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首页> 外文期刊>Glass Physics and Chemistry: A Journal on the Structural, Physical, and Chemical Properties and Nature of Inorganic Glasses and Glass-Forming Melts >The structural state of iron in multicomponent aluminum iron borosilicate glass depending on their composition and synthesis conditions
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The structural state of iron in multicomponent aluminum iron borosilicate glass depending on their composition and synthesis conditions

机译:多组分硼铝硅铁玻璃中铁的结构态取决于其组成和合成条件

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摘要

The oxidation states and coordination environment of iron ions in borosilicate glass used for the immobilization of iron-containing radioactive waste are studied by the methods of Mossbauer and Fourier transform IR spectroscopies. In homogeneous glass, containing no more than 50 wt % of waste oxides, iron is present in the form of Fe3+ and Fe2+ ions in octahedral coordination with oxygen. The phase of a iron-containing spinel, in which iron atoms with an oxidation number of +3 in the magnetically ordered state surrounded tetrahedrally by oxygen atoms (Fe3+O4) and iron in the two- and trivalent states in the octahedral oxygen environment (Fe3+O6 + Fe2+O6) are present, is precipitated at higher waste concentrations. Both the Mossbauer and IR spectra of glass crystalline materials are combinations of the corresponding individual spectra. The quantitative ratio of the doubly- and triply-charged iron ions in samples depends on the synthesis conditions. The maximum fraction of iron in the glass phase (about 28%) and, at the same time, the maximum fraction of the Fe3+ ions (91.3%) are observed in the sample prepared in a crucible by heating in a laboratory furnace in the air environment and subsequent quenching on a metal sheet.
机译:采用Mossbauer和傅里叶变换红外光谱法研究了用于固定含铁放射性废物的硼硅酸盐玻璃中铁离子的氧化态和配位环境。在含有不超过50重量%的废氧化物的均质玻璃中,铁以Fe 3+和Fe 2+离子的形式与氧成八面体配位。含铁尖晶石的相,在八面体氧环境中,磁性序态的氧化数为+3的铁原子四面体被氧原子(Fe3 + O4)和二价和三价态的铁包围(存在Fe3 + O6 + Fe2 + O6,在较高的废物浓度下会沉淀。玻璃晶体材料的Mossbauer光谱和IR光谱都是相应的各个光谱的组合。样品中双电荷和三电荷铁离子的定量比取决于合成条件。通过在实验室炉中在空气中加热,在坩埚中制备的样品中观察到玻璃相中铁的最大含量(约28%),同时,Fe3 +离子的最大含量(91.3%)环境并随后在金属板上淬火。

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