs导致其在生物体和土壤中积累。这可能影响整个食物链,并促进ARGs在环境中的传播,对整个生态系统构成潜在威胁。