Microscopic and spectroscopic analysis of atmospheric iron-containing single particles in Lhasa, Tibet

铁质 氧化铁 氧烷 氧化物 材料科学 金属 氧化态 X射线吸收光谱法 水合氧化铁 X射线吸收精细结构 化学 光谱学 吸收光谱法 冶金 物理化学 物理 吸附 吸附 量子力学
作者
Junyu Chen,Daobin Zhang,Yiran Fu,Jinhu Wang,Xiaomei Cui,Ci‐ren Qu‐zong,Qiangying Zhang,Chan Jin,Duo Bu
出处
期刊:Journal of Environmental Sciences-china [Elsevier BV]
卷期号:141: 40-50 被引量:3
标识
DOI:10.1016/j.jes.2023.06.005
摘要

The Tibetan Plateau, known as the “Third Pole”, is currently in a state of perturbation caused by intensified human activity. In this study, 56 samples were obtained at the five sampling sites in typical area of Lhasa city and their physical and chemical properties were investigated by TEM/EDS, STXM, and NEXAFS spectroscopy. After careful examination of 3387 single particles, the results showed that Fe should be one of the most frequent metal elements. The Fe-containing single particles in irregular shape and micrometer size was about 7.8% and might be mainly from local sources. Meanwhile, the Fe was located on the subsurface of single particles and might be existed in the form of iron oxide. Interestingly, the core-shell structure of iron-containing particles were about 38.8% and might be present as single-, dual- or triple-core shell structure and multi-core shell structure with the Fe/Si ratios of 17.5, 10.5, 2.9 and 1.2, respectively. Meanwhile, iron and manganese were found to coexist with identical distributions in the single particles, which might induce a synergistic effect between iron and manganese in catalytic oxidation. Finally, the solid spherical structure of Fe-containing particles without an external layer were about 53.4%. The elements of Fe and Mn were co-existed, and might be presented as iron oxide–manganese oxide–silica composite. Moreover, the ferrous and ferric forms of iron might be co-existed. Such information can be valuable in expanding our understanding of Fe-containing particles in the Tibetan Plateau atmosphere.

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