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北京市城市雨洪利用对策 被引量:1

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出处 《北京水利科技》 1991年第4期19-26,共8页
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  • 1Dietz M E. Low impact development practices:a review of current re- search and recommendations for future directions[J]. Water Air Soil Pollut, 2007,186 : 351-363.
  • 2美国景观设计师协会[DB/OL].http://www.asla.org/.
  • 3Davis A P, Hunt W F, Traver R G, et al. Bioretention technology: overview of current practice and future needs[J]. Journal of Environmental Engineering, 2009,135(3) : 109-117.
  • 4Roy-Poirier A, Champagne P, Asee A M, et al. Review of bioretention system research and design: past, present, and future [J]. Journal of Environmental Engineering, 2010,136 (9) : 878-889.
  • 5Lucas W C,Greenway M. Nutrient retention in vegetated and nonvege-tated bioretention mesocosms [J 3. Journal of Irrigation and Drainage Engineering, 2008,134 (5) :613-623.
  • 6Fletcher T,Zinger Y,Deletic A,et al. Treatment efficiency of biofilters results of a large-scale eolumn study[-C]. Rainwater & Urban Design Confer- enee, Sydney, Australia, 2007.
  • 7Read J,Wevill T, Fletcher T, et al. Variation among plant species in pollutant removal from stormwaterin biofiltration systems [-J ]. Water Research, 2008,42 : 893-902.
  • 8Read J,Fletcher T D,Wevill T,et al. Plant traits that entance pollutant removal from stormwater in biofiltration systems[J].International Journal of Phytoremediation, 2010,12 : 34-53.
  • 9Lewis J F,Hatt B E,Deletic A,et al. The impact of vegetation on the hydraulic conductivity of stormwater biofiltration systemsEC], llth Interna- tional Comference on Urban Drainage, Edinburgh, Scotland, UK, 2008.
  • 10Denich C,Bradford A. Cold climate issues for bioretention:assessing im- pacts of salt and aggregate application on plant health, media dogging and groundwater quality[C]. 2008 International Low Impact Development Confer- ence, Seattle, Washington, 2008.

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