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水力发电学报 ›› 2017, Vol. 36 ›› Issue (8): 65-77.doi: 10.11660/slfdxb.20170808

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生物滞留系统处理径流营养物研究进展

  

  • 出版日期:2017-08-25 发布日期:2017-08-25

Advances in studies on bioretention systems for purifying runoff nutrients

  • Online:2017-08-25 Published:2017-08-25

摘要: 伴随城市不透水面积的增大,由暴雨径流产生的非点源污染对受纳水体水质的影响也日益突出。针对海绵城市建设的大力推进,讨论了低影响开发(Low Impact Development,LID)生物滞留设施径流营养物去除和模型模拟中所存在的问题,从吸附作用、微生物过程、植物摄取营养物及相关预测模型4个方面阐述了生物滞留系统中营养物的归趋与去除机制;从混合填料(Bioretention Soil Mix,BSM)设计和结构组合优化(入流特性改善、填料结构组合、出口设置与添加碳源)两个方面总结了生物滞留池营养物去除效果的提效手段。提出生物滞留系统填料改良(提高填料持水、下渗及其对径流污染物的吸附能力等)、结构设计优化和营养物循环中相关分子生态学研究等是未来重点的研究方向。

Abstract: As the impervious urban area is increasing, non-point source pollution arising from storm runoff has a growing impact on the quality of receiving water. To promote the sponge city construction in China, this paper discusses the runoff nutrient removal from bioretention systems of low impact development, the problems in its numerical models, and the fate of the nutrients and their removal mechanisms. Methods for improving the nutrient removal effects are summarized from two aspects of bioretention soil mixture (BSM) design and structure optimization, and the optimization includes four measures: improving inflow characteristics, adjusting the combination in packing structure, adjusting export settings, and adding carbon sources. We suggest that future researches should focus on media improvement, optimization of structure design, and molecular ecology related to nutrient cycling.

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