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Stormwater reuse: designing biofiltration systems for reliable treatment

机译:雨水回用:设计用于可靠处理的生物过滤系统

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Stormwater reuse is increasing in popularity as a technique for overcoming water shortages in urban Australia. However, technology for the reliable treatment of stormwater for reuse is still not fully developed. This paper presents the first steps in refining biofilters for stormwater reuse. Six different filter media were selected, to target specific stormwater pollutants, as well as support plant growth. They were tested in the laboratory, where the filters were dosed three times per week with semi-synthetic stormwater for five weeks. Pollutant removal performance was monitored, and revealed that all soil-based filters performed similarly (while sand filters behaved somewhat differently). All filters removed more than 80% of solids and greater than 90% of lead, copper, and zinc. Three filter types were able to remove some phosphorus (particularly in the top 30 cm of the media). Apart from sand, all filter media were net producers of nitrogen, leading to an important conclusion that non-vegetated, soil-based filters are not suitable for targeting nutrients. However, since heavy metals are the primary pollutant of concern with respect to stormwater reuse for irrigation (the most popular end-use), it was concluded that biofilters may be promising technologies for treatment of stormwater for reuse.
机译:雨水回用作为克服澳大利亚城市缺水的一种技术正日益普及。但是,用于雨水再利用的可靠处理技术仍未完全开发。本文介绍了精制雨水回用生物滤池的第一步。选择了六种不同的过滤介质,以针对特定的雨水污染物,并支持植物的生长。他们在实验室进行了测试,在过滤器中,每周用半合成雨水对过滤器进行3次配液,持续5周。监测了污染物的去除性能,发现所有基于土壤的滤池性能相似(而砂滤池的性能略有不同)。所有过滤器都去除了80%以上的固体和90%以上的铅,铜和锌。三种过滤器类型能够去除一些磷(尤其是在介质的顶部30厘米处)。除沙以外,所有过滤器介质都是氮的净生产者,这得出了一个重要的结论,即无植被的土壤基过滤器不适合用于营养物。但是,由于重金属是灌溉雨水回用(最流行的最终用途)所关注的主要污染物,因此得出的结论是,生物滤池可能是处理雨水回用的有前途的技术。

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