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The effect of sources and air mass transport on the variability of trace element deposition in central Poland: a cluster-based approach

机译:来源和空气质量传输对波兰中部微量元素沉积变异性的影响:基于聚类的方法

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摘要

Measurements of trace element (As, Cu, Cd, Cr, Ni, Pb, Zn) deposition fluxes were conducted simultaneously in two contrasted environments, i.e., urban and forest, between April 2013 and October 2014. This was the first such project in central Poland, aimed at long-term observations of trace elements in the atmosphere and their distribution, transport, and deposition pattern. The receptor sites were different in terms of local meteorological conditions, emission potential, and distance to major anthropogenic sources. The deposition fluxes of all trace elements showed clear seasonal variations, with relatively higher values in winter than in summer. The main factors affecting interannual differences in concentrations and deposition of trace elements in central Poland were local emission from industrial and commercial sources, and changes in atmospheric conditions (wind speed and direction, boundary layer, precipitation amount, air mass origin). In this study, the impact of regional and long-range transport on trace element deposition was determined using the air back-trajectory cluster analysis. During the summertime of 2013 and 2014, the predominant SW and E advections from regional and remote anthropogenic sources in Europe were responsible for high deposition of Cd, Cr, Pb, Cu, and Zn, whereas during the wintertime of 2013/2014, we observed a significant influence of polluted air masses from southeastern regions. Based on the Pb/Zn ratio, it was found that regional sources significantly influenced the aerosol composition and rainwater chemistry within the study domain. However, the role of a long-range transport of anthropogenic pollutants was also important. In addition, a relatively small difference in the Pb/Zn ratio between both sites (urban 0.26 ± 0.18, forest 0.23 ± 0.17) may suggest (1) very similar contribution of anthropogenic sources and (2) minor importance of atmospheric transformation processes of these metals in the aqueous phase.
机译:2013年4月至2014年10月,在城市和森林这两个对比的环境中同时进行了痕量元素(砷,铜,镉,铬,镍,铅,锌)沉积通量的测量。这是中部地区的第一个此类项目波兰旨在长期观察大气中的微量元素及其分布,运输和沉积方式。受体位点在当地气象条件,发射潜力和与主要人为源的距离方面有所不同。所有微量元素的沉积通量显示出明显的季节变化,冬季的值比夏季的值高。影响波兰中部微量元素浓度和沉积年际差异的主要因素是工业和商业来源的局部排放以及大气条件的变化(风速和风向,边界层,降水量,空气质量起源)。在这项研究中,使用空气后向轨迹聚类分析确定了区域和远距离迁移对痕量元素沉积的影响。在2013年和2014年夏季,欧洲区域和偏远人为源的主要对流和对流活动是造成Cd,Cr,Pb,Cu和Zn大量沉积的原因,而在2013/2014年冬季,我们观察到对东南地区受污染的空气质量的重大影响。根据铅/锌的比率,发现在研究领域内,区域性来源显着影响了气溶胶成分和雨水化学。但是,人为污染物的远距离运输也很重要。此外,两个地点之间的Pb / Zn比值相对较小的差异(城市0.26±0.18,森林0.23±0.17)可能表明(1)人为来源的贡献非常相似,并且(2)这些地点的大气转化过程的重要性不大在水相中的金属。

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