State Key Laboratory of Water Resources and Hydropower Engineering Science, Wuhan University, Wuhan, 430072, Hubei, China.
Environ Sci Pollut Res Int. 2021 Mar;28(9):10519-10535. doi: 10.1007/s11356-020-12319-1. Epub 2021 Jan 14.
As one of the low-impact development measures, bioretention plays an important role in reducing the runoff peak flow and minimizing runoff pollutants, such as heavy metals, suspended solids, and nutrients. However, the efficiency of nitrogen removal in the bioretention system is unstable, owing to the different chemical properties of various forms of nitrogen and the limitations of current bioretention system for nitrogen transformation. This review article summarizes the recent advances in bioretention system in treatment of urban stormwater and agricultural runoff for nitrogen removal. The microbial characteristics and main processes of nitrogen transformation in bioretention are reviewed. The operational conditions affecting nitrogen removal, including climatic conditions, pH, wet-dry alternation, influent loads and nitrogen concentration, and hydraulic residence time are discussed. Finally, measures or strategies for increasing nitrogen removal efficiency are proposed from the perspectives of structural improvement of the bioretention system, optimization of medium composition, and enhancement of the nitrogen removal reaction processes.
作为低影响开发措施之一,生物滞留在减少径流峰值流量和最小化径流污染物(如重金属、悬浮物和营养物)方面发挥着重要作用。然而,由于各种形态氮的化学性质不同以及当前生物滞留系统对氮转化的限制,生物滞留系统的氮去除效率不稳定。本文综述了生物滞留系统在处理城市雨水和农业径流中的氮去除方面的最新进展。综述了生物滞留中氮转化的微生物特性和主要过程。讨论了影响氮去除的运行条件,包括气候条件、pH 值、干湿交替、进水负荷和氮浓度以及水力停留时间。最后,从生物滞留系统结构改进、介质组成优化和氮去除反应过程增强等方面提出了提高氮去除效率的措施或策略。