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首页> 外文期刊>Management of Environmental Quality >The assessment of an integrated bio-filter systems for the wastewaters treatment in arid regions (Touggourt, Algeria)
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The assessment of an integrated bio-filter systems for the wastewaters treatment in arid regions (Touggourt, Algeria)

机译:在干旱地区进行废水处理的综合生物滤波器系统(Touggourt,阿尔及利亚)

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Purpose - The purpose of this paper is to assess the water quality parameters resulting on: First, the flow direction in biofilters (ascending or descending), second, constructed wetland (CW) with local plant species and third, the combined system for the removal of organic matter and nutrients pollutants from water in arid regions. Design/methodology/approach - An integrated system is presented and tested in situ with a vertical up-flow and down-flow biofilters. Two configurations schemes are followed by a three separated horizontal subsurface CWs: two planted with Phragmites australis, Typha latifolia and the third unplanted. The methodology is based on a statistical analysis of the collected data. Findings - The present experiment demonstrated that the wetlands planted with P. australis and T. latifolia showed the highest removal. Moreover, T. latifolia performed better than P. australis for most of the parameters, notably in the first system, whereas the wetland efficiency indicated that P. australis contributed greatly to the removal of TP in the first system and NO_3-N in the second system. In general, for the highest removal efficiencies of the combined biofilters and wetlands system, the present study demonstrated that the first system performed better than the second for all the parameters. Originality/value - The originality of the research is that it compares in situ two biofilter systems: vertical up-flow and down-flow biofilters. To avoid the effects of domestic wastewater that is discharged directly without treatment in the Oued Righ channel or in the lake, this integrated system can be one of the alternatives for wastewater treatment, as it reveals the need to protect aquatic ecosystems in arid regions, and can decrease the risks to human health and the environment.
机译:目的 - 本文的目的是评估水质参数,导致:第一,生物过滤器(上升或下降)的流动方向,第二,由当地植物物种和第三组成的湿地(CW),用于去除的组合系统干旱地区水中有机质与营养素污染物。设计/方法/方法 - 用垂直上流和下流生物过滤器原位提出和测试集成系统。两种配置方案之后是三个分离的水平地下CWS:两种分离与芦苇澳大利亚,Typha Latifolia和第三个梦想。该方法基于收集数据的统计分析。研究结果 - 目前的实验表明,种植与P. Australis和T. Latifolia种植的湿地表现出最高的拆除。此外,对于大多数参数而言,T. Latifolia比P. Australis更好地表现出色,特别是在第一个系统中,而湿地效率表明P. Australis在第一系统中删除TP和第二个系统中的TP贡献了很大贡献系统。通常,对于合并的生物过滤器和湿地系统的最高去除效率,本研究表明,第一系统比所有参数更好地执行。原创性/价值 - 研究的原创性是它与原位两种生物过滤系统相比:垂直上流和下流生物过滤器。为避免在oureed ant and或湖中直接出院的国内废水的影响,这一集成系统可以是废水处理的替代方案之一,因为它揭示了在干旱地区保护水生生态系统的必要性可以降低人类健康和环境的风险。

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