北方矿厂(Kryvyi Rih盆地)恢复球团矿物学特征

V. Evtekhov, Ye.E Evtekhova
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引用次数: 0

摘要

分析了还原球团相对于氧化球团的优点。给出了原物料的理化参数:铁矿(磁铁矿)精矿(铁含量为67.30质量%);粒径分布为0.056 mm馏分的97.0%)、膨润土(蒙脱土含量为70.43质量%;粒度分布为0.056 mm馏分的94.5%)、磨焦。实验的过程已经叙述过了。所得球团的分带结构具有明显的特征:中心带由赤铁矿和残余磁铁矿组成;中间一种含有磁铁矿颗粒,内含赤铁矿;外围带包括磁铁矿的亚二晶晶体及其枝晶聚集体。膨润土成分在中心和中间区域保持隐晶结构,在外围区域已转变为石榴石和辉石的结晶集合体。重点是需要验证温度、烧成时间、电荷成分的定量比、胶结材料的矿物和化学成分等各种指标对矿物学转变的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mineralogical features of restored pellets of Northern Mining and Processing Plant (Kryvyi Rih basin)
The advantages of reduced iron ore pellets over oxidized ones have been considered. The chemical and physical parameters of the primary material have been given: iron ore (magnetite) concentrate (iron content is 67.30 mass %; particle size distribution is 97.0 % of 0.056 mm fraction), bentonite (montmorilonit content is 70.43 mass %; particle size distribution is 94.5% of 0.056 mm fraction), ground coke. The course of experiments has been described. The zonal structure of the obtained pellets has been characterized: the central zone is composed of hematite with relics of magnetite; intermediate one contains magnetite particles with inclusions of hematite; peripheral zone includes subidiomorphic crystals of magnetite and their dendritic aggregates. The bentonite component in the central and intermediate zones retained a crypto-crystalline structure, in the peripheral one it had been transformed into a crystalline aggregate of garnet and pyroxene. Emphasis is placed on the need to verify the impact of various indicators of temperature, firing time, quantitative ratios of charge components, mineral and chemical composition of the cementing material on mineralogical transformations.
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