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Variability of water quality, metals and phytoplankton community structure in urban stormwater ponds along a vegetation gradient

机译:沿植被梯度的城市雨水塘水质,金属和浮游植物群落结构的变化

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摘要

Stormwater Ponds (SPs) are common throughout urbanizing environments, yet their ecological role has not been well established. SPs are primarily designed for hydrological control of stormwater, but many are also designed to attenuate the quality of runoff prior to discharge. Thus, SPs likely serve as an important land-water linkage between terrestrial and aquatic systems in urban areas. In this study, we characterized 22 SPs and 3 natural reference ponds from Durham Region, Ontario, Canada representing a gradient in emergent plant cover. There was high variability and wide ranges in water quality parameters among SPs. The percentage of impervious surface served as a measure of urbanization intensity, and was a significant driver of conductivity, chloride and total suspended solids regardless of emergent vegetation cover. In fact, only water temperature (r=-0.61) was found to significantly correlate with vegetation cover. This suggests a minimal role for emergent vegetation in mediating SP water quality. SPs had notably higher conductivity and runoff-metals (Cu, Zn, Pb, and Cr) than reference ponds, but nutrients (Total P and Total N) and algal biomass did not significantly differ between SPs and reference ponds. Dominant phytoplankton groups included blue-green and euglenid algae, both of which are indicators of eutrophic and high organic systems, respectively. The blue-green genus Microcystis was detected in all ponds, and was the dominant taxon in most SPs. This raises concern that SPs may serve as reservoirs of toxin-producing algae. Multivariate analyses of metals, water quality variables and algal species composition showed considerable dissimilarity among SPs, yet comparably high similarity among reference ponds. This indicates that SPs are dynamic and diverse systems despite their engineered origins. Such broad gradients in water quality characteristics also imply variable impacts to receiving waters in the same region.
机译:雨水池塘(SP)在整个城市化环境中都很常见,但其生态作用尚未得到充分确立。 SPs主要设计用于雨水的水文控制,但也有许多设计用于减弱排放前的径流质量。因此,SP可能是城市地区陆地和水生系统之间重要的陆水联系。在这项研究中,我们表征了来自加拿大安大略省达勒姆地区的22个SP和3个自然参考池塘,这些池塘代表了紧急植物覆盖的梯度。 SP之间的水质参数变化很大且范围很广。不可渗透表面的百分比可作为衡量城市化强度的指标,并且是电导率,氯化物和总悬浮固体的重要驱动因素,而与新兴植被无关。实际上,仅发现水温(r = -0.61)与植被覆盖显着相关。这表明新兴植被在调节SP水质中的作用很小。 SPs的电导率和径流金属(Cu,Zn,Pb和Cr)明显高于参考池塘,但SPs和参考池塘之间的养分(总P和总N)和藻类生物量没有显着差异。主要的浮游植物群包括蓝绿色藻类和蓝藻类藻类,它们分别是富营养化和高有机质系统的指标。在所有池塘中都检测到了蓝绿色的微囊藻属,是大多数SP中的主要分类群。这引起了人们的关注,即SP可能充当产毒藻类的库。金属,水质变量和藻类组成的多变量分析表明,SP之间的差异很大,而参考池塘之间的相似度却很高。这表明,尽管SP起源于工程,但它们是动态且多样化的系统。水质特征的如此宽泛的梯度还暗示着对同一地区接收水的影响会发生变化。

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  • 来源
    《Urban ecosystems》 |2014年第3期|839-853|共15页
  • 作者单位

    Faculty of Science, University of Ontario Institute of Technology, 2000 Simcoe St.N., Oshawa, Ontario, Canada L1H 7 K4,Department of Biology, Trent University, 1600 West Bank, Peterborough, Ontario, Canada K9J 7B8;

    Faculty of Science, University of Ontario Institute of Technology, 2000 Simcoe St.N., Oshawa, Ontario, Canada L1H 7 K4;

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

    Stormwater ponds; Phytoplankton; Water quality; Emergent vegetation; Metals; Nutrients;

    机译:雨水塘;浮游植物;水质;新兴植被;金属;营养素;

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