合流下水道
环境科学
废水
沉淀
污水处理
生活污水管
环境工程
入口
运营成本
微塑料
活性污泥
滴滤器
废物管理
工程类
化学
环境化学
雨水
运筹学
生物
机械工程
地表径流
生态学
作者
Yuanling Luo,Huaming Xie,Haiyin Xu,Changsheng Zhou,Ping Wang,Zhiming Liu,Yi Yang,Jing Huang,Chuan Wang,Xiaojing Zhao
标识
DOI:10.1016/j.jhazmat.2022.129974
摘要
Wastewater treatment plant (WWTP) has great potential to regulate microplastics (MPs) emissions, but few studies have focused on this subject. The present study performed a long-term investigation in a typically combined sewers WWTP. Compared to dry weather, rainfall contributed approximately 1.5 times more MPs to the inlet of the combined WWTP. The equalization tank served as a primary site for MPs' removal, with a 46.67–87.91 % removal rate. Decreasing surface overflow rate (SOR) was an effective measure for improving MPs removal, and a suitable SOR was recommended at ∼11 m3 (d·m2)−1) in the equalization tank. However, MPs' existing settling/rising velocity models failed to obtain a theoretical SOR. In cyclic activated sludge systems, reducing sludge wastage was proposed to facilitate the removal of MPs. As a result, outlet MPs could be reduced by an order of magnitude by adjusting operational parameters on rainy days. Our study highlighted the potential for WWTP to operate as a controlled source of MPs by altering the operational parameters. We also advocated exploiting the mechanisms of MPs' removal by operational parameters and finding an equilibrium between MPs' removal and activated sludge performance.
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