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Quantitative Analysis of Mineral Phases in Iron-ore Sinter by the Rietveld Method of X-ray Diffraction Patterns

机译:X射线衍射图的Rietveld方法定量分析铁矿石烧结矿中的矿物相

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Analysis techniques for quantifying crystal structures of mineral phases and their fractions in iron ore sinters have been developed using the Rietveld analysis of X-ray diffraction patterns and applied to iron ore sinters of different mechanical strength, which were prepared by laboratory-scale sinter pot testing. The Rietveld analysis successfully determined the phase fractions and structural parameters for co-existing phases such as hematite (α -Fe_(2)O_(3)), magnetite (Fe_(3)O_(4)), multi-component calcium ferrites or silico-ferrite of calcium, and aluminum (SFCA:Ca_(2)(Ca,Fe,Al)_(6)(Fe,Al,Si)_(6)O_(20) and SFCA-I:Ca_(3)(Ca,Fe)(Fe,Al)_(16)O_(28)) and other minor phases. The strength of the iron ore sinter correlated with the quantity of magnetite and not simply with that of the calcium ferrites determined by this method. The lattice constants of calcium ferrites differed among the specimens; moreover, no clear difference was observed among iron oxide phases. These results show that the Rietveld analysis provides crucial information for controlling the sintering process and suggests the phase fractions.
机译:利用X射线衍射图的Rietveld分析技术开发了定量分析铁矿烧结矿中矿物相及其成分的晶体结构的分析技术,并将其应用于通过实验室规模的烧结罐测试制备的不同机械强度的铁矿烧结矿。 。 Rietveld分析成功地确定了赤铁矿(i-α-Fe_(2)O_(3)),磁铁矿(Fe_(3)O_(4)),多组分等共存相的相分数和结构参数钙和铝的铁酸钙或硅铁氧体(SFCA:Ca_(2)(Ca,Fe,Al)_(6)(Fe,Al,Si)_(6)O_(20)和SFCA-1:Ca_ (3)(Ca,Fe)(Fe,Al)_(16)O_(28))和其他次要相。铁矿石烧结矿的强度与磁铁矿的数量有关,而不仅仅是与通过这种方法确定的铁氧体钙的强度有关。不同样品中铁氧体钙的晶格常数不同。此外,在氧化铁相之间未观察到明显的差异。这些结果表明,Rietveld分析为控制烧结过程提供了关键信息,并提出了相分数。

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