Insoluble fractions of aerosols and heavy metals in fresh snow in the North-West of the Kola Peninsula in 2018

IF 0.7 Q4 GEOSCIENCES, MULTIDISCIPLINARY
M. Mityaev, M. Gerasimova, I. Ryzhik, T. G. Ishkulova
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引用次数: 2

Abstract

As a result of studies of newly fallen snow in the North of the Kola Peninsula, it was found that from January to May 2018 its density amounted, on the average, to 0.160±0.006 g/cm3 (n = 82), and pH of melted snow water – 6.87±0.14 (n = 47). Neutral and slightly alkaline reaction of snow water impedes the mobility of heavy metals in the insoluble fraction of aerosols. In loose fresh snow (density less than 0.2 g/cm3) the content of solid aerosols increases as the snow density grows. The average concentration of solid aerosol particles in freshly fallen snow is 4.04±0.24 mg/l (n = 47). Over the winter period of 2018 (120 days), about 1.85–2.37 thousand tons of aerosol substance precipitated on the underlying surface of the area under investigation. The daily deposition of aerosols averaged 1.03–1.33 mg·m−2, and together with solid precipitation, μg·m−2·day−1: Zn – 12.5–14.2, Cu – 2.2–2.5, Pb – 0.58–0.66, Cd – 0.31–0.42. According to the results of our researches, two impact areas were previously identified, both allocated to large regional centers. The Murmansk coast is divided into three background areas, each of which corresponds to its natural landscape complex.
2018年科拉半岛西北部新雪中气溶胶和重金属的不溶性组分
通过对科拉半岛北部新降雪的研究发现,2018年1月至5月,其密度平均为0.160±0.006 g/cm3 (n = 82),融雪水pH为- 6.87±0.14 (n = 47)。雪水的中性和微碱性反应阻碍了气溶胶中不溶部分重金属的迁移。在松散的新雪(密度小于0.2 g/cm3)中,固体气溶胶的含量随着雪密度的增加而增加。初雪中固体气溶胶粒子的平均浓度为4.04±0.24 mg/l (n = 47)。在2018年冬季(120天),约有1.85-2.37万吨气溶胶物质沉淀在受调查地区的下垫面。气溶胶日沉降平均为1.03 ~ 1.33 mg·m−2,与固体降水一起,Zn - 12.5 ~ 14.2, Cu - 2.2 ~ 2.5, Pb - 0.58 ~ 0.66, Cd - 0.31 ~ 0.42。根据我们的研究结果,先前确定了两个影响区域,都分配给大型区域中心。摩尔曼斯克海岸被划分为三个背景区域,每个区域都对应着它的自然景观综合体。
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来源期刊
Led i Sneg-Ice and Snow
Led i Sneg-Ice and Snow GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
1.50
自引率
42.90%
发文量
11
审稿时长
8 weeks
期刊介绍: The journal was established with the aim of publishing new research results of the Earth cryosphere. Results of works in physics, mechanics, geophysics, and geochemistry of snow and ice are published here together with geographical aspects of the snow-ice phenomena occurrence in their interaction with other components of the environment. The challenge was to discuss the latest results of investigations carried out on Russia’s territory and works performed by Russian investigators together with foreign colleagues. Editorial board works in collaboration with Glaciological Association that is professional community of specialists in glaciology from all republics of the Former Soviet Union which are now new independent states. The journal serves as a platform for the presentation and discussion of new discoveries and results which help to elucidate the state of the Earth’s cryosphere and the characteristics of the evolution of the snow-ice processes and phenomena under the current conditions of rapid climate change.
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