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源头控制系统对减少径流水质污染物负荷的效率:巴黎城市群内实验集水区的反馈。

Efficiency of source control systems for reducing runoff pollutant loads: feedback on experimental catchments within Paris conurbation.

机构信息

Université Paris-Est, Leesu (UMR-MA-102), UPEC, ENPC, AgroParisTech, F-77455 Marne-la-Vallée Cedex 2, France.

出版信息

Water Res. 2014 Jun 15;57:234-46. doi: 10.1016/j.watres.2014.03.040. Epub 2014 Mar 26.

Abstract

Three catchments, equipped with sustainable urban drainage systems (SUDS: vegetated roof, underground pipeline or tank, swale, grassed detention pond) for peak flow mitigation, have been compared to a reference catchment drained by a conventional separate sewer system in terms of hydraulic behaviour and discharged contaminant fluxes (organic matter, organic micropollutants, metals). A runoff and contaminant emission model has been developed in order to overcome land use differences. It has been demonstrated that the presence of peak flow control systems induces flow attenuation even for frequent rain events and reduces water discharges at a rate of about 50% depending on the site characteristics. This research has also demonstrated that this type of SUDS contributes to a significant reduction of runoff pollutant discharges, by 20%-80%. This level of reduction varies depending on the considered contaminant and on the design of the drainage system but is mostly correlated with the decrease in runoff volume. It could be improved if the design of these SUDS focused not only on the control of exceptional events but also targeted more explicitly the interception of frequent rain events.

摘要

三个流域配备了可持续城市排水系统(SUDS:植被屋顶、地下管道或储罐、洼地、草地滞留池)以缓解峰值流量,与传统的单独下水道系统排水的参考流域相比,在水力行为和排放污染物通量(有机物、有机微污染物、金属)方面进行了比较。为了克服土地利用差异,开发了一种径流和污染物排放模型。研究表明,即使对于频繁的降雨事件,峰值流量控制系统的存在也会引起流量衰减,并根据场地特征将水排放量减少约 50%。这项研究还表明,这种类型的 SUDS 有助于显著减少径流污染物的排放,减排幅度为 20%-80%。这种减排水平取决于所考虑的污染物和排水系统的设计,但主要与径流量的减少有关。如果这些 SUDS 的设计不仅侧重于控制特殊事件,而且更明确地针对拦截频繁的降雨事件,那么这种减排水平可能会得到提高。

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