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Assessment of the Hydraulic and Toxic Metal Removal Capacities of Bioretention Cells After 2 to 8 Years of Service

机译:使用2至8年后对生物保留池的水力和有毒金属去除能力的评估

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摘要

Bioretention cells, also known as raingardens, arc increasingly being constructed as a means to collect, infiltrate, and treat stormwater runoff. There are concerns, however, about how stormwater management practices might function in terms of infiltration and pollutant removal as they age. Saturated hydraulic conductivity (K_(sat)) values were obtained for eight cells in 2006 and again for three of those cells in 2010 using an infiltrometer. A strong positive correlation of mean K_(sat) with service time was observed (slope = 10.2±2.4 cm/h per year, R~2 = 0.67). Results from metals analyses of bioretention media cores collected from six bioretention cells showed the expected trend of Cu and Zn enrichment at the surface while Cd was detected only in one out of 72 media samples analyzed. Sorption isotherms from batch testing of field media samples (T= 22.5 ℃, pH = 7.2) were used to estimate metal sorption capacities based on representative stormwater Cd and Zn concentrations. Cu was not considered, as very little of the metal is dissolved under these conditions (22.8± 7.1 %). The mean equilibrium sorption capacities for Cd (10.2±3.1 mg/kg) and Zn (294.9±14.9 mg/kg) far exceeded observed levels in the bioretention media such that the remaining sorption capacity was ≥83 % for Zn and ≥90 % for Cd for the cells. Overall, the results of this investigation suggest that bioretention cells can provide many years of effective infiltration (>6 years) and metals removal performance (>25 years).
机译:生物滞留池(也称为雨水花园)正越来越多地被用作收集,渗透和处理雨水径流的手段。但是,人们担心随着年龄的增长,雨水管理实践如何在渗透和污染物去除方面发挥作用。在2006年,使用浸渗仪获得了八个单元的饱和​​水力传导率(K_(sat))值,2010年再次获得了其中三个单元的饱和​​水力传导率(K_(sat))值。观察到平均K_(sat)与工作时间之间存在很强的正相关关系(坡度=每年10.2±2.4 cm / h,R〜2 = 0.67)。从六个生物保留池中收集的生物保留介质核心的金属分析结果表明,表面铜和锌富集的预期趋势,而在分析的72个介质样本中只有一个检测到了Cd。现场介质样品(T = 22.5℃,pH = 7.2)的分批测试的吸附等温线用于根据代表性的雨水Cd和Zn浓度估算金属的吸附能力。未考虑使用Cu,因为在这些条件下几乎没有金属溶解(22.8±7.1%)。 Cd(10.2±3.1 mg / kg)和Zn(294.9±14.9 mg / kg)的平均平衡吸附容量远远超出了在生物保留介质中观察到的水平,因此Zn的剩余吸附容量为≥83%,Zn的剩余吸附容量为≥90%。镉为细胞。总的来说,这项研究的结果表明,生物保留细胞可以提供多年的有效浸润(> 6年)和金属去除性能(> 25年)。

著录项

  • 来源
    《Water, Air, and Soil Pollution》 |2014年第1期|1803.1-1803.12|共12页
  • 作者单位

    Department of Hydraulic and Environmental Engineering, Norwegian University of Science and Technology, S. P. Andersensv. 5, 7491 Trondheim, Norway;

    Department of Civil Engineering, University of Minnesota, 500 Pillsbury Drive S. E, Minneapolis, MN 55455-0116, USA;

    Department of Civil Engineering, University of Minnesota, 500 Pillsbury Drive S. E, Minneapolis, MN 55455-0116, USA;

    Department of Hydraulic and Environmental Engineering, Norwegian University of Science and Technology, S. P. Andersensv. 5, 7491 Trondheim, Norway;

    Department of Civil Engineering, University of Minnesota, 500 Pillsbury Drive S. E, Minneapolis, MN 55455-0116, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bioretention; Stormwater; Metals; Sorption; Hydraulic conductivity; Organic matter;

    机译:生物保留;雨水;金属;吸附;导水率有机物;
  • 入库时间 2022-08-17 13:39:08

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