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流型、植物种类和基质厚度对人工湿地去除废水中氨氮的影响

Flow Pattern,Plant Species and Substrate Thickness on the Removal of Ammonia Nitrogen from Wastewater by Constructed Wetland

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【作者】 崔延瑞张璐璐程瑶钱珂珂张庆荣孙剑辉

【Author】 CUI Yan-rui;ZHANG Lu-lu;CHENG Yao;QIAN Ke-ke;ZHANG Qing-rong;SUN Jian-hui;School of Environment,Henan Normal University; Key Laboratory for Yellow River and Huai River Water Environment and Pollution Control,Ministry of Education; Henan Key Laboratory of Environmental Pollution Control;

【机构】 河南师范大学环境学院黄淮水环境与污染防治教育部重点实验室河南省环境污染控制重点实验室

【摘要】 实验模拟人工湿地,以沙、土混合物为基质,比较了水平潜流和垂直流、不同植物、不同基质厚度对氨氮(NH4+-N)处理效果的影响,并分别进行了分析。实验表明,水平潜流和垂直流NH4+-N去除率分别达到59%和68%,垂直流人工湿地处理效果较好的原因是垂直流为硝化创造了有利的条件。金边吊兰、金钱草、绿萝对NH4+-N的平均去除率依次为46%、60%和70%,分析认为根系是影响NH4+-N去除效果的主要因素。以金钱草做湿地植物,基质厚度为6 cm时去除效果最好,最大去除率达到74%,表明基质厚度与植物根系长度相适应时,NH4+-N的去除效果最佳。研究结果为深化湿地去除NH4+-N的理论研究和应用推广提供了支撑。

【Abstract】 The simulation of constructed wetland was established with sand and soil mixture as substrate. The effect of ammonia nitrogen( NH4+-N) removing was compared using subsurface horizontal subsurface flow and vertical flow,different plants,and different substrate thickness. Experimental results show that the NH4+-N removal rate of horizontal subsurface flow and vertical flow reached 59% and 68% respectively. The reason of vertical flow constructed wetland is better was because of vertical flow have created favorable conditions for nitrification. NH4+-N average removal rate of Chlorophytum Phnom Penh,Herba Lysimachiae,and Scindapsus aureus is 46%,60%,and70% respectively. It is thought that root be the main factors influencing the effect of NH4+-N removal. NH4+-N removal rate reached 74% when the substrate thickness is 6cm with Herba Lysimachiae as wetland plant. It shows that NH4+-N removal effect is best as the thickness of the substrate adapted to plant roots length. The results deepened the theory of removal NH4+-N using the wetland and provided support for application promotion.

【基金】 河南省基础与前沿技术研究计划项目(122300410413);河南省教育厅科学技术研究重点项目(12B610005);河南师范大学青年科学基金(01036400071)资助
  • 【文献出处】 科学技术与工程 ,Science Technology and Engineering , 编辑部邮箱 ,2016年12期
  • 【分类号】X703.1
  • 【被引频次】14
  • 【下载频次】238
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