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An EXAFS Study on the Local Structure Around Iron in Atmospheric Aerosols Collected in the Qingdao Area

机译:青岛地区大气气溶胶中铁周围结构的EXAFS研究

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摘要

The existing forms of Fe are of great interest since they have a profound effect on the biological availability of Fe. In this work, aerosol samples collected in different seasons and at different locations in the Qingdao region were examined by means of extended X-ray absorption fine structure (EXAFS) K-edge analysis of Fe, X-ray diffraction (XRD) and Fe content analysis. The results showed that an iron ion in aerosol particles is surrounded on average by 5.8 (coordinated) O ions. For the six samples examined, the coordination number of the first Fe-O coordination subshell is always 3 with a coordination distance (with O) in the range of 1.952~1.966±0.002 Å, while the coordination number of the second subshell varies from 2.2 to 3.0 with a coordination distance of 2.108±0.002 Å. The coordination is approximately consistent with that of α-Fe2O3, suggesting that iron in aerosol samples is mainly present in the form of α-Fe2O3. The fact that the coordination number in the second subshell is smaller than that of α-Fe2O3 might be an indication that there is a small amount of FeO mixed with α-Fe2O3 in aerosol particles. Existence of FeO is confirmed by a later XRD experiment.
机译:现有的铁形式引起人们极大的兴趣,因为它们对铁的生物利用度具有深远的影响。在这项工作中,通过扩展的X射线吸收精细结构(EXAFS),Fe的X射线边缘分析,X射线衍射(XRD)和Fe含量检查了在青岛地区不同季节和不同位置收集的气溶胶样品。分析。结果表明,气溶胶颗粒中的铁离子平均被5.8个(配位)O离子包围。对于所检查的六个样品,第一Fe-O配位子壳的配位数始终为3,配位距离(带O)在1.952〜1.966±0.002Å的范围内,而第二个子壳的配位数为2.2至3.0,协调距离为2.108±0.002Å。该配位与α-Fe2O3的配位近似一致,这表明气溶胶样品中的铁主要以α-Fe2O3的形式存在。第二子壳中的配位数小于α-Fe2O3的配位这一事实可能表明在气溶胶颗粒中有少量的FeO与α-Fe2O3混合。后来的XRD实验证实了FeO的存在。

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