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首页> 外文期刊>The Science of the Total Environment >The interactive responses of water quality and hydrology to changes in multiple stressors, and implications for the long-term effective management of phosphorus
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The interactive responses of water quality and hydrology to changes in multiple stressors, and implications for the long-term effective management of phosphorus

机译:水质和水文学对多种压力变化的交互响应及其对磷长期有效管理的意义

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摘要

Soluble reactive phosphorus (SRP) plays a key role in eutrophication, a global problem decreasing habitat quality and in-stream biodiversity. Mitigation strategies are required to prevent SRP fluxes from exceeding critical levels, and must be robust in the face of potential changes in climate, land use and a myriad of other influences. To establish the longevity of these strategies it is therefore crucial to consider the sensitivity of catchments to multiple future stressors. This study evaluates how the water quality and hydrology of a major river system in the UK (the River Thames) respond to alterations in climate, land use and water resource allocations, and investigates how these changes impact the relative performance of management strategies over an 80-year period. In the River Thames, the relative contributions of SRP from diffuse and point sources vary seasonally. Diffuse sources of SRP from agriculture dominate during periods of high runoff, and point sources during low flow periods. SRP concentrations rose under any future scenario which either increased a) surface runoff or b) the area of cultivated land. Under these conditions, SRP was sourced from agriculture, and the most effective single mitigation measures were those which addressed diffuse SRP sources. Conversely, where future scenarios reduced flow e.g. during winters of reservoir construction, the significance of point source inputs increased, and mitigation measures addressing these issues became more effective. In catchments with multiple point and diffuse sources of SRP, an all-encompassing effective mitigation approach is difficult to achieve with a single strategy. In order to attain maximum efficiency, multiple strategies might therefore be employed at different times and locations, to target the variable nature of dominant SRP sources and pathways.
机译:可溶性活性磷(SRP)在富营养化中起着关键作用,富营养化是降低栖息地质量和河流内生物多样性的全球性问题。需要采取缓解策略来防止SRP通量超过临界水平,并且在面对气候,土地使用和其他各种潜在影响的潜在变化时必须采取有力的措施。因此,要确定这些策略的寿命,至关重要的是要考虑流域对多个未来压力源的敏感性。这项研究评估了英国主要河系(泰晤士河)的水质和水文如何应对气候,土地利用和水资源分配的变化,并调查了这些变化如何影响80年代管理策略的相对绩效年期间。在泰晤士河,来自散布和点源的SRP的相对贡献随季节变化。来自农业的SRP扩散来源在高径流量时期占主导地位,而在低流量时期则是点源。在任何将来增加a)地表径流量或b)耕地面积的情况下,SRP浓度都会增加。在这种情况下,SRP来源于农业,最有效的单一缓解措施是针对分散SRP来源的措施。相反,在未来情况下流量减少的地方,例如在水库建设的冬季,点源输入的重要性增加,解决这些问题的缓解措施变得更加有效。在具有多个SRP点扩散源的流域,采用单一策略很难实现全面的有效缓解方法。为了获得最大效率,因此可以在不同的时间和位置采用多种策略,以针对主要SRP来源和途径的可变性质。

著录项

  • 来源
    《The Science of the Total Environment》 |2013年第1期|230-244|共15页
  • 作者单位

    Macronutrient Cycles Directorate, School of Geography and the Environment, University of Oxford, South Parks Road, Oxford, 0X1 3QY, UK,Chemistry Department, Trent University, Peterborough, Ontario, Canada;

    Macronutrient Cycles Directorate, School of Geography and the Environment, University of Oxford, South Parks Road, Oxford, 0X1 3QY, UK;

    Department of Aquatic Science and Assessment, Swedish University of Agricultural Science, SE 750 07, Uppsala, Sweden,Environmental and Life Sciences Graduate Program, Trent University, Peterborough, Ontario, Canada;

    Environmental and Life Sciences Graduate Program, Trent University, Peterborough, Ontario, Canada;

    Department of Geography and Environmental Science, University of Reading, RG6 6AB, UK,Walker Institute for Climate System Research, School of Human and Environmental Sciences, University of Reading, RG6 6AB, UK;

    fames Hutton Institute, Aberdeen, Scotland, AB15 8QH, UK;

    Department of Geography and Environmental Science, University of Reading, RG6 6AB, UK,Walker Institute for Climate System Research, School of Human and Environmental Sciences, University of Reading, RG6 6AB, UK;

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

    River water quality; Mitigation strategies; Catchment sensitivity; Multiple stressors; Future change;

    机译:河流水质;缓解策略;流域敏感性;多重压力源;未来的变化;

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