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A new approach to investigate the interactions between sediment transport and ecotoxicological processes during flood events

机译:研究洪水事件中沉积物迁移与生态毒理过程之间相互作用的新方法

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摘要

Extreme hydrodynamic events such as flood events or dredging activities bear the risk of eroding sediments in rivers, reservoirs, harbour basins or estuaries. One of the key concerns associated with these erosion processes is the re-mobilisation of sediment-bound pollutants in highly contaminated sediments. To date, much research has been conducted to characterise flow and sediment processes associated with hydrological events such as floods. Furthermore, there is a large body of literature describing the interaction of contaminants associated with particulate matter to aquatic biota. However, there is little knowledge regarding interactions between hydro-sedimentological and ecotoxicological processes. Understanding of the ecotoxicological consequences and associated risks to aquatic wildlife associated with hydraulic events can provide critical information to regulatory bodies or managing authorities. Specifically, it will aid in assessing risks associated with current management practices and will aid in developing more sustainable future management practices for waterways or harbours. Therefore, a combined experimental methodology between hydraulic engineers and ecotoxicologists was developed to investigate the ecological and toxicological relevance of sediment re-suspension and transport during erosion. An overview of this methodology is given in the present paper.
机译:极端的水动力事件,例如洪水事件或疏ging活动,有可能侵蚀河流,水库,港口盆地或河口的沉积物。与这些侵蚀过程相关的主要问题之一是在高度污染的沉积物中重新迁移与沉积物结合的污染物。迄今为止,已经进行了大量研究来表征与洪水等水文事件相关的流量和沉积过程。此外,有大量文献描述了与颗粒物相关的污染物与水生生物的相互作用。但是,关于水沉降过程和生态毒理过程之间相互作用的知识很少。了解与水力事件有关的水生野生生物的生态毒理后果和相关风险可以为监管机构或管理当局提供重要信息。具体来说,它将有助于评估与当前管理实践相关的风险,并将有助于为水路或港口开发更可持续的未来管理实践。因此,开发了水力工程师和生态毒理学家之间的组合实验方法,以研究侵蚀过程中沉积物重新悬浮和运输的生态学和毒理学意义。本文对这种方法进行了概述。

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