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复合水平流人工湿地中水生植物净化效果研究
引用本文:彭跃.复合水平流人工湿地中水生植物净化效果研究[J].现代农业科技,2013(3):236-238.
作者姓名:彭跃
作者单位:辽宁省环境监测实验中心,辽宁沈阳,110031
摘    要:采用2块结构相同的复合水平潜流人工湿地,选用不同的植物组合处理农村富营养化水体,分析2块湿地的净化效果,结果表明:2个复合水平流人工湿地对于TN和NH3-N的去除效果差异明显,而对于COD和TP的去除效果差异不明显。对COD、NH3-N、TN和TP的去除率,种植灯心草—菖蒲和美人蕉—风车草的1号复合湿地分别为29.4%、35.7%、43.6%和65.9%;种植香蒲—美人蕉和美人蕉—风车草的2号复合湿地分别为30.6%、49.2%、58.1%和64.5%;2个湿地通过植物吸收、存储氮量仅占湿地总氮的去除量的8.13%和10.72%,但是植物的存在间接地影响微生物硝化/反硝化,对提高湿地氮去除率具有重要作用。湿地通过植物吸收、存储磷量占湿地总磷的去除量的7.59%和10.25%。湿地脱磷的主要贡献来自基质,而植物的贡献较小。

关 键 词:复合水平流人工湿地  富营养化  水体  水生植物  净化效果

Study on Purification Effect of Aquatic Plants in Complex Level Flow Constructed Wetland
Authors:PENG Yue
Institution:PENG Yue (Liaoning Environmental Monitoring Center,Shenyang Liaoning 110031)
Abstract:Used the two plots of complex level flow constructed wetland which had the same structure and selected different combinations of plant dealing with eutrophic water in rural areas , the purifying effects were analyzed. The results showed that the differences of purification effects of the two plots of complex level flow constructed wetland for TN and NH 3 -N were significant but not significant for COD and TP. The removal rates of COD , NH 3 -N , TN and TP were 29.4% , 35.7% , 43.6% and 65.9% respectively in the No.1 complex wetland which planted rush- Acorus calamus and Canna indica -windmill grass. In the No.2 complex wetland which planted Typha latifolia - Canna indica and Canna indica -windmill grass , the removal rates of COD , NH 3 -N , TN and TP were 30.6% , 49.2% , 58.1% and 64.5% respectively. The two plots of wetland stored nitrogen accounted for only 8.13% and 10.72% of the total nitrogen removal in wetlands by plants absorb. However , the presence of plants indirectly affected microbial nitrification/ denitrification which played an important role to improve wetland nitrogen removal rate. The wetland stored phosphorus accounted for only 7.59% and 10.25% of the total phosphorus removal in wetlands by plants absorb. The main contributions of wetlands dephosphorization was from the substrate , and smaller form the plants.
Keywords:complex level flow constructed wetland  eutrophication  water body  wetland plants  purification effect
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