首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of annealing on the structural role of Fe in composite Fe- and Zn-rich materials: AXAFS study
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Effect of annealing on the structural role of Fe in composite Fe- and Zn-rich materials: AXAFS study

机译:退火对富铁和富锌复合材料中铁的结构作用的影响:AXAFS研究

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摘要

We report on composition- and annealing-related modifications in the local bonding environment of Fe in a series of Fe- and Zn-rich composite quaternary materials whose composition models stabilized electric-arc furnace dust wastes. Application of X-ray absorption fine structure spectroscopies revealed that when [Fe_2O_3] < 20 wt percent , Fe~(3+) is a glass former, i.e. Fe belongs to tetrahedral sites into the vitreous matrix, independently of the annealing process and chemical composition. On the contrary, when [Fe_2O_3] > 20 wt percent the samples become vitroceramic. It is disclosed that a fraction of Fe~(3+)occupies octahedral sites in Zn_2Fe_(3-x)O_4 crystalline inclusions which are embedded into the glass matrix where the rest of Fe~(3+) is bonded in tetra-hedra. Furthermore, annealing of the samples with [Fe_2O_3] > 20 wt percent at 900 deg C induces devitrification, the samples become crystalline and Fe~(3+) belongs to Zn_nFe_(3-n)O_4 where it forms both FeO_4 tetrahedra and FeO_6 octahedra.
机译:我们报告了一系列铁,锌富集的复合四元材料中铁的局部键合环境中与组成和退火相关的修饰,其组成模型可稳定电弧炉粉尘废物。 X射线吸收精细结构光谱的应用表明,当[Fe_2O_3] <20 wt%时,Fe〜(3+)是一种玻璃形成剂,即Fe属于玻璃体基质的四面体位点,与退火过程和化学组成无关。相反,当[Fe_2O_3]> 20 wt%时,样品变为玻璃陶瓷。公开了一部分Fe〜(3+)占据了Zn_2Fe_(3-x)O_4晶体夹杂物中的八面体位点,这些内含物被嵌入玻璃基质中,其余的Fe〜(3+)以四面体形式结合。此外,[Fe_2O_3]> 20 wt%的样品在900℃退火会引起失透,样品变为晶体,Fe〜(3+)属于Zn_nFe_(3-n)O_4,在其中它形成FeO_4四面体和FeO_6八面体。

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