期刊文献+

高效除氮菌在模拟潜流人工湿地中的应用

Application of High Rate Denitrifier for Constructed Wetland with Simulating Undercurrent
下载PDF
导出
摘要 研究高效除氮菌的加入对模拟潜流人工湿地除污效果的影响。结果表明,除氮菌提高了污水中COD、氨氮及总磷的去除率,对COD的去除率可以提高10%左右,总磷最高可提高20%,试验三天,对氨氮的去除率也提高20%-30%。 Research on pollutants removal efficiency of the high rate denitrifier applied for constructed wetland with simulating undercurrent was conducted. The result showed that the denitrifier increased the removal of COD and total phosphorus by 10% and 20% respectively. And the removal of ammonia nitrogen was increased 20% - 30% from the experiment for three days.
出处 《四川环境》 2008年第4期1-3,共3页 Sichuan Environment
关键词 除氮菌 湿地 去污 Denitrifier wetland pollutant removal
  • 相关文献

参考文献8

  • 1Tanner CC, Sukias J P, Upsdell M P1. Relationships between loading rates and pollutant removal during maturation of gravel bed constructed wetlands [ J]. J. Enviro Qual. , 1998,27 : 448- 458.
  • 2IWA. Constructed wetlands for pollution control:processes, performance, design and operation International Water Association Scientific and Technical Report No. 8 [ R ] . London, U K: IWA. Publishing,2000.
  • 3阮红权,杨海真.构造人工湿地技术及其应用[J].江苏环境科技,2004,17(3):35-37. 被引量:33
  • 4国家环境保护局.水与废水监测分析方法[M].北京:中国环境科学出版社,1998.
  • 5USEPA. Constructed wetlands treatment of municipal wastewaters manual. EPA 625-R-99-010[ R]. Cincinnati: Office of Research and Development ,2000.
  • 6Lauchlan H F, Spring M C, David S. A test of four plant species to reduce total nitrogen and total phosphorus fromsoil leachate in subsurface wetland microcosms [ J ] . Bioresource Technology, 2004,94(2) :185-192.
  • 7Sun G, Gray K R, Biddlestone A J, et al. treatment of agricultural wastewater in a combined tidal flow-downflow reed bed system [ J]. Water Science and Technology, 1999,40 (3) : 139-146.
  • 8夏汉平.人工湿地处理污水的机理与效率[J].生态学杂志,2002,21(4):51-59. 被引量:331

二级参考文献100

  • 1沈耀良,杨铨大.新型废水处理技术——人工湿地[J].污染防治技术,1996,9(1):1-8. 被引量:107
  • 2[59]Morris,M.and Herbert,R.The design and performance of a vertical flow reed bed for the treatment of high ammonia,low suspended solids organic effluents[J].Water Science and Technology,1997,35(5):197~204.
  • 3[60]Narkis,N.et al.Denitrification at various carbon to nitrogen ratios[J].Water Research,1979,13:93~98.
  • 4[61]Newman,J.M.et al.Seasonal performance of a wetland constructed to process dairy milkhouse wastewater in Connecticut[J].Ecological Engineering,2000,14:181~198.
  • 5[62]Nguyen,L.M.Organic matter composition,microbial biomass and microbial activity in gravel-bed constructed wetlands treating farm dairy wastewaters[J].Ecological Engineering,2000,16:199~221.
  • 6[63]Panswad,T.and Chavalparit,O.Water quality and occurrence of protozoa and metazoa in two constructed wetlands treating different wastewaters in Thailand[J].Water Science and Technology,1997,36(12):183~188.
  • 7[64]Peverly,J.H.et al.Growth and trace metal absorption by Phragmites australis in wetlands constructed for landfill leachate treatment[J].Ecological Engineering,1995,5:21~35.
  • 8[65]Reddy,K.R.and D'Angelo,E.M.Biogeochemical indicators to evaluate pollutant removal efficiency in constructed wetlands[J].Water Science and Technology,1997,35(5):1~10.
  • 9[66]Reddy,K.R.and DeBusk,W.F.Nutrient storage capabilities of aquatic and wetland plants[A].In:Reddy,K.R.(eds).Aquatic Plants for Water Treatment and Resource Recovery[C].Orlando,FL:Magnolia Publishing,1987.337~357.
  • 10[67]Reddy,K.R.and Patrick,W.H.Nitrogen transformations and loss in flooded soils and sediments[J].CRC Critical Reviews in Environmental Control,1984,13:273~309.

共引文献364

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部