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Accumulation histories of major and trace elements on pine needles in the Cologne Conurbation as function of air quality

机译:科隆城市化活动中松针上主要和微量元素的累积历史与空气质量的关系

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For a biomonitoring study in the greater Cologne area, we analyzed the accumulation of major and trace elements on Pinus nigra needles. At six sites, samples were collected separately in summer and winter 2004 from five needle generations (n = 51). The elements Ba, Ca, Cd, Fe, Mo, Na, Pb, Sb, Ti, V, and Zr were determined by HR-ICP-MS and normalized to upper continental crust concentration using rare earth elements (REE). Inter-site variability was significantly higher than intra-site variability allowing for reliable source allocation. A systematic and steady increase in element loads with exposure was noted, with a seasonal trend superimposed on Pb, Cd, Na, and REE. Normalization onto lithogenic REE removes seasonal variability due to dust loadings. Enrichment factors for V, Fe, and Zr reveal the most pronounced summer/winter variability. The average enrichment factors were 967 for Sb, 620 for Cd, 176 for Mo, 33 for Pb and between 3 and 5 for Ba, Fe, Na, and V, wheras Ti and Zr gave enrichment factors < 1. Most reliable as source indicators were REE for lithogenic dust, Sb, Fe, V for traffic, Mo and Pb for petrochemical emissions, and Cd for mining activity. Barium proved unsuitable as traffic indicator in the Cologne Conurbation area. Accumulation trends of major and trace elements on P. nigra needles confirm that these passive samplers are suitable for atmospheric quality analysis in areas with multiple emission sources.
机译:对于大科隆地区的生物监测研究,我们分析了黑松针上主要和微量元素的积累。在六个地点,于2004年夏季和冬季分别从五个针头世代(n = 51)中采集了样本。通过HR-ICP-MS测定元素Ba,Ca,Cd,Fe,Mo,Na,Pb,Sb,Ti,V和Zr,并使用稀土元素(REE)归一化为上地壳浓度。站点间的可变性明显高于站点内的可变性,从而可以进行可靠的源分配。随着暴露,元素负荷有系统且稳定的增加,季节性趋势叠加在Pb,Cd,Na和REE上。对岩性REE的归一化消除了由于粉尘负荷引起的季节性变化。 V,Fe和Zr的富集因子显示了最明显的夏季/冬季变异性。平均富集因子为Sb为967,Cd为620,Mo为176,Pb为33,Ba,Fe,Na和V为3至5之间,而Ti和Zr给出的富集因子<1。最可靠的作为源指标REE为岩性粉尘,Sb,Fe,V用于交通,Mo和Pb用于石化排放,Cd用于采矿活动。事实证明,钡不适合用作科隆城市地区的交通指标。黑假单胞菌针上主要元素和痕量元素的积累趋势证实,这些无源采样器适用于多种排放源区域的大气质量分析。

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