Qiu Ye, Feng Yujie, Yan Zhengyu, Li Jiannan, Li Dongyi, Yan Chen, Liu Guohong
State Key Laboratory of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, Harbin 150090, China.
State Key Laboratory of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, Harbin 150090, China.
Sci Total Environ. 2023 Mar 20;865:161289. doi: 10.1016/j.scitotenv.2022.161289. Epub 2022 Dec 30.
Recycling urban tail water for ecological base flow and landscape use offers a reliable solution for the problem of water resource shortage. But the long-term direct discharge of urban tail water can aggravate the eutrophication of surface water based on the present drainage standard of sewage plant. It is of great significance to develop low-cost and low-energy ecological technologies as transitional region between urban tail water and surface water. In this study, a pilot-scale ecological bed coupled with microbial electrochemical system (EB-MES) was established to treat urban tail water deeply. The system was operated for 96 days from June to September. Average TN removal efficiency in EB-MES under the condition of submerged plant coupled closed-circuit MES could reach 59.0 ± 16.6 %, which was 82.7 % and 38.1 % higher than that of open-circuit EB-MES and MES without plants, respectively. Microbial community structure testing indicated that multiple nitrogen metabolic mechanisms occurred in the system, including nitrification, electrode autotrophic denitrification, anammox, simultaneous nitrification and denitrification, and aerobic denitrification, which results in better denitrification efficiency under tail water. Our research provided a novel ecological technology with advantages of high-efficiency, low-energy and low-carbon and verified the feasibility in pilot scale for application in the advanced treatment of urban tail water.
将城市尾水回用于生态基流和景观用水,为水资源短缺问题提供了可靠的解决方案。但基于目前污水处理厂的排水标准,城市尾水的长期直接排放会加剧地表水的富营养化。开发低成本、低能耗的生态技术作为城市尾水与地表水之间的过渡区域具有重要意义。在本研究中,建立了一个中试规模的耦合微生物电化学系统的生态床(EB-MES)来深度处理城市尾水。该系统于6月至9月运行了96天。在沉水植物耦合闭路MES条件下,EB-MES的平均总氮去除效率可达59.0±16.6%,分别比开路EB-MES和无植物的MES高82.7%和38.1%。微生物群落结构测试表明,系统中发生了多种氮代谢机制,包括硝化作用、电极自养反硝化作用、厌氧氨氧化、同步硝化反硝化作用和好氧反硝化作用,这使得尾水条件下的反硝化效率更高。我们的研究提供了一种高效、低能耗、低碳的新型生态技术,并在中试规模上验证了其应用于城市尾水深度处理的可行性。