首页> 美国卫生研究院文献>Water Research X >The horizontal levee: a multi-benefit nature-based treatment system that improves water quality and protects coastal levees from the effects of sea level rise
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The horizontal levee: a multi-benefit nature-based treatment system that improves water quality and protects coastal levees from the effects of sea level rise

机译:水平堤坝:一种基于自然的多利益处理系统可改善水质并保护沿海堤坝免受海平面上升的影响

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摘要

Municipal wastewater treatment plants in coastal areas are facing numerous challenges, including the need to provide a cost-effective approach for removing nutrients and trace organic contaminants from wastewater, as well as adapting to the effects of climate change. The horizontal levee is a multi-benefit response to these issues that consists of a sloped subsurface treatment wetland built between a coastal levee and tidal marshes. The wetland attenuates storm surges and can provide space for wetland transgression to higher elevations as sea levels rise, while simultaneously removing contaminants from treated wastewater effluent. To assess the ability of the horizontal levee to improve water quality and to identify optimal operating conditions, a 0.7-ha experimental system was studied over a two-year period. The removal of nitrate and trace organic contaminants was particularly sensitive to hydrology; rapid and near complete removal (>97%) of these contaminants was observed in water flowing through the subsurface, whereas surface flows did not exhibit measurable contaminant removal. Removal of F+ coliphage also appeared to be sensitive to hydrology, with up to 99% removal of these indicator viruses in subsurface flow. For phosphate, removal was not as sensitive to hydrology, but significant removal (>83%) was still observed when overland flow was eliminated. Although removal of contaminants did not appear to be sensitive to other design considerations, parameters such as soil texture and planting regimes affected the maximum subsurface flows, which in turn controlled contaminant mass loadings. Rapid subsurface removal of contaminants suggests that water quality benefits of these systems are limited by physical constraints (i.e., the ability of the system to maintain subsurface flow) and not chemical or biological conditions in the subsurface.
机译:沿海地区的市政废水处理厂面临众多挑战,包括需要提供一种经济有效的方法来去除废水中的养分和痕量有机污染物,以及适应气候变化的影响。水平堤坝是对这些问题的多方面响应,其中包括在沿海堤坝和潮汐沼泽之间建造的倾斜的地下地下处理湿地。随着海平面上升,湿地可减轻风暴潮的影响,并可以为湿地越境提供更高的海拔高度,同时从经过处理的废水中去除污染物。为了评估水平堤坝改善水质和确定最佳运行条件的能力,在两年的时间内研究了一个0.7公顷的实验系统。硝酸盐和微量有机污染物的去除对水文学特别敏感。在流过地下的水中观察到了这些污染物的快速且接近完全的清除(> 97%),而表面流没有显示出可测量的污染物清除。 F +噬菌体的去除似乎也对水文学敏感,地下流中这些指示剂病毒的去除率高达99%。对于磷酸盐而言,清除对水文学不是那么敏感,但是当消除了陆上水流时,仍观察到大量清除(> 83%)。尽管去除污染物似乎对其他设计考虑并不敏感,但诸如土壤质地和种植方式等参数影响了最大地下流量,进而控制了污染物的质量负荷。快速从地下去除污染物表明,这些系统的水质优势受到物理限制(即系统保持地下流量的能力)的限制,而不受地下化学或生物条件的限制。

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