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Extended studies of degradation mechanisms in the refractory lining of a rotary kiln for iron ore pellet production

机译:广泛研究铁矿石颗粒生产用回转窑耐火衬里的降解机理

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摘要

Changes, over a period of 8 years, in the chemical composition and morphology of deposit and lining materials in a production rotary kiln for iron ore pellet manufacture are described. The following have been studied: two types of refractory brick used as hning material;;deposited chunk materials from the hning;;the interaction zones between deposits and linings. Morphological changes at the deposit/lining interface, and the active chemical reactions, are established. Larger hematite grains in the deposit material (5-50 μm) primarily remain at the original deposit/lining interface. The remainder penetrates Assures, voids and brick joints, forms a laminar structure with corundum from the bricks, and migrates in grains in the lining material. Potassium penetrates more deeply into the bricks than hematite, resulting in the formation of kalsilite, leucite and potassium β-alumina, which contribute to degradation of the lining.
机译:描述了在过去的8年中,用于生产铁矿石球团矿的生产回转窑中沉积物和衬里材料的化学组成和形态的变化。已经研究了以下内容:两种类型的耐火砖用作珩磨材料;;从珩磨中沉积的块状材料;;沉积物与衬里之间的相互作用区域。确定了沉积物/衬里界面的形态变化以及活性化学反应。沉积材料中较大的赤铁矿晶粒(5-50μm)主要保留在原始的沉积/衬层界面上。其余的渗入确保物,空隙和砖缝,与砖中的刚玉一起形成层状结构,并在衬里材料中以颗粒形式迁移。钾比赤铁矿更深入地渗透到砖中,导致形成钾铝石,白榴石和β-氧化铝钾,这有助于衬里的降解。

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