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Emissions of heavy metals into river basins of Germany

机译:重金属向德国河流域的排放

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The input of seven heavy metals (Cd, Cr, Cu, Hg, Ni, Pb and Zn) into the large river basins of Germany via various point and diffuse pathways were estimated for the period of 1985 through 2000. To quantify the emissions via point sources a nationwide survey on heavy metal data of municipal wastewater treatment plants and industrial direct discharges was carried out. The input via diffuse pathways was calculated using an adapted version of the model MONERIS. This model accounts for the significant transport processes, and it includes a Geographical Information System (GIS) that provides digital maps as well as extensive statistical information. For a comparison of the calculated heavy metal emission with the measured heavy metal load at monitoring stations the losses of heavy metals due to retention processes within the river systems have to be considered. Therefore heavy metal retention was calculated according to the retention functions given by Vink and Behrendt. For the large river basins a good correspondence could be found between estimated and measured heavy metal loads in rivers. The total emission into the North Sea decreased for each metal during the period of 1985 to 2000. The reduction varies between 87% for Hg and 41% for Ni mainly caused by the decline via point sources. Today's emissions of heavy metals into river a basins of Germany are dominated by the input via diffuse pathways. The-most important diffuse emission pathways are "paved urban areas" and "erosion". [References: 12]
机译:估计从1985年到2000年期间,通过不同的点扩散途径将7种重金属(镉,铬,铜,汞,汞,镍,铅和锌)输入德国大河流域。来源对市政废水处理厂和工业直接排放的重金属数据进行了全国范围的调查。使用模型MONERIS的改编版计算通过扩散途径的输入。该模型考虑了重要的运输过程,并包括一个地理信息系统(GIS),该系统提供数字地图以及广泛的统计信息。为了将计算出的重金属排放量与监测站处测得的重金属负荷进行比较,必须考虑由于河流系统内的滞留过程而导致的重金属损失。因此,根据Vink和Behrendt给出的保留函数计算了重金属的保留。对于大型流域,可以在河流中估计和测得的重金属负荷之间找到良好的对应关系。 1985年至2000年期间,每种金属进入北海的总排放量均有所减少。汞的减少量介于汞的87%和镍的41%之间,这主要是由于点源的减少所致。如今,重金属向德国河流域的排放主要是通过扩散途径进行的。最重要的扩散排放途径是“铺砌的市区”和“侵蚀”。 [参考:12]

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