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人工湿地对城市生活污水的深度净化效果研究:冬季和夏季对比
摘要点击 2456  全文点击 1633  投稿时间:2008-03-24  修订日期:2008-05-22
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中文关键词  人工湿地  季节  城市生活污水  深度净化
英文关键词  constructed wetland  seasons  municipal wastewater  tertiary treatment
作者单位
项学敏 大连理工大学环境与生命学院工业生态与环境工程教育部重点实验室大连116024 
杨洪涛  
周集体  
杨凤林  
王中华  
中文摘要
      采用改进的三级串联垂直流人工湿地对大连2个典型城市污水处理厂的二级出水进行深度净化处理,在大连户外自然条件下常年连续运行,对该人工湿地在夏季、冬季和初春气候条件的运行效果进行对比,重点考察了其对COD、 TN、 NH+4-N和TP的去除效果.其中夏季(6~8月)COD、 TN、 NH+4-N和TP平均去除率分别达到了88.5%、 76%、 100%和98%,冬季(11月~次年1月)去除率分别达到了88%、 85.3%、 86.4%和97%;初春(2~4月)去除率分别达到了87.7%、 76.7%、 70.3%和95.5%.夏季、 冬季和初春出水水质为:COD为2.8、 3.8和3.9 mg·L-1;TP为0.02、 0.05和0.07 mg·L-1;TN为6.8、 2.9和9.2 mg/L;NH+4-N为0.01、 0.3和8.1 mg/L.结果表明,该人工湿地对大连城市生活污水深度净化效果显著,其中COD和TP去除效果稳定,出水水质好于《地表水环境质量标准》(GB 3838-2002)Ⅲ类质量标准;而出水中TN和NH+4-N分别达到《城镇污水处理厂污染物排放标准》(GB 18918-2002)一级A和一级B标准.各污染物在夏季、 冬季和初春的脱除负荷分别达到了COD为4.9、 5.1和5.0 g·(m2·d)-1;TN为3.4、 3.0和5.5 g·(m2·d)-1;NH+4-N为0.2、 0.6和3.7 g·(m2·d)-1;TP为0.15、 0.30和0.28 g·(m2·d)-1.对比不同季节人工湿地对各种污染物的去除率及脱除负荷,各污染物的去除受季节影响并不显著,但是NH+4-N和TN的去除受进水污染负荷影响较大.
英文摘要
      An improved three-stage vertical flow constructed wetland (CW) was used for tertiary treatment of effluent from two typical Dalian municipal wastewater treatment plants. The experiments were carried out under ambient condition in Dalian for the whole year. Performances of the CW for COD, TN, NH+4-N and TP removal in summer (Jun.-Aug.), winter (Nov.-Jan. the second year) and spring (Feb.-Apr.) were compared. In summer, the removal rates of COD, TN, NH+4-N and TP reached 88.5%, 76%, 100% and 98%, respectively. While in winter they reached 88%, 85.3%, 86.4% and 97%, respectively. In spring, the removal rates reached 87.7%, 76.7%, 70.3% and 95.5%, respectively. The effluent water quality for summer, winter and spring were: COD 2.8, 3.8 and 3.9 mg·L-1, respectively; TP 0.02, 0.05, and 0.07 mg·L-1, respectively; TN 6.8, 2.9, and 9.2 mg·L-1, respectively; NH+4-N 0.01, 0.3, and 8.1 mg·L-1, respectively. Results showed good performance of CW for Dalian municipal wastewater tertiary treatment, especially for COD and TP removal. The effluent COD and TP meet the needs of Environmental Quality Standard for Surface Water (GB 3838-2002)Ⅲ, whereas the effluent TN and NH+4-N meet the needs of Discharge Standard of Pollutants for Municipal Wastewater Treatment Plant(GB 18918-2002)class I A and B, separately. The pollutant removal loads in summer, winter and spring were as flow: COD 4.9, 5.1, and 5.0 g·(m2·d)-1;TN 3.4, 3.0, and 5.5 g·(m2·d)-1;NH+4-N 0.2, 0.6, and 3.7 g·(m2·d)-1;TP 0.15, 0.30, and 0.28 g·(m2·d)-1. It is indicated that no significant influence of seasons on pollutant removal is found by comparing the removal rates as well as pollutant removal loads in different seasons, however, the removal of NH+4-N and TN in CW is mainly influenced by influent pollutant loads.

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