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Microstructural characterization of alkali metal mediated high temperature reactions in mullite based refractories

机译:莫来石质耐火材料中碱金属介导的高温反应的微观结构表征

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Two types of refractory bricks were used in reaction tests with slag from a production kiln for iron ore pellet production. Electron microscopy was used to characterize morphological changes at the slag/brick interface and active chemical reactions. Phases such as kalsilite, nepheline and potassium beta-alumina form, in a layered structure, as a consequence of alkali metals migration in the brick. Larger hematite grains (50-100 (mu m) in the slag remain at the original slag/brick interface, while smaller grains dissolve and move through the partly dissolved brick bulk, and forms micrometer sized needle-shaped crystals deeper in the lining material. Thermodynamic simulations predict the formation of a solid solution between hematite and corundum which is also observed in the reaction zone after extended time periods.
机译:两种类型的耐火砖用于与生产窑中的炉渣进行铁矿石颗粒生产的反应测试中。电子显微镜用于表征渣/砖界面处的形态变化和活性化学反应。由于碱金属在砖块中的迁移,形成了层状结构的相,例如钾铝石,霞石和β-氧化铝钾。炉渣中较大的赤铁矿晶粒(50-100微米)保留在原来的炉渣/砖块界面,而较小的晶粒则溶解并移动通过部分溶解的砖块,并在衬里材料中更深处形成微米级的针状晶体。热力学模拟预测在赤铁矿和刚玉之间形成固溶体,这在延长的时间段后也可在反应区中观察到。

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