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Integrative evaluation of data derived from biomonitoring and models indicating atmospheric deposition of heavy metals

机译:源自生物监测和模型的综合评价,表明重金属大气沉积

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Atmospheric deposition of heavy metals (HM) can be determined by use of numeric models, technical devices and biomonitors. Mainly focussing on Germany, this paper aims at evaluating data from deposition modelling and biomonitoring programmes. The model LOTOS-EUROS (LE) yielded data on HM deposition at a spatial resolution of 25 km by 25 km throughout Europe. The European Monitoring and Evaluation Programme (EMEP) provided model calculations on 50 km by 50 km grids. Corresponding data onHMconcentration in moss, leaves and needles and soil were derived from the European Moss Survey (EMS), the German Environmental Specimen Bank (ESB) and the International Co-operative Programme on Assessment and Monitoring of Air Pollution Effects on Forests (iCP Forests). The modelled HM deposition and respective concentrations in moss (EMS), leaves and needles (ESB, iCP Forests) and soil (iCP Forests) were investigated for their statistical relationships. Regression equations were applied on geostatistical surface estimations of HM concentration in moss and then the residuals were interpolated by use of kriging interpolation. Both maps were summed up to a map of cadmium (Cd) and lead (Pb) deposition across Germany. Biomonitoring data were strongly correlated to LE than to EMEP. For HM concentrations in moss, the highest correlations were found for the association between geostatistical surface estimations of HM concentration in moss and deposition (LE).
机译:通过使用数字模型,技术装置和生物监测器,可以确定重金属(HM)的大气沉积。主要关注德国,本文旨在评估沉积建模和生物监测程序的数据。 Model Lotos欧元(LE)在欧洲全部25公里处的空间分辨率产生了HM沉积的数据。欧洲监测和评估计划(EMEP)在50公里的网格上提供了50公里的模型计算。在欧洲MOSS调查(EMS),德国环境标本银行(ESB)和关于森林空气污染影响的评估和监测国际合作计划中,来自欧洲MOSS调查(EMS)和土壤中的相应数据。 )。研究了苔藓(EMS),叶子和针(ESB,ICP林)和土壤(ICP林)的模型HM沉积和各自的浓度,以获得统计关系。回归方程应用于苔藓中HM浓度的地质统计表面估计,然后通过使用克里格插值来插入残留物。两张地图总结到德国镉(CD)和铅(PB)沉积地图。生物监测数据与Le强烈相关,而不是EEP。对于苔藓中的HM浓度,发现了最高的相关性对于苔藓和沉积(LE)中HM浓度的地质统计表面估计之间的关联。

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