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生态学杂志 ›› 2025, Vol. 44 ›› Issue (7): 2157-2163.doi: 10.13292/j.1000-4890.202507.005

• 湿地生态专栏 • 上一篇    下一篇

北方大型湿地氮和磷去除的季节性规律

陈铁柱1,周日修2,田航飞2,杨海洋1,廖敏辉1,安树青2,3,忻飞3,李启明2*   

  1. 1中电建生态环境集团有限公司, 广东深圳 518102; 2南京大学生命科学学院, 南京 210023; 3南京大学常熟生态研究院南大(常熟)研究院有限公司, 江苏苏州 215500)

  • 出版日期:2025-07-10 发布日期:2025-07-07

The seasonal variations of nitrogen and phosphorus removal in a large northern wetland.

CHEN Tiezhu1, ZHOU Rixiu2, TIAN Hangfei2, YANG Haiyang1, LIAO Minhui1, AN Shuqing2,3, XIN Fei3, LI Qiming2*   

  1. (1PowerChina Eco-Environmental Group Co., Ltd., Shenzhen 518102, Guangdong, China; 2College of Life Sciences, Nanjing University, Nanjing 210023, China; 3Nanjing University Research Institute (Changshu) Co., Ltd., Suzhou 215500, Jiangsu, China).

  • Online:2025-07-10 Published:2025-07-07

摘要: 氮和磷超标严重影响水体健康,给城市水体安全带来了威胁。净化河流水质、提升河道生态功能是恢复城市水体流域生态完整性的重要途径。为解决城市水体存在的水污染等生态问题,针对该类型水体的湿地水质净化工程应运而生。本研究分析了北方某大型湿地水质净化工程在不同季节对氮、磷去除的效果。结果表明:夏季(丰水期)湿地工程对进水氮、磷实现了高效去除,但在春、冬季(平水期、枯水期),低温、大量植物残留和鸟类排泄导致氮、磷去除效果不佳;整体来看,该大型湿地水质净化工程在不同季节对氮的去除呈正向效应,三个区域(前置沉淀生态塘区、潜流湿地区、水生植物塘区)协同互补;针对该湿地春、冬季污染物去除效果不佳的问题,建议通过植物收割、覆膜保温、外加碳源和延长水力停留时间等管理措施,提高氮、磷去除效果。


关键词: 北方河流, 水质净化, 工程应用, 人工湿地,

Abstract: Excessive nitrogen and phosphorus affect water quality and pose a threat to urban water safety. Purifying river water and enhancing the ecological functions of rivers are essential for restoring the ecological integrity of urban watersheds. To address ecological issues such as water pollution in urban areas, projects for wetland water quality purification have been initiated. In this study, we analyzed the seasonal variations in nitrogen and phosphorus removal efficiency of a large wetland water purification project in northern China. The results showed that the project effectively removed nitrogen and phosphorus from the influent during the summer (wet season). However, in spring and winter (normal and dry seasons), low temperatures and substantial plant residues and bird excretion led to lower removal efficiency. Overall, the wetland project demonstrated a positive effect on nitrogen removal across different seasons, with the three areas-pre-sedimentation ecological ponds, subsurface flow constructed wetland areas, and aquatic plant ponds-working synergistically and complementarily. To enhance nitrogen and phosphorus removal during the less effective seasons, it is recommended to implement management measures such as plant harvesting, membrane insulation, adding carbon sources, and extending hydraulic residence time.


Key words: northern river, water quality purification, engineering application, constructed wetland, pond