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Constructed Wetlands for Combined Sewer Overflow Treatment—Comparison of German, French and Italian Approaches

机译:人工湿地用于下水道溢流综合处理-德国,法国和意大利方法的比较

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Combined sewer systems are designed to transport stormwater surface run off in addition to the dry weather flows up to defined limits. In most European countries, hydraulic loads greater than the design flow are discharged directly into receiving water bodies, with minimal treatment (screening, sedimentation), or with no treatment at all. One feasible solution to prevent receiving waters from strong negative impacts seems to be the application of vertical flow constructed wetlands. In Germany, first attempts to use this ecological technology were recognized in early 1990s. Since then, further development continued until a high level of treatment performance was reached. During recent years the national “state-of-the-art” (defined in 2005) was adapted in other European countries, including France and Italy. Against the background of differing national requirements in combined sewer system design, substantial developmental steps were taken. The use of coarser filter media in combination with alternating loadings of separated filter beds allows direct feedings with untreated combined runoff. Permanent water storage in deep layers of the wetland improves the system’s robustness against extended dry periods, but contains operational risks. Besides similar functions (but different designs and layouts), correct dimensioning of all approaches suffers from uncertainties in long-term rainfall predictions as well as inside sewer system simulation tools.
机译:组合下水道系统的设计目的是,将干燥的天气流量增加到规定的极限,以运输雨水地表径流。在大多数欧洲国家中,大于设计流量的水力负荷会以最少的处理(筛分,沉淀)或根本不进行处理的方式直接排放到接收水体中。防止接收水受到强烈负面影响的一种可行解决方案似乎是应用垂直流人工湿地。在德国,1990年代初就认可了使用这种生态技术的首次尝试。从那时起,继续发展直到达到高水平的治疗效果。近年来,国家“最新技术”(2005年定义)在包括法国和意大利在内的其他欧洲国家进行了改编。在国家对下水道系统组合设计提出不同要求的背景下,采取了实质性的开发步骤。较粗的过滤介质结合交替使用的分离滤床负荷可直接进料,且未经处理的合并径流。湿地深层的永久性储水可以提高系统在长时间干旱期间的坚固性,但存在操作风险。除了类似的功能(但设计和布局不同)之外,所有方法的正确尺寸还存在长期降雨预测以及下水道系统模拟工具的不确定性。

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