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Application of BMP to urban runoff control using SUSTAIN model: Case study in an industrial area

机译:BMP在基于SUSTAIN模型的城市径流控制中的应用:以工业区为例

摘要

Flooding and stormwater pollution by urban runoff owing to the effects of urbanization and industrializadon on both hydrology and water quality have become a serious issue. Best management practices (BMP) are proposed to mitigate floods and reduce pollutants, the performance of which can be quantitatively assessed by the System for Urban Stormwater Treatment and Analysis Integration (SUSTAIN) model. A factory in the city of Ma'anshan, China was selected as a case study for planning and analysis of BMP. First, surface runoff pollution was identified as being caused by different land uses at this site. BMP such as permeable pavements, vegetated swales, green roofs, wet ponds, and bioretention basins were planned for this site. After BMP planning, system performance was evaluated using SUSTAIN. Sizes of the implemented BMP were further adjusted using the optimization module of SUSTAIN. Quantitative analyses of pollutant purification and flood mitigation ecosystem services after optimization were conducted. The results indicate that pollution caused by urban surface runoff in the study area was serious and required treatment. Compared with the developed condition, the BMP plan would reduce total runoff volume, total suspended solid load, dissolved zinc load, total nitrogen load, total phosphorus load and chemical oxygen demand load by 41%, 62%, 55%, 57%, 55% and 60%, respectively. This research result is of practical importance for urban nonpoint source pollution caused by industrial activities. (C) 2015 Elsevier B.V. All rights reserved.
机译:由于城市化和工业化对水文和水质的影响,城市径流引起的洪水和暴雨污染已成为一个严重的问题。提出了减轻洪水和减少污染物的最佳管理实践(BMP),其性能可以通过城市雨水处理和分析集成系统(SUSTAIN)模型进行定量评估。选择了中国马鞍山市的一家工厂作为BMP计划和分析的案例研究。首先,地表径流污染被确定为该地点土地用途不同造成的。计划在此地点建造BMP,例如渗透性路面,植被繁茂的沼泽,绿色屋顶,湿池塘和生物滞留池。在规划BMP之后,使用SUSTAIN评估了系统性能。使用SUSTAIN的优化模块可以进一步调整已实施BMP的大小。对优化后的污染物净化和减灾生态系统服务进行了定量分析。结果表明,研究区城市地表径流造成的污染十分严重,需要进行处理。与开发条件相比,BMP计划将减少总径流量,总悬浮固体负荷,溶解锌负荷,总氮负荷,总磷负荷和化学需氧量负荷41%,62%,55%,57%,55 %和60%。该研究结果对于工业活动引起的城市面源污染具有重要的现实意义。 (C)2015 Elsevier B.V.保留所有权利。

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