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Modelling impacts of seasonal wastewater treatment plant effluent permits and biosolid substitution for phosphorus management in catchments and river systems

机译:模拟季节性废水处理厂的排放许可和生物固体替代对流域和河流系统中磷管理的影响

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摘要

© IWA Publishing 2015. The issues of diffuse and point source phosphorus (P) pollution in river systems are presented using a catchment model to assess nutrient behaviour, seasonal effluent standards and biosolid substitution. A process-based, dynamic water quality model (INCA-P) has been applied to four UK catchments, namely, the Rivers Tywi, Wensum, Lunan and Hampshire Avon, to simulate water fluxes, sediments, total phosphorus and soluble reactive phosphorus (SRP) concentrations. The model has been used to assess impacts of both agricultural runoff and point P sources from wastewater treatment plants (WWTPs) on water quality. With increasing costs for P fertilizer and P reduction at WWTPs, a strategy of recycling P from WWTPs as biosolids to substitute for fertilizers in vulnerable catchments has been investigated. Significant reductions in P concentrations are achieved if this substitution were implemented on a large scale. Reductions in SRP of between 6% and 41% can be achieved using this strategy. The effects of implementing new WWTP standards are shown to reduce SRP by 30%. Seasonal consent standards applied in only summer months could reduce SRP by 53% and achieve a substantial reduction in treatment costs year round.
机译:©IWA Publishing2015。使用流域模型评估养分行为,季节性污水标准和生物固体替代物,介绍了河流系统中的扩散和点源磷(P)污染问题。基于过程的动态水质模型(INCA-P)已应用于英国的四个流域,即提维河,温苏姆河,鲁南河和汉普郡埃文河,以模拟水通量,沉积物,总磷和可溶性活性磷(SRP) )浓度。该模型已用于评估农业径流和废水处理厂(WWTP)的P点源对水质的影响。随着污水处理厂磷肥成本的增加和磷的减少,已经研究了从污水处理厂中回收磷作为生物固体来替代脆弱流域化肥的策略。如果大规模进行这种取代,磷浓度将显着降低。使用此策略可以使SRP降低6%至41%。实践证明,实施新的污水处理厂标准可将SRP降低30%。仅在夏季月份使用的季节性同意标准可以使SRP降低53%,并可以全年大幅降低治疗成本。

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