South China University of Technology, School of Civil Engineering and Transportation, Guangdong, Guangzhou, 510640, China.
South China University of Technology, State Key Laboratory of Subtropical Building Science, Guangdong, Guangzhou, 510640, China.
Sci Rep. 2019 Sep 25;9(1):13865. doi: 10.1038/s41598-019-50467-8.
To study the first flush effect of nonpoint source pollution in the Guangzhou community unit, runoff from roads, roofs, and green spaces during three rainfall events was collected and analyzed for pollutants. Nine runoff pollution indices were considered. The dimensionless cumulative curve of pollutant mass vs. volume, the first flush coefficient (b) and the mass first flush ratio (MFF) were used to assess the first flush effect of different underlying surfaces. The assessment results pointed out that the roof was most prone to first flush effect. And ammonia nitrogen and phosphorus were the main pollutants in the first flush in the study area. For a quantitative analysis of the first flush, the Storm Water Management Model (SWMM) was used to simulate the hydrological effect of low impact development (LID) implementation in the community. The results showed that the first flush strength was reduced after setting LID. And LID measures, such as green roofs and sunken green spaces, contribute to flood control and rainwater purification. This research can be relevant regarding for constructing sponge cities and reducing the pollution caused by the first flush.
为研究广州市社区单元非点源污染的初期冲刷效应,收集并分析了三场降雨事件中道路、屋顶和绿地的径流水,以分析污染物。考虑了九个径流污染指数。用无量纲污染物质量累积曲线、初期冲刷系数(b)和质量初期冲刷比(MFF)来评估不同下垫面的初期冲刷效应。评估结果表明,屋顶最容易发生初期冲刷效应。在研究区域,氨氮和磷是初期冲刷的主要污染物。为了定量分析初期冲刷,使用 Storm Water Management Model(SWMM)模拟了社区内低影响开发(LID)实施的水文效应。结果表明,设置 LID 后初期冲刷强度降低。绿色屋顶和下沉式绿地等 LID 措施有助于防洪和雨水净化。这项研究对于建设海绵城市和减少初期冲刷造成的污染具有重要意义。