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Modelling nutrient fluxes from diffuse and point emissions to river loads: the Estonian part of the transboundary, Lake Peipsi/Chudskoe drainage basin (Russia/Estonia/Latvia)

机译:模拟从扩散和点状排放物到河流负荷的养分通量:跨界的爱沙尼亚部分,Peipsi湖/ Chudskoe流域(俄罗斯/爱沙尼亚/拉脱维亚)

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摘要

First results are presented of a large-scale GIS-based nutrient transport modelling for the 1985-1999 period in the Estonian part of the transboundary drainage basin of Lake Peipsi (Estonian)/Chudskoe (Russian), one of the largest lakes in Europe, shared by Russia and Estonia. Although the lake is relatively undisturbed by human pollution, it is vulnerable for eutrophication by increased river loads, as shown in the past, when the north-eastern part of the former Soviet Union suffered from intensive agriculture. The collapse of the Soviet Union caused a dramatic decline in fertilizer application rates and widespread abandonment of agricultural land. Although concentration measurements and modelling results indicate a general decrease in nutrient loads, modelling is complicated by the transfer of nutrients from diffuse emissions, which is strongly governed by retention and assumed periodic release from storages within the river basin, like the root zone, tile drains, ditches, channels, bed sediments, floodplains and lakes. Modelling diffuse emission contribution to river loads can be improved by better knowledge about the spatial and temporal distribution of this retention and release within the drainage basin. [References: 27]
机译:在欧洲最大的湖泊之一的Peipsi湖(爱沙尼亚)/ Chudskoe(俄罗斯)跨界流域的爱沙尼亚部分,针对1985-1999年的大规模基于GIS的养分迁移模型提出了初步结果,俄罗斯和爱沙尼亚共有。尽管该湖相对没有受到人类污染的干扰,但是如前所示,当前苏联东北部的集约化农业遭受重创时,该湖很容易因河流负荷增加而发生富营养化。苏联解体导致化肥施用量急剧下降,农用土地被广泛抛弃。尽管浓度测量和模型化结果表明养分含量普遍下降,但是模型化过程由于来自散发性排放物的养分转移而变得复杂,这主要受保留和假定从流域内的存储(例如根部区域,排水沟)定期释放,沟渠,渠道,河床沉积物,洪泛区和湖泊。通过更好地了解流域内这种滞留和释放的时空分布,可以改进对河流负荷的扩散排放贡献的建模。 [参考:27]

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