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Saturation to Improve Pollutant Retention in a Rain Garden

机译:饱和度可提高雨水花园中的污染物截留率

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摘要

Rain gardens have been recommended as a best management practice to treat stormwater runoff.Replicate rain gardens were constructed in Haddam,CT,to treat roof runoff.The objective of this study was to assess whether the creation of a saturated zone in a rain garden improved retention of pollutants.The gardens were sized to store 2.54 cm (1 in) of runoff.Results show high retention of flow;only 0.8% overflowed.Overall,concentrations of nitrite+ nitrate-N,ammonia-N,and total-N (TN) in roof runoff were reduced significantly by the rain gardens.Total-P concentrations were significantly increased by both rain gardens.ANCOVA results show significant reductions in TN (18%) due to saturation.Redox potential also decreased in the saturated garden.Rain garden mulch was found to be a sink for metals,nitrogen,and phosphorus,but rain garden soils were a source for these pollutants.The design used for these rain gardens was effective for flow retention,but did not reduce concentrations of all pollutants even when modified.These findings suggest that high flow and pollutant retention could be achieved with the 2.54 cm design method,but the use of an underdrain could reduce overall pollutant retention.
机译:雨水花园已被推荐作为处理雨水径流的最佳管理方法。在康涅狄格州的哈德姆建造了重复的雨水花园,以处理屋顶径流。本研究的目的是评估雨水花园中饱和区的形成是否得到改善保留污染物的能力。花园的大小可存储2.54厘米(1英寸)的径流。结果表明流量保持力高;仅0.8%溢出。总体而言,亚硝酸盐+硝酸盐氮,氨氮和总氮的浓度(TN雨水花园显着降低了屋顶径流量;两个雨水花园中的总P浓度均显着增加; ANCOVA结果表明由于饱和度导致TN显着减少(18%);饱和花园中的氧化还原电势也降低了。人们发现覆盖物是金属,氮和磷的汇,但雨水土壤是这些污染物的来源。用于这些雨水花园的设计有效地保持了流量,但并未降低所有污染物的浓度。这些发现表明,采用2.54 cm设计方法可以实现较高的流量和污染物截留率,但是使用暗渠可以减少总体污染物截留率。

著录项

  • 来源
    《Environmental Science & Technology》 |2006年第4期|p.1335-1340|共6页
  • 作者单位

    Nonpoint Education for Municipal Officials (NEMO),University of Connecticut,Middlesex Cooperative Extension Office,1066 Saybrook Road,P.O.Box 70,Haddam,Connecticut 06438,and Department of Natural Resources Management and Engineering,University of Con;

    Nonpoint Education for Municipal Officials (NEMO),University of Connecticut,Middlesex Cooperative Extension Office,1066 Saybrook Road,P.O.Box 70,Haddam,Connecticut 06438,and Department of Natural Resources Management and Engineering,University of Con;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:06:59

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