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库滨带对面源污染物的净化效果试验研究 被引量:4

Experimental Study of Purification Effect of Shoreland Buffer Strips on Non-point Contaminant
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摘要 为进一步研究滨岸缓冲带对面源污染物的净化机制,建立了农田、乔草带、滨水植物带、湿生草本带4个代表性试验小区,重点分析了其对氮、磷营养元素的净化能力.结果表明,农田是湖泊、水库等水体的重要的非点源污染源;乔草混合带对总氮(TN)及总磷(TP)有良好的净化作用,去除率分别为35.2%和32.6%.挺水植物对TN的去除效果非常显著,其质量浓度削减率达到88.9%,但是对TP表现为释放状态;草本过滤带具有较好的TN、TP净化效果,污染物去除率分别为37.4%和49.8%.过滤带内植被条件和入流污染物浓度是造成过滤带对TN净化效果差异的重要因素. In order to research purification mechanism of shoreland buffer strips on non-point contaminants, four typical experimental zones were selected to carry out a study on the nitrogen and phosphorus absorption capacity of them, which were farmland, arbor grass zone, waterfront plant zone and wet herbaceous zone. The results showed that the farmland was a very important source of no-point pol-lution ; the arbor grass zone had good purification effect on nitrogen and phosphorus with removal rate of 35.2% and 32.6% respective-ly; aquatic plants showed significant absorption effect on nitrogen with the concentration reduction rate of 88.9% , but showed a release effect on phosphorus; the waterfront plant zone showed better removal effect on nitrogen and phosphorus with removal rate of 37.4% and 49.8% respectively. The main factors influencing purification effect of shoreland buffer strips on nitrogen and phosphorus were vegetation conditions and inflow pollutant concentration.
出处 《华北水利水电大学学报(自然科学版)》 2014年第1期89-92,共4页 Journal of North China University of Water Resources and Electric Power:Natural Science Edition
基金 河北省科技计划项目(13273603D)
关键词 库滨带 面源污染 植被 净化效果 shoreland buffer strip non-point pollution vegetation purification effect
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  • 1蔚远中.小安溪小流域治理突出生物过滤带建设效果好[J].中国水土保持,2005(5):27-27. 被引量:3
  • 2罗晓娟,余勇利.植被缓冲带结构与功能对水质的影响[J].水土保持应用技术,2006(4):1-3. 被引量:33
  • 3王雪蕾,杨胜天,智泓,李茜,欧阳威.官厅水库库滨带非点源污染控制效应的遥感分析[J].环境科学学报,2007,27(2):304-312. 被引量:11
  • 4谢俊齐,唐程杰,李宪文,等.中国坡耕地[M].北京:中国大地出版社,2005:29-31,49-55.
  • 5Dickey E C, Vanderholm D H. Vegetative filter treatment of livestock feedlot runoff[ J ]. Journal of Environmental Quality, 1981,10(3) :279 -284.
  • 6Phillips J D. An evaluation of the factors determining the effec- tiveness of water quality buffer zones [ J ]. Journal of Hydrolo- gy, 1989,107 ( 1 ) :133 - 145.
  • 7Muscutt A D, Harris G L, Bailey S W, et al. Buffer zones to im- prove water quality : A review of their potential use in UK agri- culture[ J]. Agriculture, Ecosystems and Environment, 1993, 45(1 -2) :59-77.
  • 8Wigington J P, Griffith S M, Field J A, et al. Nitrate removal effectiveness of a riparian buffer along a small agricultural stream in Western Oregon [ J ]. Journal of Environmental Quali- ty,2003,32( 1 ) : 162 - 170.
  • 9Wilson L G. Sediment removal from flood water by grass fil- tration [ J].Transactions of American Society of Agricultural Engineers, 1967,10( 1 ) :35 - 37.
  • 10Lee K, Isenhart T, Schuhz R. Sediment and nutrient removal in an established multi-species riparian buffer[ J ]. Journal of Soil and Water Conservation ,2003,58 ( 1 ) : 1 - 7.

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