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气溶胶铁的粒径变化及其对铁溶解度和向北冰洋干沉积通量的影响。

Particle-Size Variability of Aerosol Iron and Impact on Iron Solubility and Dry Deposition Fluxes to the Arctic Ocean.

机构信息

Department of Earth and Environmental Science, Rutgers University, Newark, NJ, 07102, USA.

Skidaway Institute of Oceanography University of Georgia, Savannah, GA, 31411, USA.

出版信息

Sci Rep. 2019 Nov 13;9(1):16653. doi: 10.1038/s41598-019-52468-z.

Abstract

This study provides unique insights into the properties of iron (Fe) in the marine atmosphere over the late summertime Arctic Ocean. Atmospheric deposition of aerosols can deliver Fe, a limiting micronutrient, to the remote ocean. Aerosol particle size influences aerosol Fe fractional solubility and air-to-sea deposition rate. Size-segregated aerosols were collected during the 2015 US GEOTRACES cruise in the Arctic Ocean. Results show that aerosol Fe had a single-mode size distribution, peaking at 4.4 µm in diameter, suggesting regional dust sources of Fe around the Arctic Ocean. Estimated dry deposition rates of aerosol Fe decreased from 6.1 µmol m yr in the areas of ~56°N-80°N to 0.73 µmol m yr in the areas north of 80°N. Aerosol Fe solubility was higher in fine particles (<1 µm) which were observed mainly in the region north of 80°N and coincided with relatively high concentrations of certain organic aerosols, suggesting interactions between aerosol Fe and organic ligands in the high-latitude Arctic atmosphere. The average molar ratio of Fe to titanium (Ti) was 2.4, substantially lower than the typical crustal ratio of 10. We speculate that dust sources around the Arctic Ocean may have been altered because of climate warming.

摘要

本研究提供了独特的见解,了解了海洋大气中在夏末北极铁(Fe)的性质。大气气溶胶的沉积可以将铁(一种限制微量元素)输送到偏远的海洋。气溶胶颗粒大小影响气溶胶铁的分数溶解度和空气到海洋的沉积速率。在 2015 年美国地球化学追踪北极海洋考察期间,收集了按粒径大小分类的气溶胶。结果表明,气溶胶铁呈单峰模式分布,峰值在 4.4μm 左右,表明北极海洋周围存在区域性铁的尘埃源。估算的气溶胶铁干沉降速率从 56°N-80°N 地区的 6.1 μmol m yr 下降到 80°N 以北地区的 0.73 μmol m yr。气溶胶铁的溶解度在小于 1μm 的细颗粒中更高,主要在 80°N 以北的地区观察到,与某些有机气溶胶的相对高浓度相吻合,这表明在高纬度北极大气中,气溶胶铁与有机配体之间存在相互作用。铁与钛(Ti)的平均摩尔比为 2.4,远低于典型的地壳比值 10。我们推测,由于气候变暖,北极海洋周围的尘埃源可能已经发生了变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c2b/6853967/1d32846351cf/41598_2019_52468_Fig3_HTML.jpg

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