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Effect of climate change on stormwater runoff characteristics and treatment efficiencies of stormwater retention ponds: a case study from Denmark using TSS and Cu as indicator pollutants

机译:气候变化对雨水径流特征和雨水滞留池处理效率的影响:以TSS和Cu为指示污染物的丹麦案例研究

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摘要

This study investigated the potential effect of climate changes on stormwater pollution runoff characteristics and the treatment efficiency of a stormwater retention pond in a 95 ha catchment in Denmark. An integrated dynamic stormwater runoff quality and treatment model was used to simulate two scenarios: one representing the current climate and another representing a future climate scenario with increased intensity of extreme rainfall events and longer dry weather periods. 100-year long high-resolution rainfall time series downscaled from regional climate model projections were used as input. The collected data showed that total suspended solids (TSS) and total copper (Cu) concentrations in stormwater runoff were related to flow, rainfall intensity and antecedent dry period. Extreme peak intensities resulted in high particulate concentrations and high loads but did not affect dissolved Cu concentrations. The future climate simulations showed an increased frequency of higher flows and increased total concentrations discharged from the catchment. The effect on the outlet from the pond was an increase in the total concentrations (TSS and Cu), whereas no major effect was observed on dissolved Cu concentrations. Similar results are expected for other particle bound pollutants including metals and slowly biodegradable organic substances such as PAH. Acute toxicity impacts to downstream surface waters seem to be only slightly affected. A minor increase in yearly loads of sediments and particle-bound pollutants is expected, mainly caused by large events disrupting the settling process. This may be important to consider for the many stormwater retention ponds existing in Denmark and across the world.
机译:这项研究调查了气候变化对丹麦95公顷流域雨水污染径流特征和雨水保留池的处理效率的潜在影响。使用集成的动态雨水径流质量和处理模型来模拟两种情况:一种代表当前的气候,另一种代表未来的气候情况,极端降雨事件的强度增加,干旱季节更长。从区域气候模型预测中缩减的100年高分辨率高分辨率降雨时间序列被用作输入。收集的数据表明,雨水径流中的总悬浮固体(TSS)和总铜(Cu)浓度与流量,降雨强度和干旱前期有关。极高的峰强度导致较高的颗粒浓度和较高的负荷,但不影响溶解的Cu浓度。未来的气候模拟表明,高流量的频率增加,流域排放的总浓度增加。对池塘出口的影响是总浓度(TSS和Cu)的增加,而对溶解的Cu浓度没有观察到主要影响。对于其他与颗粒结合的污染物,包括金属和生物可缓慢降解的有机物(如PAH),也有望获得类似的结果。对下游地表水的急性毒性影响似乎仅受到轻微影响。预计每年的沉积物和与颗粒结合的污染物的负荷将略有增加,这主要是由于大事件干扰了沉降过程。对于丹麦和世界各地现有的许多雨水蓄水池,考虑这一点可能很重要。

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