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Transfert de polluants au sein d'un ouvrage de traitement des eaux issues du ruissellement urbain - Mise au point d'un procédé de traitement complémentaire

机译:在城市径流水处理结构内污染物的转移-补充处理工艺的发展

摘要

The objective of this work is to evaluate the heavy metal transfer into an urban stormwater treatment device and to develop a treatment process which would allow improving the treatment of these waters. The scientific approach consisted first to characterize the metal loads forwarded into a retention pond receiving stormwater runoff coming from a highway and to evaluate the transfer of this metal pollution to the surrounding vegetation. The results of this preliminary study demonstrated: (1) a heavy metal transfer (Cd, Ni and Zn) from the water and soil compartments to the aquatic macrophytes present on the studied site, (2) the capacity of these macrophytes to accumulate metal pollutants into their tissues and (3) the bioindicator value of these macrophytes for biomonitoring of stormwater metal pollution. Regarding the capacity of plants to accumulate metals, especially in their roots, a phytoremediation process called floating treatment wetlands was proposed to improve urban stormwater quality. The treatment performances of these systems were evaluated through a microcosm experiment and the technical feasibility for implanting such floating systems directly on the surface of existing ponds was also evaluated. The results showed that floating treatment wetlands can be operated on the surface of retention pond provided that the material chosen for the construction of these systems are well adapted to environmental conditions. The results also brought to light the efficiency of floating treatment wetlands for metal uptake from water as well as the importance of the root system on pollutant retention and the filtration of fine suspended particles. Finally, this study showed that floating treatment wetlands can be considered as sustainable treatment systems that need low maintenance.
机译:这项工作的目的是评估将重金属转移到城市雨水处理设备中的情况,并开发一种处理方法,以改善对这些水的处理。科学方法首先包括表征转移到保留池中的金属负载,该保留池接收来自高速公路的雨水径流,并评估这种金属污染向周围植被的转移。这项初步研究的结果表明:(1)重金属(Cd,Ni和Zn)从水和土壤区室转移到研究地点存在的水生植物,(2)这些植物吸收金属污染物的能力。 (3)这些大型植物对雨水金属污染进行生物监测的生物指标价值。关于植物积累金属的能力,特别是植物根部金属的积累,提出了一种植物修复工艺,称为漂浮处理湿地,以改善城市雨水的质量。通过微观实验评估了这些系统的处理性能,并评估了将这种漂浮系统直接植入现有池塘表面的技术可行性。结果表明,只要为这些系统的构造选择的材料能够很好地适应环境条件,就可以在保留池的表面上进行漂浮处理湿地。结果还揭示了漂浮处理湿地从水中吸收金属的效率,以及根系对污染物保持和细小悬浮颗粒过滤的重要性。最后,这项研究表明,可以将浮动处理湿地视为需要低维护成本的可持续处理系统。

著录项

  • 作者

    Ladislas Séverine;

  • 作者单位
  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 fr
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