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Performance of constructed wetlands with different substrates for the treated effluent from municipal sewage plants

机译:城市污水植物治疗流出物的不同底物的构造湿地的性能

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摘要

Constructed wetlands (CWs) are effective as an advanced treatment process for the treated effluent of municipal wastewater plants. An appropriate substrate, suitable macrophytes, and proper operation are crucial for pollutant abatement. In this research, three subsurface flow CWs with various substrates were investigated. Pollutants abatement efficiency under various operational schemes were analyzed. The results showed that the satisfactory hydraulic loading rate was 0.25 m~3/(m~2·d). When the C/N ratio of influent was adjusted to 5.87 by adding a carbon source, the denitrification and dephosphorization efficiency would be improved, with 7-8 mg/L for total nitrogen (TN) and 0.4 mg/L for total phosphorus (TP) in the effluent, which can achieve the Class 1A Discharge Standard for discharge to natural waterways in China. A greater depth of submersion for the substrate layer resulted in a more conducive environment for the abatement of nitrogen substances. However, a 40-cm depth of submersion in CWs results in better removal efficiency of TN and TP. A plastic ring substrate (PRS) contains biological enzyme promoter formula, which was conducive to nitrifying and denitrifying bacteria. The biofilm affinity and coordination with plants made the PRS more effective than the other two substrates, especially for NO_3~--N and TN abatement efficiency.
机译:构造的湿地(CWS)作为市政废水植物治疗流出物的先进治疗方法是有效的。适当的底物,合适的宏细胞和适当的操作对于污染物减少至关重要。在本研究中,研究了具有各种基材的三个地下流量CWS。分析了各种操作方案下的污染物减排效率。结果表明,令人满意的液压负载率为0.25m〜3 /(m〜2·d)。当通过加入碳源调节到5.87的C / N比,将改善脱氮和脱磷效率,总氮气(TN)和0.4mg / L的总磷(TP) )在流出物中,这可以实现1A类放电标准,用于排出中国的天然水道。对于基底层的浸没深度更深,导致更有利于氮气物质的环境。然而,CWS中的40厘米的浸没深度导致TN和TP的更好的去除效率。塑料环基材(PRS)含有生物酶启动子配方,其有利于硝化和反硝化细菌。生物膜与植物的亲和力和协调使PRS比其他两个基板更有效,特别是对于NO_3〜 - N和TN减排效率。

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