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首页> 外文期刊>Transactions of the ASABE >Evaluation of nutrient concentrations in runoff water from green roofs, conventional roofs, and urban streams.
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Evaluation of nutrient concentrations in runoff water from green roofs, conventional roofs, and urban streams.

机译:评估绿色屋顶,常规屋顶和城市溪流的径流水中养分浓度。

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This study evaluated nutrient concentrations in runoff water from conventional roofs, green roofs, and urban streams, focusing on the impacts of compost addition at the industry standard of 15% by volume to green roofs at installation. Water samples were collected during selected rainfall events (n=9) during calendar year (CY) 2008 and from the urban stream approximately monthly during baseflow conditions. Water samples were analyzed for ammonium-nitrogen (NH4-N), nitrite-N (NO2-N), nitrate-N plus NO2-N (referred to as NO3-N), total N (TN), soluble reactive phosphorus (SRP), total P (TP), and total organic carbon (TOC). The concentrations of SRP, TP, TN, and TOC were significantly greater in runoff from the green roofs that received compost during installation than from the conventional roofs or the green roof without compost addition, while the NH4-N, NO2-N, and NO3-N concentrations in stormwater runoff were generally not significantly different across the conventional or green roofs. Nutrient concentrations in the study streams, except for TOC, generally increased with the percentage of urban and pasture land use in the stream catchment, and the exponential relationship was generally strongest (higher R2) for NO3-N, TN, and P. Nutrient concentrations in stormwater runoff from the green roof without added compost were within the range observed across the study streams. However, nutrient concentrations in stormwater from the green roofs with compost were more variable when compared to the selected streams, and P concentrations were significantly greater in stormwater from the compost-amended green roofs compared to that measured in the study streams. The data collected in this study provide evidence that compost applied at the industry standard of 15% by volume to maintain plant growth is contributing to increases of nutrients in stormwater runoff 17 to 23 months after installation. Future studies should focus on compost additions to green roofs that maximize plant growth and survival while minimizing nutrient (particularly P) loss in stormwater.
机译:这项研究评估了常规屋顶,绿色屋顶和城市溪流中径流水中的养分浓度,重点是按工业标准添加15%的工业标准的堆肥对安装后的绿色屋顶的影响。在2008日历年(CY)期间,在选定的降雨事件(n = 9)期间收集了水样,在基流条件下大约每月从城市河流收集了水样。分析了水样中的铵氮(NH 4 -N),亚硝酸盐-N(NO 2 -N),硝酸盐-N加NO 2 -N(称为NO 3 -N),总氮(TN),可溶性反应性磷(SRP),总磷(TP)和总有机碳(TOC)。在安装过程中接受堆肥的绿色屋顶的径流中,SRP,TP,TN和TOC的浓度明显高于传统屋顶或未添加堆肥的绿色屋顶的径流,而NH 4 -在常规或绿色屋顶上,雨水径流中的N,NO 2 -N和NO 3 -N浓度通常没有显着差异。除TOC以外,研究溪流中的养分浓度通常随着溪流集水区中城市和牧场土地使用的百分比而增加,并且NO 最高) > 3 -N,TN和P。未添加堆肥的绿色屋顶雨水径流中的营养物浓度在整个研究溪流范围内。但是,与选定的河流相比,带有堆肥的绿色屋顶的雨水中的养分浓度变化更大,与研究河流中测得的相比,经过堆肥改良的绿色屋顶的雨水中的P浓度明显更高。这项研究收集的数据提供了证据,表明按工业标准(按体积计15%)施用堆肥来维持植物生长,可在安装后17至23个月增加雨水径流中的养分。未来的研究应侧重于在绿色屋顶上添加堆肥,以最大程度地提高植物的生长和存活率,同时最大程度地减少雨水中养分(尤其是磷)的流失。

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