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Effects of sintering materials and gas conditions on formation of silico-ferrites of calcium and aluminium during iron ore sintering

机译:烧结材料和气体条件对铁矿石烧结过程中钙铝硅铁素体形成的影响

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摘要

Silico-ferrites of calcium and aluminium (SFCA) are desirable phases in a high quality iron ore sinter product. The effects of sintering temperature, CaO/SiO2 ratio, sintering gas atmosphere and cooling procedure on the phase composition of sintered specimens from an industrial sinter blend were examined with focus on the formation of SFCA phases. The proportions of mineral phases in specimens sintered at 1 250-1 325°C were quantitatively examined using image analysis. SFCA can be formed at low temperatures by solid state reactions, the formation of which was enhanced by increasing temperature. Further increasing sintering temperature promoted the reduction of Fe3+ in the SFCA crystal structure to Fe2+ and consequent decomposition of SFCA. At high temperatures, SFCA was produced during cooling via crystallisation from a silicate melt. Maintaining a high oxygen partial pressure favours the formation of SFCA, either via solid state reactions or from a melt. This is attributed to hematite being available as a reactant for SFCA formation. Similarly, increasing CaO/SiO2 ratio provides more CaO as a reactant and promotes SFCA formation.
机译:钙和铝的硅铁氧体(SFCA)是高质量铁矿石烧结产品中理想的相。考察了烧结温度,CaO / SiO2比,烧结气氛和冷却步骤对工业烧结混合物中烧结试样相组成的影响,重点是SFCA相的形成。使用图像分析定量检查了在1 250-1 325°C烧结的样品中的矿物相比例。 SFCA可以在低温下通过固相反应形成,其形成因温度升高而增强。进一步提高烧结温度促进了SFCA晶体结构中的Fe3 +还原为Fe2 +,从而导致SFCA分解。在高温下,冷却过程中会从硅酸盐熔体中结晶出SFCA。保持较高的氧分压有利于通过固态反应或通过熔融形成SFCA。这归因于赤铁矿可用作SFCA形成的反应物。同样,增加CaO / SiO2比可提供更多的CaO作为反应物并促进SFCA的形成。

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