首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Quantifying the effects of surface conveyance of treated wastewater effluent on groundwater, surface water, and nutrient dynamics in a large river floodplain
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Quantifying the effects of surface conveyance of treated wastewater effluent on groundwater, surface water, and nutrient dynamics in a large river floodplain

机译:量化处理废水流出物在大型河流洪泛区地下水,地表水和营养动力学对地下水的影响

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Restoration and reconnection of floodplain systems provide multiple societal and ecosystem benefits, while providing municipalities the opportunity to attempt alternative approaches to maintain infrastructure protection and function. In some restored floodplains, treated wastewater effluent discharge is redirected over land instead of directly into rivers to allow natural flow and infiltration, to facilitate restoration designs such as levee setback, and to provide additional freshwater to floodplain ecosystems. However, indirect discharge of treated effluent over land may pose risks to surface and groundwater when pollutants like excess nutrients enter the floodplain and undergo transformation. We investigated the consequences for groundwater and surface water quality when effluent was redirected as open water channels over a floodplain surface. In this study, seasonal floodplain nutrient concentrations in groundwater and surface water were observed for more than 5 years as a floodplain and wastewater treatment plant underwent a major restoration project that included river-floodplain reconnection with levee setback and redirection of effluent discharge from a river channel to open flow across the restored floodplain. Nutrient loading to the surrounding floodplain groundwater and surface water was observed, but based on measures of hydrological connectivity, groundwater flow paths, and biogeochemistry, nutrients from the effluent moved within the floodplain with minimal effect to the surrounding floodplain water quality. We did not find evidence of substantial additional processing that could replace advanced nutrient treatment in this system, however we did observe evidence of diverse nutrient processes that may support enhanced retention if treatment channels were designed to enhance these processes. We suggest that indirect discharge of high quality treated effluent in a restored floodplain is a viable alternative to direct discharge into a river when groundwater flow directs that discharge to habitats where minimal nutrient sensitivity is expected.
机译:洪泛生系统的恢复和重新连接提供多种社会和生态系统效益,同时提供城市的机会,以试图维持基础设施保护和功能的替代方法。在一些恢复的防洪中,经过处理的废水污水排放被重定向到陆地上而不是直接进入河流以允许自然流动和渗透,以促进堤防挫折等恢复设计,并为洪泛生态系统提供额外的淡水。然而,当过量的营养物质相进入泛洪叶并经过转化时,在土地上间接放电可能会对地面和地下水构成风险。我们调查了在洪泛平面上被重定向的流出物被重定向时对地下水和地表水质的后果。在这项研究中,观察到地下水和地表水处的季节性泛洪叶营养浓度超过5年,因为泛洪水和废水处理厂经历了一个主要的恢复项目,其中包括河洪水的重构和河流河道的流出物排放的重定向。打开恢复的洪泛平面的流动。观察到周围防洪地下水和地表水的营养加载,但基于水文连通性,地下水流动路径和生物地球化学的措施,来自流出物的营养素在洪泛区中移动,对周围的洪泛区水质的影响最小。我们没有发现有实质性额外处理的证据可以取代该系统中的先进营养处理,但是我们确实遵守多种营养过程的证据,如果旨在增强这些过程,可能会支持增强的保留的营养过程。我们建议在恢复的洪泛区中的高质量治疗流出物的间接放电是当地下水流动指导到预期最小营养灵敏度的栖息地时直接排放到河流中的可行替代方案。

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