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Modelling phosphorus loading and algal blooms in a Nordic agricultural catchment-lake system under changing land-use and climate

机译:在土地利用和气候变化的情况下,对北欧农业集水湖系统中的磷负荷和藻华进行建模

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A model network comprising climate models, a hydrological model, a catchment-scale model for phosphorus biogeochemistry, and a lake thermodynamics and plankton dynamics model was used to simulate phosphorus loadings, total phosphorus and chlorophyll concentrations in Lake Vansj0, Southern Norway. The model network was automatically calibrated against time series of hydrological, chemical and biological observations in the inflowing river and in the lake itself using a Markov Chain Monte-Carlo (MCMC) algorithm. Climate projections from three global climate models (GCM: HadRM3, ECHAM5r3 and BCM) were used. The GCM model HadRM3 predicted the highest increase in temperature and precipitation and yielded the highest increase in total phosphorus and chlorophyll concentrations in the lake basin over the scenario period of 2031-2060. Despite the significant impact of climate change on these aspects of water quality, it is minimal when compared to the much larger effect of changes in land-use. The results suggest that implementing realistic abatement measures will remain a viable approach to improving water quality in the context of climate change.
机译:一个模型网络包括气候模型,水文模型,磷生物地球化学的集水规模模型以及湖泊热力学和浮游生物动力学模型,用于模拟挪威南部范斯约湖的磷负荷,总磷和叶绿素浓度。使用马尔可夫链蒙特卡洛(MCMC)算法,针对流入河流和湖泊本身的水文,化学和生物观测的时间序列,自动对模型网络进行了校准。使用了来自三个全球气候模型(GCM:HadRM3,ECHAM5r3和BCM)的气候预测。 GCM模型HadRM3预测在2031-2060年的情景期间,湖盆的温度和降水增加最高,总磷和叶绿素浓度增加最高。尽管气候变化对水质的这些方面产生了重大影响,但与土地利用变化带来的更大影响相比,影响却很小。结果表明,在气候变化的背景下,实施现实的减排措施将仍然是改善水质的可行方法。

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