评价绿色屋顶改造使用水处理残留物,以减少磷的浸出

IF 0.7 4区 艺术学 0 ARCHITECTURE
C. Poor, Nick Kanno, Taylor Marumoto
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引用次数: 0

摘要

绿色屋顶在城市地区变得越来越普遍,以减缓和减少建筑物的雨水径流。然而,人们发现磷会从绿色屋顶中渗出。水处理残留物(WTRs)是水处理过程中的废物,可以帮助减少绿色屋顶上磷的浸出。本研究评估了绿色屋顶的改造,包括在绿色屋顶排水口安装WTR过滤器,以减少径流中的磷。每次下雨时收集降雨、绿色屋顶径流和普通屋顶径流的样本,并分析总磷(TP)、磷酸盐(PO43−)、铜(Cu)和锌(Zn)。样本分别于2020年1月至3月和2020年9月至2021年3月采集。冬季(2020年1 - 3月和2021年)磷肥和总磷浓度显著降低(p<0.05),秋季(2020年9 - 12月)无显著降低。WTR效能的变化可能是由于WTR在夏季变干,尽管看起来WTR在秋季湿润期重新饱和后是有效的。本研究表明,只要污水处理厂不干化,污水处理厂改造可以减少磷的浸出。在夏季干燥的地区,每年秋季应更换wtr,以最大限度地发挥功效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EVALUATION OF A GREEN ROOF RETROFIT USING WATER TREATMENT RESIDUALS TO REDUCE LEACHING OF PHOSPHORUS
Green roofs have become increasingly common in urban areas to slow and reduce stormwater runoff from buildings. However, phosphorus has been found to leach from green roofs. Water treatment residuals (WTRs), a waste product in the water treatment process, may help reduce leaching of phosphorus from green roofs. This study evaluated a green roof retrofit that consisted of a WTR filter at the green roof drain to reduce phosphorus in runoff. Samples of rainfall, runoff from a green roof, and runoff from a regular roof were collected every time it rained and analyzed for total phosphorus (TP), phosphate (PO43−), copper (Cu) and zinc (Zn). Samples were taken January–March 2020 and September 2020–March 2021. Phosphate and TP concentrations were significantly lower (p<0.05) with the retrofit during the winter (Jan–March 2020 and 2021) but not during the fall (Sept–December 2020). The change in WTR efficacy may be due to the WTRs drying out during the summer months, although it appears the WTRs are effective once they have been resaturated during the fall wetting period. This study shows that the WTR retrofit may reduce phosphorus leaching as long as the WTRs do not dry out. The WTRs should be replaced each fall in regions that experience dry summer months to maximize efficacy.
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来源期刊
CiteScore
2.30
自引率
7.10%
发文量
36
期刊介绍: The purpose of the Journal of Green Building is to present the very best peer-reviewed research in green building design, construction, engineering, technological innovation, facilities management, building information modeling, and community and urban planning. The Research section of the Journal of Green Building publishes peer-reviewed articles in the fields of engineering, architecture, construction, construction management, building science, facilities management, landscape architecture, interior design, urban and community planning, and all disciplines related to the built environment. In addition, the Journal of Green Building offers the following sections: Industry Corner that offers applied articles of successfully completed sustainable buildings and landscapes; New Directions in Teaching and Research that offers guidance from teachers and researchers on incorporating innovative sustainable learning into the curriculum or the likely directions of future research; and Campus Sustainability that offers articles from programs dedicated to greening the university campus.
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