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优化雨水径流处理:两段串联雨水花园的作用。

Optimizing stormwater runoff treatment: The role of two-stage tandem rain gardens.

机构信息

College of Hydraulic Science and Engineering, Yangzhou University, Yangzhou, 225009, China.

College of Hydraulic Science and Engineering, Yangzhou University, Yangzhou, 225009, China.

出版信息

Environ Res. 2024 Dec 1;262(Pt 1):119831. doi: 10.1016/j.envres.2024.119831. Epub 2024 Aug 30.

Abstract

Regarded as a superior urban stormwater management solution, rain gardens can effectively store rainfall runoff and purify water quality. However, the efficiency of traditional rain gardens (TRG) in regulating runoff and removing nitrogen and phosphorus varies under different hydrological conditions. In this study, the TRG was retrofitted to construct a two-stage tandem rain garden (TTRG). Based on the experimental monitoring of rain gardens under natural rainfall from 2011 to 2013, results indicated a significantly higher runoff reduction capacity for the TTRG compared to the traditional garden (p < 0.05), with average runoff and peak flow reduction rates increasing by 42.8% and 36.2%, respectively. Rainfall characteristics significantly impacted the runoff reduction of the TRG (p < 0.05), but not the TTRG (p > 0.05), demonstrating the enhanced control and stability of the TTRG in managing rainfall runoff. The concentration removal efficiency of nitrate nitrogen (NO-N) was significantly improved (p < 0.05), whereas the total phosphorus (TP), ammonium nitrogen (NH-N) and total nitrogen (TN) were not significantly changed (p > 0.05). The first-order kinetic model was used to fit the removal effect of different pollutants before and after retrofitting the rain garden, and the removal of NO-N by the TTRG was better than that of the TRG. The TTRG showed significantly higher load removal efficiencies for TP, NO-N, and NH-N compared to TRG (p < 0.05), with average load removal rates increasing by 49.92%, 75.02%, and 14.81%, respectively. The TTRG can regulate urban rainfall runoff more efficiently and stably. By changing the water flow path in the rain garden, the TTRG has a better runoff reduction ability and pollutant purification effect.

摘要

被认为是一种优越的城市雨水管理解决方案,雨水花园可以有效地储存雨水径流并净化水质。然而,传统雨水花园(TRG)在不同水文条件下调节径流和去除氮磷的效率有所不同。本研究对 TRG 进行了改造,构建了两级串联雨水花园(TTRG)。基于 2011 年至 2013 年自然降雨条件下的雨水花园实验监测结果,TTRG 的径流量减少能力明显高于传统花园(p<0.05),平均径流和峰值流量减少率分别增加了 42.8%和 36.2%。降雨特征对 TRG 的径流量减少有显著影响(p<0.05),但对 TTRG 没有显著影响(p>0.05),这表明 TTRG 在管理雨水径流方面具有增强的控制和稳定性。硝酸盐氮(NO-N)的浓度去除效率显著提高(p<0.05),而总磷(TP)、氨氮(NH-N)和总氮(TN)没有明显变化(p>0.05)。采用一级动力学模型拟合雨水花园改造前后不同污染物的去除效果,TTRG 对 NO-N 的去除效果优于 TRG。TTRG 对 TP、NO-N 和 NH-N 的去除负荷去除效率明显高于 TRG(p<0.05),平均去除率分别增加了 49.92%、75.02%和 14.81%。TTRG 可以更有效地、更稳定地调节城市降雨径流。通过改变雨水花园中的水流路径,TTRG 具有更好的径流减少能力和污染物净化效果。

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