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了解屋顶表面污染物积累和冲刷的物理过程。

Understanding the physical processes of pollutant build-up and wash-off on roof surfaces.

作者信息

Egodawatta Prasanna, Thomas Evan, Goonetilleke Ashantha

机构信息

School of Urban Development, Queensland University of Technology, GPO Box 2434, Brisbane QLD 4000, Australia.

出版信息

Sci Total Environ. 2009 Mar 1;407(6):1834-41. doi: 10.1016/j.scitotenv.2008.12.027. Epub 2009 Jan 20.

Abstract

Pollutants originating with roof runoff can have a significant impact on urban stormwater quality. This signifies the importance of understanding pollutant processes on roof surfaces. Additionally, knowledge of pollutant processes on roof surfaces is important as roofs are used as the primary catchment surface for domestic rainwater harvesting. In recent years, rainwater harvesting has become one of the primary sustainable water management techniques to counteract the growing demand for potable water. This paper presents the outcomes of an in-depth research study into particulate matter build-up and wash-off for roof surfaces. In this research, particulate matter was considered as the indicator pollutant where the processes related to other pollutants can be predicted based on the understanding generated for particulate matter. The study outcomes confirm that the build-up process on roof surfaces is comparatively similar to road surfaces. However, particle loads collected from roofs were significantly less compared to road surfaces and much finer in texture. Wash-off from roofs also showed significant similarities to wash-off from roads. A relatively high concentration of particulate matter was noted during the initial part of storm events. Furthermore, the amount of particulate matter remaining on the roof surfaces was significantly high for less intense rain events.

摘要

源自屋面径流的污染物会对城市雨水水质产生重大影响。这表明了解屋面上污染物的过程很重要。此外,由于屋面被用作家庭雨水收集的主要集水面,了解屋面上污染物的过程也很重要。近年来,雨水收集已成为应对日益增长的饮用水需求的主要可持续水资源管理技术之一。本文介绍了一项针对屋面颗粒物积累和冲刷的深入研究成果。在这项研究中,颗粒物被视为指示性污染物,基于对颗粒物的了解,可以预测与其他污染物相关的过程。研究结果证实屋面的积累过程与路面相对相似。然而,与路面相比,从屋面上收集到的颗粒负荷明显更少,且质地更细。屋面的冲刷与路面的冲刷也有显著相似之处。在暴雨事件开始阶段,颗粒物浓度相对较高。此外,对于强度较小的降雨事件,留在屋面上的颗粒物数量明显较多。

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