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首页> 外文期刊>The Science of the Total Environment >Evaluation of green sorption media blanket filters for nitrogen removal in a stormwater retention basin at varying groundwater conditions in a karst environment
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Evaluation of green sorption media blanket filters for nitrogen removal in a stormwater retention basin at varying groundwater conditions in a karst environment

机译:在岩溶环境中不同地下水条件下的雨水截留盆地中绿色吸附介质毯式过滤器的氮去除评估

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Removing excess nutrient from stormwater runoffs is necessary to protect the water quality of receiving water bodies such as rivers, lakes, springs, and groundwater aquifers. Silver Springs Springshed, located in the vicinity of Ocala, Florida, has received widespread attention from the local government and residents due to its long-term nutrient impact, which has resulted in eutrophication. Blanket filters containing Bio-sorption Activated Media (BAM) were implemented with different depths of the vadose zone in a stormwater retention basin. The design combined the interaction with groundwater as an innovative Best Management Practice can potentially boost the performance of nutrient removal. Selected storm runoffs were collected at multiple points that cover the runoff timeframe to determine the pollutant load. Infiltrating water samples were collected at various depths within BAM using lysimeters to validate the treatment effectiveness. Significant pollutant load reduction of nutrients was confirmed with highest 99% and 91% removal of nitrate and nitrite (NO_x) and total nitrogen (TN) at the deep blanket filter (with more groundwater intrusion impacts) due to more effective denitrification and longer contact time. Yet the highest pollutant load reduction of 93% and 84% removal of NO_x and TN was also observed at the shallow blanket filter (with less groundwater intrusion impacts). On the other hand, better pollutant load reduction of ammonia in the BAM layer was found at the shallow blanket filter presumably due to more available oxygen for nitrification.
机译:必须从雨水径流中去除多余的养分,以保护接收水体(如河流,湖泊,泉水和地下水蓄水层)的水质。位于佛罗里达州奥卡拉附近的银泉泉棚,由于其长期的营养影响而引起了富营养化,因此受到了当地政府和居民的广泛关注。在雨水滞留池中,在渗流区的不同深度处安装了包含生物吸附活化介质(BAM)的毯式过滤器。该设计结合了与地下水的相互作用,这是一种创新的最佳管理实践,可以潜在地提高营养物去除的性能。在覆盖径流时间范围的多个点收集了选定的暴雨径流,以确定污染物负荷。使用溶渗仪在BAM内不同深度收集渗透水样品,以验证处理效果。由于更有效的反硝化作用和更长的接触时间,深层毯式过滤器的硝酸盐和亚硝酸盐(NO_x)和总氮(TN)去除率最高,分别达到99%和91%,从而显着降低了养分的污染物负荷。 。然而,在浅层过滤器上也观察到最高的污染物负荷降低93%和84%的NO_x和TN去除率(对地下水的入侵影响较小)。另一方面,在浅层过滤器中发现BAM层中氨的污染物负荷降低效果更好,这可能是由于有更多可用于硝化的氧气。

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