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八种不同工艺组合人工湿地系统除磷效果研究 被引量:13

ON PHOSPHORUS REMOVAL EFFICIENCY IN EIGHT KINDS OF DIFFERENT COMBINATION SYSTEMS OF WETLAND
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摘要 传统的人工湿地系统除磷效能的提高方式主要集中在基质填料的选择、湿地植物的筛选等方面,本试验从调整湿地的组合工艺着手探索提高磷去除效率的优化组合,在为期两年的研究中考察了推流床—下行流—上行流、下行流—上行流—推流床、好氧塘—下行流、下行流—兼性塘、推流床—下行流、下行流—上行流、推流床等8种不同工艺组合人工湿地系统对富营养化湖泊水体中磷的去除规律,比较了这些湿地组合所构建的生物学效应。试验结果显示,如果采用塘系统作组合单元在湿地系统中前置比较理想,而在不同的季节,不同水力负荷下的冲击试验结果表明,复合垂直流湿地系统可以常年保持稳定的、较高的磷去除能力,而且对水力变化具有更好的耐受性能。复合垂直流湿地作为一种新型的人工湿地系统工艺组合具有较好的理论价值和应用前景。 Traditional methods for the enhancement of phosphorus removal efficiency in wastewater often concentrated on the selection of substrates and wetland plant species.In this research,another method by adjusting the process of combination of wetland to improve phosphorus removal efficiency were tested.The author compared the removal efficiency of phosphorus in eutrophic lake water in eight different combination systems,including plug-flow-down-flow-up flow wetland,down-flow-up-flow-plug-flow wetland,oxidation pond-down-flow,down-flow-pond,plug-flow constructed wetland in two-year inspection.It was indicated that the pond process could not be installed as the end process.The results also showed that the process of down-flow combined with up-flow wetland was better than other kind of combined process in cold and warm weather,the endurance of this kind of combination to high hydraulic loading was also more preferable than others.That is to say,the down-flow-up-flow process was an ideal combined wetland process in treating wastewater.This kind of novel constructed wetland should be well used in the purification of eutrophic water.
出处 《长江流域资源与环境》 CAS CSSCI CSCD 北大核心 2008年第2期295-300,共6页 Resources and Environment in the Yangtze Basin
基金 湖北省科技攻关重大项目(2006AA305A03) 国家十五重大科技专项(2002AA60121)
关键词 人工湿地 组合工艺 水力负荷 季节变化 constructed wetland phosphorous combination process hydraulic loading seasonal change
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参考文献12

  • 1House C H. Combining constructed wetlands and aquatic and soil filter for reclamation and reuse of water[J]. Ecol Eng, 1999,12,27-38.
  • 2Frost C A,Gracel J,Smith K A. Physico-chemical screening of phosphate removing substrates for use in constructed wetland systems[J]. Water Res,1999,33(7):3 595-3 602.
  • 3Sakadevan K, Bavor H J. Phosphate adsorption characteristics of soils, slags and zeolite to be used assubstrates in constructed wetland systems[J]. Water Res, 1998,32 : 393 - 399.
  • 4Shalla G, John K, Paul R, et al. The nutrient assimilative capac ity of maerl as substrate in constructed wetland systems for waste treatment[J]. Water res,2000,34(8):2 183-2 190.
  • 5王圣瑞,年跃刚,侯文华,金相灿.人工湿地植物的选择[J].湖泊科学,2004,16(1):91-96. 被引量:130
  • 6吴晓磊.人工湿地废水处理机理[J].环境科学,1995,16(3):83-86. 被引量:456
  • 7Gyllenberg H G, Eklund E. The organisms..bacteria[A]. Biology of Plant Litter Decomposition [C]. London: Academic Press, 1974. 245-269.
  • 8Jenkinson D S, Ladd J N. Microbial biomass in soil: measurement and turnover[A]. Soil Biochemistry[C]. New York:Marcel Dekker,1981,(5) :415-471.
  • 9Liang Wei,Wu Zhen-bin,Cheng Shui-ping,et al. Roles of substrate microorganisms and urease activities in wastewater purlfication in a constructed wetland system[J]. Ecological Engineering, 2003,21 : 191 - 195.
  • 10Diederik P L,Rousseaua P,Vanrolleghemb A,et al. Constructed wetlands in Flanders: a performance analysis Ecological Engineering[J]. 2004,23 : 151 - 163.

二级参考文献41

  • 1吴献花,侯长定,王林,李荫玺.人工湿地处理污水的机理[J].玉溪师范学院学报,2002,18(1):103-105. 被引量:47
  • 2诸惠昌,胡纪萃.新型废水处理工艺——人工湿地的设计方法[J].环境科学,1993,14(2):39-43. 被引量:93
  • 3段昌群.植物对环境污染的适应与植物的微进化[J].生态学杂志,1995,14(5):43-50. 被引量:53
  • 4黄时达,杨有仪,冷冰,钱骏,任勇,李国文,任朝晖.人工湿地植物处理污水的试验研究[J].四川环境,1995,14(3):4-7. 被引量:33
  • 5丁树荣.高产水生维管束植物在城镇污水资源中的作用及其发展前景[J].中国环境科学,1984,4(2):10-15.
  • 6House C H. Combining constructed wetlands and aquatic and soil filter for reclamation and reuse of water. Ecol Eng,1999, 12:27-38.
  • 7Brix H. Use of constructed wetland in water pollution control: Historical development, present status, and future perspectives. War Sic Tech, 1994, 30(8):209-223.
  • 8Cooper P The design and performance of a nitrifying vertical flow reed bed treatment system. Wat Sic Tech, 1997, 35 (5) :215-221.
  • 9Shalla Gray. The nutrient assimilative capacity of maeral as a substrate in constructed wetland systems for waste treatment. Water Research, 2000, 34(8):2183-2190.
  • 10Fennessy MS, Cronk J K, Mitsch W J. Macrophyte productivuty and community development in created freshwater wetlands under experimental hydrological conditions. Ecol Eng, 1994,3(3):469-484.

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