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俄罗斯西北部蒙切戈尔斯克镍铜冶炼厂附近山地桦树叶中镍和铜浓度的变化来源:长期监测结果

Sources of variation in concentrations of nickel and copper in mountain birch foliage near a nickel-copper smelter at Monchegorsk, north-western Russia: results of long-term monitoring.

作者信息

Kozlov Mikhail V

机构信息

Section of Ecology, University of Turku, Turku 20014, Finland.

出版信息

Environ Pollut. 2005 May;135(1):91-9. doi: 10.1016/j.envpol.2004.10.005.

DOI:10.1016/j.envpol.2004.10.005
PMID:15701396
Abstract

Concentrations of nickel and copper, two principal metal pollutants of the 'Severonikel' smelter at Monchegorsk, NW Russia, were measured in unwashed leaves of mountain birch, Betula pubescens subsp. czerepanovii, collected in eight study sites along the pollution gradient during 1991-2003. In spite of significant decline in metal emissions, concentrations of foliar metals in most of the study sites did not decrease, indicating that soil contamination remains extremely high. Multiyear mean values peaked at 6.6 km S of the smelter, where they were 20-25 times higher than in the most distant study site. Concentrations of both metals demonstrated pronounced annual variation, which was explained by the meteorological conditions of early summer: higher precipitation in May increased foliar concentrations of both metals, whereas higher precipitation in June resulted in lower foliar concentrations of nickel. These data suggest that ecotoxicological situation in metal-contaminated areas can be modified by the expected climate change. In heavily polluted sites individual birch trees generally retained their ranks in terms of metal contamination during 1995-2003, demonstrating that the use of the same set of trees can significantly increase the accuracy of the monitoring data.

摘要

对俄罗斯西北部蒙切戈尔斯克“Severonikel”冶炼厂的两种主要金属污染物镍和铜的浓度进行了测定,测定对象是1991年至2003年期间沿污染梯度在八个研究地点采集的未清洗的毛桦(Betula pubescens subsp. czerepanovii)叶片。尽管金属排放量显著下降,但大多数研究地点的叶片金属浓度并未降低,这表明土壤污染仍然极其严重。多年平均值在冶炼厂以南6.6公里处达到峰值,比最远的研究地点高出20至25倍。两种金属的浓度都呈现出明显的年度变化,这可以用初夏的气象条件来解释:5月降水量增加会提高两种金属的叶片浓度,而6月降水量增加则会导致镍的叶片浓度降低。这些数据表明,预期的气候变化可能会改变金属污染地区的生态毒理学状况。在污染严重的地点,1995年至2003年期间,个别桦树在金属污染方面的排名通常保持不变,这表明使用同一组树木可以显著提高监测数据的准确性。

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