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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Constructed wetlands for combined sewer overflow treatment: Ecosystem services at Gorla Maggiore, Italy
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Constructed wetlands for combined sewer overflow treatment: Ecosystem services at Gorla Maggiore, Italy

机译:组合下水道溢流治疗的湿地:意大利Gorla Maggiore的生态系统服务

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Three sampling campaigns have been done in 2014-2015 in order to temporally characterize CSOs quality and quantity during representative and seasonal-specific rain events, and to estimate the ecosystem service of a CSO-CW located in Northern Italy in terms of water quality improvement. The adoption of an on-site treatment by Constructed Wetlands for the Combined Sewer Overflows is an example of decentralized approach for the optimization of the existing sewer networks and the needed reduction of their impacts on the water quality of the receiving water bodies. The CW system, that is treating the first flush of the overflows, is joined with an extended retention basin that is acting as a tertiary treatment for the CW effluents and is also storing and treating the whole second flush, slowing down by a throttle the discharge in the river and therefore playing a role in the flooding risk control. During the monitored time interval 69 events of overflow discharges have been observed and quantified; this quantification of the total volumes discharged by the specific CSO have been useful for evaluating the approach performances also in terms of mass loads in a single year, that is in the author's opinion a more conservative evaluation than comparing only the average concentrations removal rates. The obtained results have shown that on-site treatment for the first flush by CWs can obtain appropriate performances, as demonstrated by the about 87% and 93% of removal for COD and NH4+ respectively in terms of concentrations and the 68% and 94% in terms of mass loads in a year. A relevant analysis of the sampling program and the secondary services provided by this specific artificial ecosystems are discussed in the paper, together with a unique characterization of the role of the specific sources (washout, urban wastewater) to the loads that are reaching the on-site treatment unit. (C) 2016 Elsevier B.V. All rights reserved.
机译:2014 - 2015年已经完成了三项抽样活动,以便在代表和季节性雨季活动期间暂时表征CSOS质量和数量,并估算位于意大利北方的CSO-CW的生态系统服务,以水质改进。通过为合并的下水道溢出的构造湿地采用现场治疗是用于优化现有下水道网络的分散方法的示例,以及所需的对接收水体的水质的影响。一种CW系统,其处理溢流的第一冲洗,与延伸的保留盆加入,其作为CW流出物的三级处理,并且还在储存和处理整个第二冲洗,通过油门排出减慢在河里,因此在洪水风险控制中发挥作用。在监视时间间隔期间,已经观察到溢出放电事件和量化;这种由特定CSO排出的总量的量化对于在一年中的大规模载荷方面也有助于评估方法,即作者的意见比仅比较平均浓度去除率的评估。得到的结果表明,由CWS的第一次冲洗的现场治疗可以获得适当的性能,如浓度分别在浓度和68%和94%方面的约87%和93%的鳕鱼和NH4 +的约87%和93%一年内的质量载荷条款。本文讨论了对采样计划和由该特定人工生态系统提供的二级服务的相关分析,以及特定来源(冲洗,城市废水)对达到的负载的独特表征现场治疗单位。 (c)2016年Elsevier B.v.保留所有权利。

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