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Role of Media: Implication for Application of Urban Storm Water Runoff Bioretention Systems

机译:媒体的作用:对城市风暴水径流生物生物系统的应用意义

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Bioretention system has been proved to be an effective and low-cost source control technique for decentralized storm water runoff in urbanized areas. However, little information on the feasibility and effectiveness of these systems is available for China, including Shanghai. In this study, five bioretention columns with different sieved (2mm) media mixtures were employed to compare results on storm water runoff infiltration rate and pollutants removal efficiencies. In the columns that packed with media mixtures, the runoff infiltration rate ranged from 0.12 to 1.25×10-5m/s at a fixed 5 cm water head, which significantly improved compared to the control column with native soil only. From start-up to the eighth month, the facilities experienced the lowest and highest temperatures of the operation period in Shanghai and exhibited effective pollutants removals after maturation. For pollutant removal, the result indicated excellent removal for oil/grease (>98%), total suspended solids (>95%) and phosphorus (82% to 96%). Heavy metals removal ranged widely (46% to 93%), apparently due to the difference of media mixtures. Both ammonium and nitrate/nitrite were moderate to poorly removed, with removals ranging from 26% to 59% and from-7% to 43%, respectively. Analysis on the fate of nitrogen in bioretention suggests wetting/drying periods ratios was the important factor influencing the removal of nitrogen in bioretention system. Finally, bioretention system design were proposed based on the removal effect of pollutants under conditions of intermittent loadings. These results support the use of bioretention as a stomwater best management practice in Shanghai.
机译:已被证明生物化系统是一种有效和低成本的城市化雨水径流源的源控制技术。但是,有关这些系统的可行性和有效性的信息,可用于中国,包括上海。在该研究中,使用具有不同筛分(2mm)培养基混合物的五个生物化柱来比较雨水径流渗透率和污染物去除效率的结果。在用介质混合物包装的柱中,径流渗透速率范围为0.12至1.25× 10-5m / s在固定的5cm水头上,与仅具有天然土壤的控制柱相比显着改善。从启动到第八个月,该设施在上海的运营期的最低温度和最高温度下,在成熟后表现出有效的污染物去除。为了去除污染物,结果表明油/润滑脂的优异除去(> 98%),悬浮固体总悬浮固体(&#003e; 95%)和磷(82%至96%)。重金属去除广泛(46%至93%),显然是由于介质混合物的差异。铵和硝酸盐/亚硝酸盐均为中等至差,除去率为26%至59%,分别为-7%至43%。生物中氮气的命运分析表明润湿/干燥时期比率是影响生物化系统中氮气去除的重要因素。最后,提出了基于污染物在间歇载荷条件下的去除效果的生物系统设计。这些结果支持在上海使用生物灌注作为稀疏的最佳管理实践。

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