在巴拉诺夫角冰基站对大气气溶胶化学成分的长期研究

IF 0.9 Q4 OPTICS
L. P. Golobokova, O. I. Berdashkinova, M. A. Loskutova, D. D. Rize, N. A. Onischuk, S. M. Sakerin, Yu. S. Turchinovich
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引用次数: 0

摘要

摘要 研究了2017-2022年在巴拉诺夫角冰雪基地研究站(塞维利亚泽姆利亚群岛)采样的大气气溶胶的化学成分。详细分析了气溶胶成分中离子和微量元素的年际和季节动态。研究发现,年平均总离子浓度增加了 1.5 倍。离子总和的增长主要是由于海洋来源的 Na+ 和 Cl- 离子的浓度,其含量在夏季最小,而在冬季最大。非海洋离子 K+、Ca2+、F-、({text{NO}}_{2}^{ - },\)和({text{NO}}_{3}^{ - }\) 的浓度变化与 Na+ 和 Cl- 浓度的季节变化不同:前者在从冬季到春季的过渡期间降低,在夏季升高,随后在秋季降低,而海洋离子导致的离子总和升高。气溶胶的离子组成是在海洋因素、气流传输、地表下层和野火的影响下形成的。在微量元素中,铁、铝、锌、锰、锡、铬和铜在秋冬季节占主导地位,浓度较高。根据富集因子,确定了陆源元素(Al、Ti、Mn、Fe、Th 和 U)、陆源和非陆源混合元素(Li、Be、V、Co、Sr 和 Ba)以及非陆源元素(Ni、Cu、Zn、Cr、Mo、Mo、W、Ag、Tl、Pb、As、Se、Cd、Sn 和 Sb)。冬季和秋季的铁和锰以及春季和夏季的铁和铍对空气污染总量的贡献最大。在非微量元素中,铜、锡、锌、硒和镍在所有季节的贡献率最高。据评估,巴拉诺夫角冰雪基地站的空气微量元素污染程度较低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Long-term Studies of Atmospheric Aerosol Chemical Composition at the Cape Baranov Ice Base Station

Long-term Studies of Atmospheric Aerosol Chemical Composition at the Cape Baranov Ice Base Station

Long-term Studies of Atmospheric Aerosol Chemical Composition at the Cape Baranov Ice Base Station

The chemical composition of atmospheric aerosol sampled at the Cape Baranov Ice Base research station (Severnaya Zemlya archipelago) in 2017–2022 is studied. The interannual and seasonal dynamics of ions and trace elements in the aerosol composition is analyzed in detail. A 1.5-fold increase in the annual mean total ion concentrations is traced. The growth of the sum of ions was mainly due to the concentrations of Na+ and Cl ions of marine origin, the content of which is minimal in summer and maximal in winter. The variations in the concentrations of nonmarine ions \({\text{NH}}_{4}^{ + },\) K+, Ca2+, F, \({\text{NO}}_{2}^{ - },\) and \({\text{NO}}_{3}^{ - }\) differed from the seasonal course of Na+ and Cl concentrations: the former decreased during the transition from winter to spring and increases in summer with a subsequent decrease in autumn against the background of an increase in the sum of ions due the marine ions. The ion composition of aerosols is formed under the effect of the marine factor, air mass transport, underlying surface, and wildfires. Among trace elements, Fe, Al, Zn, Mn, Sn, Cr, and Cu dominated with high concentrations in the fall and winter periods. Based on enrichment factors, elements of terrigenous (Al, Ti, Mn, Fe, Th, and U), mixed terrigenous and nonterrigenous (Li, Be, V, Co, Sr, and Ba), and nonterrigenous origin (Ni, Cu, Zn, Cr, Mo, Mo, W, Ag, Tl, Pb, As, Se, Cd, Sn, and Sb) are identified. The highest contribution to the total level of air pollution is made by Fe and Mn in winter and autumn and by Fe and Be in spring and summer. Among nonterrigenic elements, Cu, Sn, Zn, Se, and Ni contributed the most in all seasons. The level of air pollution with trace elements is assessed as low at the Cape Baranov Ice Base station.

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来源期刊
CiteScore
2.40
自引率
42.90%
发文量
84
期刊介绍: Atmospheric and Oceanic Optics  is an international peer reviewed journal that presents experimental and theoretical articles relevant to a wide range of problems of atmospheric and oceanic optics, ecology, and climate. The journal coverage includes: scattering and transfer of optical waves, spectroscopy of atmospheric gases, turbulent and nonlinear optical phenomena, adaptive optics, remote (ground-based, airborne, and spaceborne) sensing of the atmosphere and the surface, methods for solving of inverse problems, new equipment for optical investigations, development of computer programs and databases for optical studies. Thematic issues are devoted to the studies of atmospheric ozone, adaptive, nonlinear, and coherent optics, regional climate and environmental monitoring, and other subjects.
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