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Distributed and dynamic modelling of hydrology, phosphorus and ecology in the Hampshire Avon and Blashford Lakes: evaluating alternative strategies to meet WFD standards.

机译:汉普郡雅芳湖和布拉什福德湖的水文,磷和生态分布和动态建模:评估符合WFD标准的替代策略。

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摘要

The issues of diffuse and point source phosphorus (P) pollution in the Hampshire Avon and Blashford Lakes are explored using a catchment model of the river system. A multibranch, process based, dynamic water quality model (INCA-P) has been applied to the whole river system to simulate water fluxes, total phosphorus (TP) and soluble reactive phosphorus (SRP) concentrations and ecology. The model has been used to assess impacts of both agricultural runoff and point sources from waste water treatment plants (WWTPs) on water quality. The results show that agriculture contributes approximately 40% of the phosphorus load and point sources the other 60% of the load in this catchment. A set of scenarios have been investigated to assess the impacts of alternative phosphorus reduction strategies and it is shown that a combined strategy of agricultural phosphorus reduction through either fertiliser reductions or better phosphorus management together with improved treatment at WWTPs would reduce the SRP concentrations in the river to acceptable levels to meet the EU Water Framework Directive (WFD) requirements. A seasonal strategy for WWTP phosphorus reductions would achieve significant benefits at reduced cost.
机译:使用河流系统的集水模型探讨了汉普郡雅芳湖和布拉什福德湖中的扩散和点源磷(P)污染问题。基于多分支,基于过程的动态水质模型(INCA-P)已应用于整个河流系统,以模拟水通量,总磷(TP)和可溶性活性磷(SRP)的浓度和生态。该模型已用于评估农业径流和废水处理厂(WWTP)的点源对水质的影响。结果表明,在该流域,农业贡献了大约40%的磷负荷,点源另外60%的负荷。已研究了一系列方案来评估替代磷减少策略的影响,结果表明,通过减少肥料或更好地管理磷以及改善污水处理厂的处理水平来减少农业磷的组合策略将降低河流中的SRP浓度。达到欧盟水框架指令(WFD)要求的可接受水平。减少污水处理厂磷的季节性策略将以降低的成本获得显着的收益。

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