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Effect of antecedent hydrologic conditions and agricultural activity on riparian zone biogeochemistry

Effect of antecedent hydrologic conditions and agricultural activity on riparian zone biogeochemistry
前期水文条件和农业活动对河岸带生物地球化学的影响
批准号:
341883-2007
负责人:
Macrae, Merrin
金额:
$1.18万
依托单位:
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2007
资助国家:
加拿大
项目状态:
已结题
起止时间:
2007-01-01 至 2008-12-31

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中文摘要
翻译
河岸湿地被认为是重要的地形,可以有效地减少农业用地的化学品负荷,但地下水和地表水中的硝酸盐负荷仍然是一个问题。这在五大湖地区尤为明显,那里的湖泊继续受到农业做法的影响。需要更好地了解河岸湿地何时以及为什么不能减少硝酸盐,特别是在五大湖地区,那里存在气候变化增加的威胁。 在评估河岸带功能时,人们对河岸湿地和高地的物理特性给予了很大的关注,但对氮的命运和运输的时间模式却关注甚少。事件发生前的先决条件可能发挥重要作用,通过其对土壤氮素转化,径流途径,这两个变量的相互作用,在氮动态的时间模式的管理。 本研究采用野外观测和室内实验相结合的方法,旨在:(1)确定和量化水文和生态地球化学对河岸土壤氮素归宿和迁移的控制;(2)描述当水化学输入来自双重来源时,水文对安大略南部农业河岸湿地氮素归宿和迁移的控制(3)量化前期水文条件(AHC)对基于事件的氮素转移的影响。 农业流域土地利用和气候变化对地表水质量的未来综合影响怎么强调都不过分;必须了解河岸缓冲湿地提供的自然服务可能减少,以便制定有效的未来管理战略。这项工作将有助于环境模型,也将有助于管理人员有效管理加拿大水资源。
英文摘要
Riparian wetlands have been identified as important landforms that effectively reduce the loading of chemicals from agricultural lands, yet nitrate loading in ground water and surface water remains a problem. This is particularly evident in the Great Lakes Region, where the lakes continue to be impacted by agricultural practices. An improved understanding of when and why riparian wetlands do not attenuate nitrate is needed, particularly in the Great Lakes region, where the threat of increased climatic variability exists.   Much attention has been given to the physical characteristics of riparian wetlands and upland fields in assessing riparian zone function, but little attention has been given to temporal patterns in the fate and transport of nitrogen. Pre-event antecedent conditions may play an important role in governing temporal patterns in nitrogen dynamics through their effect on soil nitrogen transformations, runoff pathways, and the interaction of these two variables.   Using a mixture of field observations and laboratory experimentation, the objectives of this research are to: (1) identify and quantify the hydrologic and biogeochemical controls on nitrogen fate and transport in riparian soils; 2) characterize hydrologic controls on the fate and transfer of nitrogen in an agricultural riparian wetland in Southern Ontario when hydrochemical inputs to the wetland originate from dual sources (upland, upstream); and (3) quantify the effects of antecedent hydrologic conditions (AHC) on event-based nitrogen transfer.   The future combined impacts of land-use and climate change in agricultural watersheds on surface water quality cannot be overstated; the potential reduction in the natural services provided by riparian buffer wetlands must be understood in order to develop effective future management strategies. This work will be useful in environmental models and will also be of use to managers in their effective management of Canadian water resources.
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  • 资助金额:
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  • 财政年份:
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Runoff generation and phosphorus mobilization in agricultural landscapes
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Runoff generation and phosphorus mobilization in agricultural landscapes
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  • 项目类别:
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