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首页> 外文期刊>Environmental Monitoring and Assessment >Trace elements composition of surface snow in the polar zone of northwestern Siberia: the impact of urban and industrial emissions
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Trace elements composition of surface snow in the polar zone of northwestern Siberia: the impact of urban and industrial emissions

机译:西伯利亚西北地区地区雪地面雪的微量元素组成:城市和工业排放的影响

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摘要

In order to evaluate the level of atmospheric pollution in the north of Western Siberia, we studied the composition of urban snow in the vicinity of the Tazovsky settlement as well as in the area of Zapolyarnoye-the largest natural gas field in Russia in terms of a total extraction volume. Our results indicate that anthropogenic activities have caused an increase in electric conductivity and pH values of meltwaters. Concentrations of dissolved and particulate forms of trace elements (Fe, Mn, Ni, Cr, Cu, Pb, Zn, and Cd) were determined using atomic absorption spectroscopy. Dissolved forms of Cd, Zn, and Mn and particulate forms of Cu, Fe, and Ni prevailed in meltwaters of background territories. Human-affected territories were characterized by a predominance of particulate forms of trace elements (except Cd), which indicated increased dust deposition rates. For Cu, Mn, and Fe, mean values of contamination factor (CF) exceeded background levels by 4.4, 4.7, and 6.6 times, respectively. At some sampling sites, concentrations of trace elements exceeded background levels by 10-111 times. The concentration of Zn in our study area was higher than those in other oil and gas fields located in polar and boreal regions. The Cd concentration in the vicinity of the Tazovsky settlement was higher than those in other cities of Western Siberia. The data obtained in the present study on concentrations of soluble and particulate forms of trace elements in snow will be valuable for environmental protection in Russia's Arctic territory.
机译:为了评估西伯利亚西部北部的大气污染水平,我们研究了Tazovsky沉降附近的城市雪的构成,以及Zapolyarnoye的地区 - 俄罗斯最大的天然气领域总提取量。我们的结果表明,人为的活性导致熔融浇水的电导率和pH值增加。使用原子吸收光谱法测定溶解和颗粒形式的微量元素(Fe,Mn,Ni,Cr,Cu,Pb,Zn和Cd)的浓度。 CD,Zn和Mn的溶解形式和Cu,Fe和Ni的颗粒形式,在背景领土的融化中普遍存在。人类影响的领土的特征是颗粒形式的痕量元素(CD)的主要形式,这表明粉尘沉积率增加。对于Cu,Mn和Fe,污染因子(CF)的平均值分别超过4.4,4.7和6.6倍的背景水平。在一些采样网站,微量元素的浓度超过背景水平10-111次。我们的研究区域中Zn的浓度高于位于极性和北方地区的其他石油和天然气场中的浓度。 Tazovsky沉降附近的CD浓度高于西伯利亚西部其他城市的CD集中。本研究中获得的数据在雪中雪中可溶性和微粒形式的浓度,对俄罗斯北极地区的环境保护有价值。

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