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Interregional differences in stream ecosystem responses to urbanization: Causes and consequences.

机译:河流生态系统对城市化的响应之间的区域间差异:原因和后果。

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摘要

Stream ecosystems are profoundly degraded by watershed urbanization. Hydrologic, geomorphic, chemical and thermal adjustment following urban development contributes to substantial biodiversity loss in impacted streams. However, the extent of degradation along an urban gradient may not be uniform among regions. The hydrogeologic and climatic setting in which a stream is located may influence the severity of abiotic and biotic impact induced by urban development. I explored and compared differences in stream ecosystem responses to urbanization between the Coastal Plain and Piedmont physiographic regions of the eastern United States. Taxon-specific responses of fishes and macroinvertebrates as well as the coherence of benthic invertebrate communities along gradients of landscape stressors were quantified. Hydrologic, chemical and thermal impact induced by watershed urbanization was compared between the two physiographic provinces using existent large datasets collected by various governmental entities. I also compared the severity geomorphic and sediment regime alteration in urban streams between regions using direct measurements of channel morphometry and in situ natural experiments within selected watersheds. Biotic sensitivity to urbanization was consistently found to be heightened in Piedmont streams relative to those in the Coastal Plain. Such trends were consistently observed for fish and macroinvertebrate taxa as well as for invertebrate community coherence. The most tolerant macroinvertebrate communities were associated with low channel slopes, effective soil permeability and high levels of wetland cover. Rural Coastal Plain streams exhibited fewer flood events that were longer in duration; however, flood hydrology was more impacted by urbanization in Coastal Plain streams relative to those of the Piedmont. Conversely, thermal impact induced by urbanization was greater in Piedmont streams. Experimental observations concluded that benthic sediment size structure, deposition and transport were more impacted by urban development in Piedmont streams relative to those of the Coastal Plain. My findings highlight interregional heterogeneity in stream ecosystem responses to landscape change, suggesting that effective watershed management decisions may need to consider the physiographic setting in order to improve efficacy. Furthermore, results suggest that watersheds characteristic of hydrogeomorphic attributes that effectively transfer water to channels during precipitation events may be acutely vulnerable to urban development.
机译:流域的城市化使河流生态系统严重退化。城市发展之后的水文,地貌,化学和热力调节造成了受影响河流中生物多样性的大量损失。但是,沿城市梯度的退化程度在各地区之间可能并不均匀。溪流所在的水文地质和气候环境可能会影响城市发展引起的非生物和生物影响的严重性。我探索并比较了美国东部沿海平原和皮埃蒙特自然地理区之间河流生态系统对城市化的响应差异。定量分析了鱼类和大型无脊椎动物的分类群特异性反应以及底栖无脊椎动物群落沿景观胁迫因子梯度的相干性。使用不同政府实体收集的现有大型数据集,比较了两个自然地理省份在分水岭城市化过程中引起的水文,化学和热影响。我还通过直接测量通道形态和在选定流域内进行的原位自然实验,比较了区域之间城市河流中严重的地貌和沉积物变化。相对于沿海平原,皮埃蒙特溪流对城市化的生物敏感性不断提高。鱼类和大型无脊椎动物类群以及无脊椎动物群落的一致性始终观察到这种趋势。宽容度最高的无脊椎动物群落与低河道坡度,有效的土壤渗透性和高水平的湿地覆盖率有关。沿海沿海平原流域的洪水事件较少,持续时间较长;然而,相对于皮埃蒙特山脉,洪水泛滥水文学受到沿海平原河流城市化的影响更大。相反,在皮埃蒙特溪流中,城市化引起的热影响更大。实验观察得出的结论是,相对于沿海平原,皮埃蒙特溪流的城市发展对底栖沉积物的大小,沉积和运输的影响更大。我的发现强调了河流生态系统对景观变化的区域间异质性,表明有效的流域管理决策可能需要考虑地貌背景,以提高功效。此外,结果表明,在降水事件期间有效将水转移到河道的水文地貌特征的集水区可能极易受到城市发展的影响。

著录项

  • 作者

    Utz, Ryan Michael.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Biology Ecology.;Environmental Sciences.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 238 p.
  • 总页数 238
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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