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Topotactic transformations of goethite and lepidocrocite into hematite and maghemite

机译:针铁矿和纤铁矿转变为赤铁矿和磁赤铁矿的定势转变

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Goethite (alpha-FeOOH), lepidocrocite (gamma-FeOOH), hematite (alpha-Fe2O3) and maghemite (gamma-Fe2O3) constitute the main natural occurrences with magnetite (Fe3O4), for ferric oxides and oxyhydroxides.By thermal dehydrations goethite and lepidocrocite respectively give rise to hematite and maghemite by topotactic transformations. In fact, this kind of transformation permits alone to explain why hematite, the most stable oxide in a thermodynamical point of view, is not obtained directly by dehydration of lepidocrocite. Topotactic, transformations can only exist between solids displaying structural relationships. In these conditions, atom displacements are reduced so that dehydration processes are performed at a relatively low temperature and then clear vectorial relations can be established between crystal parameters of the two structures. Therefore, we can consider that trivalent iron oxyhydroxides and oxides, belong to two different structural types: goethite/hematite type and lepidocrocite/maghemite type and conclude that, in this case, kinetic phenomena are more important than laws of thermodynamic for explaining the experimental results found. (c) 2005 Elsevier SAS. All rights reserved.
机译:针铁矿(α-FeO​​OH),纤铁矿(γ-FeOOH),赤铁矿(α-Fe2O3)和磁赤铁矿(γ-Fe2O3)与磁铁矿(Fe3O4)构成了三氧化二铁和羟基氢氧化物的主要天然矿物质。通过定势变换分别产生赤铁矿和磁赤铁矿。实际上,这种转变仅能解释为什么从热力学角度来看最稳定的氧化物赤铁矿不能直接通过纤铁矿的脱水获得。从理论上讲,转换只能存在于显示结构关系的实体之间。在这些条件下,减少了原子位移,从而在相对较低的温度下执行脱水过程,然后可以在两个结构的晶体参数之间建立明确的矢量关系。因此,我们可以认为三价羟基氧化铁和氧化物属于两种不同的结构类型:针铁矿/赤铁矿类型和纤铁矿/磁赤铁矿类型,并得出结论,在这种情况下,动力学现象比热力学定律对解释实验结果更为重要。找到了。 (c)2005 Elsevier SAS。版权所有。

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