2015年齐柏林山天文台(斯匹次卑尔根)亚微米气溶胶来源的新见解

M. Karl, C. Leck, F. Mashayekhy Rad, Are Bäcklund, S. Lopez-Aparicio, J. Heintzenberg
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引用次数: 11

摘要

为了评估北极人为排放源的潜在影响,有必要更好地了解北极内部的天然气溶胶源以及气溶胶在北极大气中运输过程中的大气加工过程。欧洲北极的齐柏林山天文台在2015年期间对亚微米气溶胶进行了为期一年的化学特异性测量。一项源分配研究结合了测量的分子示踪剂作为源标记、正矩阵分解、潜在源分布分析以及来自卫星数据和地面观测的辅助信息。年平均亚微米质量分配为区域背景次生硫酸盐(56%)、海水喷雾(17%)、生物质燃烧(15%)、次生硝酸盐(5.8%)、次生海洋生物源(4.5%)、混合燃烧(1.6%)和两种海洋凝胶源(合计0.7%)。次生硝态氮气溶胶主要贡献于夏末和秋季。在春夏季,部分样品的次生海洋生物成因贡献率高达50%。混合燃烧源最可能的来源是东西伯利亚的石油和天然气开采活动。两种海洋聚合物凝胶源主要出现在秋季和冬季。与靠近北极的地区相比,齐柏林山天文台的海洋凝胶源在夏季的贡献较小,这归因于海洋生物学的差异、浮游植物的垂直分布以及夏季的早期开始。
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New insights in sources of the sub-micrometre aerosol at Mt. Zeppelin observatory (Spitsbergen) in the year 2015
Abstract In order to evaluate the potential impact of the Arctic anthropogenic emission sources it is essential to understand better the natural aerosol sources of the inner Arctic and the atmospheric processing of the aerosols during their transport in the Arctic atmosphere. A 1-year time series of chemically specific measurements of the sub-micrometre aerosol during 2015 has been taken at the Mt. Zeppelin observatory in the European Arctic. A source apportionment study combined measured molecular tracers as source markers, positive matrix factorization, analysis of the potential source distribution and auxiliary information from satellite data and ground-based observations. The annual average sub-micrometre mass was apportioned to regional background secondary sulphate (56%), sea spray (17%), biomass burning (15%), secondary nitrate (5.8%), secondary marine biogenic (4.5%), mixed combustion (1.6%), and two types of marine gel sources (together 0.7%). Secondary nitrate aerosol mainly contributed towards the end of summer and during autumn. During spring and summer, the secondary marine biogenic factor reached a contribution of up to 50% in some samples. The most likely origin of the mixed combustion source is due to oil and gas extraction activities in Eastern Siberia. The two marine polymer gel sources predominantly occurred in autumn and winter. The small contribution of the marine gel sources at Mt. Zeppelin observatory in summer as opposed to regions closer to the North Pole is attributed to differences in ocean biology, vertical distribution of phytoplankton, and the earlier start of the summer season.
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