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Urbanization and climate change impacts on surface water quality: Enhancing the resilience by reducing impervious surfaces

机译:城市化和气候变化对地表水水质的影响:通过减少不透水的地表来增强韧性

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Climate change and urbanization are key factors affecting the future of water quality in urbanized catchments. The work reported in this paper is an evaluation of the combined and relative impact of climate change and urbanization on the water quality of receiving water bodies in the context of a highly urbanized watershed served by a combined sewer system (CSS) in northern Italy. The impact is determined by an integrated modelling study involving two years of field campaigns. The results obtained from the case study show that impervious urban surfaces and rainfall intensity are significant predictors of combined sewer overflows (CSOs) and consequently of the water quality of the receiving water body. Scenarios for the year 2100 demonstrate that climate change combined with increasing urbanization is likely to lead to severe worsening of river water quality due to a doubling of the total phosphorus load from CSOs compared to the current load. Reduction in imperviousness was found to be a suitable strategy to adapt to these scenarios by limiting the construction of new impervious areas and decreasing the existing areas by only 15%. This information can be further utilized to develop future designs, which in turn should make these systems more resilient to future changes in climate and urbanization. (C) 2018 Elsevier Ltd. All rights reserved.
机译:气候变化和城市化是影响城市化集水区水质未来的关键因素。本文报道的工作是在意大利北部联合下水道系统(CSS)服务的高度城市化分水岭的背景下,评估气候变化和城市化对接收水体水质的综合和相对影响。影响是通过一项涉及两年野战的综合建模研究确定的。从案例研究中获得的结果表明,不透水的城市表面和降雨强度是下水道溢流(CSOs)和接收水体水质的重要预测指标。 2100年的情景表明,气候变化与城市化进程的结合可能导致河流水质的严重恶化,这是由于来自民间社会组织的总磷负荷比当前负荷增加了一倍。通过限制新的不透水区域的建设并将现有区域仅减少15%,减少不渗透性是适应这些情况的合适策略。可以进一步利用这些信息来开发未来的设计,这反过来又应该使这些系统对气候和城市化的未来变化更具弹性。 (C)2018 Elsevier Ltd.保留所有权利。

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