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Factors affecting the ability of extensive green roofs to reduce nutrient pollutants in rainfall runoff

机译:影响广泛的绿色屋顶减少降雨径流营养污染物的因素

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摘要

Green roofs can retain urban rainfall runoff, but there are doubts about whether they can reduce urban nonpoint source pollution. To explore the factors affecting the ability of green roofs to reduce nutrients in rainfall runoff, nine types of extensive green roofs (EGRs) were analysed during 38 natural rainfall events and two early spring irrigation runoff events from 1 March to 30 November 2019 in Beijing. Differences among the module scale, growing medium material, growing medium depth, drainage layer material, planting time, rainfall characteristics and seasonal variation were examined to study their correlation with pollutant event mean concentration (EMC) and the load reduction performance of EGRs. The results showed that EGRs had higher total nitrogen (TN), ammonia nitrogen (NH_4~+t-N) and nitrate nitrogen (NO_3~--N) concentrations than traditional concrete roofs, but total phosphorus (TP) concentrations were similar, and EGRs could reduce some of the nutrient loads. One-way analysis of variance showed that the module scale, growing medium material, growing medium depth, drainage layer material, and planting time had no significant effect on TN and NO_3~--N concentrations (p > 0.05). The growing medium material had a significant effect on the TP concentration (p < 0.05). From the perspective of nutrient load reduction, module scale had a significant effect on TN and NH_4~+-N loads (p < 0.05). The growing medium depth had a significant effect on NH_4~+-N loads (p < 0.05). In addition, the growing medium material had a significant effect on TP loads (p < 0.05). When porous wool fibre and a bumpy plastic drainage board were selected as drainage layer materials, the effect on the NO_3~--N load differed significantly. In other situations, there were no factors with significant differences. In addition, the rainfall characteristics and seasonal variation influenced the pollutant concentration and EGR runoff load.
机译:绿色屋顶可以保留城市降雨径流,但有关于它们是否可以减少城市非点源污染的疑虑。为了探讨影响绿色屋顶减少降雨径流营养成分的因素,在38日到2019年11月1日至11月30日在北京分析了九种类型的绿色屋顶(EGRS)。研究了模块刻度,生长培养基材料,生长中等深度,排水层材料,种植时间,降雨特征和季节性变异的差异,以研究其与污染物事件平均浓度(EMC)的相关性和EGR的负荷降低性能。结果表明,EGRS总氮(TN),氨氮(NH_4〜+ TN)和硝酸氮(NO_3〜--N)浓度高于传统的混凝土屋顶,但总磷(TP)浓度相似,EGR可以减少一些营养负荷。单向性方差分析表明,模块刻度,生长培养基材料,生长培养基,排水层材料和种植时间对TN和NO_3〜N浓度没有显着影响(P> 0.05)。生长培养基材料对TP浓度有显着影响(P <0.05)。从营养负荷减少的角度来看,模块刻度对TN和NH_4〜+ -N载荷有显着影响(P <0.05)。越来越高的培养基深度对NH_4〜+ -N载荷有显着影响(P <0.05)。此外,生长培养基材料对TP载荷有显着影响(P <0.05)。 When porous wool fibre and a bumpy plastic drainage board were selected as drainage layer materials, the effect on the NO_3~--N load differed significantly.在其他情况下,没有具有显着差异的因素。此外,降雨特性和季节性变化影响了污染物浓度和EGR径流荷载。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第25期|139248.1-139248.14|共14页
  • 作者单位

    Key Laboratory of Urban Stormwater System and Water Environment Ministry of Education Beijing University of Civil Engineering and Architecture Beijing 100044 China;

    Key Laboratory of Urban Stormwater System and Water Environment Ministry of Education Beijing University of Civil Engineering and Architecture Beijing 100044 China;

    Key Laboratory of Urban Stormwater System and Water Environment Ministry of Education Beijing University of Civil Engineering and Architecture Beijing 100044 China;

    Department of Civil Engineering Auburn University Auburn Al 36849-5337 USA;

    Key Laboratory of Urban Stormwater System and Water Environment Ministry of Education Beijing University of Civil Engineering and Architecture Beijing 100044 China School of Environment Tsinghua University Beijing 100084 China;

    Key Laboratory of Urban Stormwater System and Water Environment Ministry of Education Beijing University of Civil Engineering and Architecture Beijing 100044 China;

    Key Laboratory of Urban Stormwater System and Water Environment Ministry of Education Beijing University of Civil Engineering and Architecture Beijing 100044 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Extensive green roofs; Nutrient concentration; Nutrient load reduction; Structural materials; Influential factors;

    机译:广泛的绿色屋顶;营养浓度;营养负荷减少;结构材料;有影响力的因素;

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