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Application of water quality model to analyze pollution hotspots and the impact on reservoir eutrophication

机译:水质模型在污染热点分析及对水库富营养化影响的应用

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Sustainable reservoir watershed management is crucial to maintain a water supply system. The purpose of this study is to assess the pollution sources of the Bao-Shan Reservoir, which is an off-stream reservoir and is the study reservoir herein. Most water source of the Bao-Shan Reservoir is from the Shang-Ping Watershed. This study applies the EPA's Storm Water Management Model (SWMM) and the Vollenweider model (VM) to analyze the pollution hotspots in the reservoir watershed and the impact of the pollutions on the reservoir water quality. The results indicate that non-point source pollution is the main pollution in the Shang-Ping Watershed. The pollution hotspots are located in the sub-watersheds S1, S3, S4, and S5. These sub-watersheds have higher total phosphorus (TP) loads per unit area. In order to protect the water quality of the Bao-Shan Reservoir, this study suggests that the TP load entering the reservoir needs to be reduced by about 16% to 24%. The control of non-point source pollution needs to be preferentially implemented in the Shang-Ping Watershed. The analysis and discussion in this study are a useful reference for reservoir watershed management.
机译:可持续水库流域管理是维持供水系统至关重要。本研究的目的是评估宝山储层的污染源,该储层是一个离岸水库,是本文的研究储层。宝山水库大多数水源都来自上平流域。本研究适用于EPA的雨水管理模型(SWMM)和Vollenweider模型(VM),分析水库流域中的污染热点以及污染对储层水质的影响。结果表明,非点源污染是上平流域的主要污染。污染热点位于子流域S1,S3,S4和S5中。这些次流域每单位面积具有更高的总磷(TP)负载。为了保护宝山水库的水质,本研究表明,进入储层的TP负荷需要减少约16%至24%。无需控制非点源污染的控制需要在商业流域中优先实施。本研究的分析和讨论是水库流域管理的有用参考。

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