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Modelling nitrogen and phosphorus loads in a Mediterranean river catchment (La Tordera, NE Spain)

机译:模拟地中海河流集水区中的氮和磷负荷(西班牙内布拉斯加州拉特多拉)

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摘要

Human activities have resulted in increased nutrient levels in many rivers all over Europe. Sustainable management of river basins demands an assessment of the causes and consequences of human alteration of nutrient flows, together with an evaluation of management options. In the context of an integrated and interdisciplinary environmental assessment (IEA) of nutrient flows, we present and discuss the application of the nutrient emission model MONERIS (MOdelling Nutrient Emissions into River Systems) to the Catalan river basin, La Tordera (north-east Spain), for the period 1996-2002. After a successful calibration and verification process (Nash-Sutcliffe efficiencies E=0.85 for phosphorus and E=0.86 for nitrogen), the application of the model MONERIS proved to be useful in estimating nutrient loads. Crucial for model calibration, in-stream retention was estimated to be about 50 % of nutrient emissions on an annual basis. Through this process, we identified the importance of point sources for phosphorus emissions (about 94% for 1996-2002), and diffuse sources, especially inputs via groundwater, for nitrogen emissions (about 31% for 1996-2002). Despite hurdles related to model structure, observed loads, and input data encountered during the modelling process, MONERIS provided a good representation of the major interannual and spatial patterns in nutrient emissions. An analysis of the model uncertainty and sensitivity to input data indicates that the model MONERIS, even in data-starved Mediterranean catchments, may be profitably used by water managers for evaluating quantitative nutrient emission scenarios for the purpose of managing river basins. As an example of scenario modelling, an analysis of the changes in nutrient emissions through two different future scenarios allowed the identification of a set of relevant measures to reduce nutrient loads.
机译:人类活动导致整个欧洲许多河流的营养水平提高。流域的可持续管理要求评估人类改变养分流量的原因和后果,并评估管理方案。在对养分流进行综合和跨学科的环境评估(IEA)的背景下,我们介绍并讨论养分排放模型MONERIS(将养分排放入河流系统)在加泰罗尼亚河流域拉图多拉(西班牙东北部)的应用。 ),适用于1996-2002年。经过成功的校准和验证过程(磷的纳什-萨特克利夫效率E = 0.85,氮的E = 0.86),MONERIS模型的应用被证明可用于估算养分含量。对于模型校准至关重要,据估计,河床内滞留量每年约为养分排放量的50%。通过这一过程,我们确定了点源对于磷排放的重要性(1996-2002年约为94%),而扩散源(尤其是通过地下水的输入)对于氮排放至关重要(1996-2002年约为31%)。尽管在建模过程中遇到了与模型结构,观察到的载荷和输入数据有关的障碍,但MONERIS还是可以很好地表示养分排放中主要的年际和空间格局。对模型不确定性和对输入数据的敏感性进行的分析表明,即使在数据匮乏的地中海流域,模型MONERIS仍可被水利管理者有益地用于评估定量养分排放情景,以管理流域。作为情景建模的一个例子,通过两个不同的未来情景对营养物排放变化的分析,可以确定一套减少营养物负荷的相关措施。

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