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Quantitative Evaluation of Reaction Mode and Reduction Disintegration Behavior of Iron Ore Agglomerates during Low Temperature Reduction

机译:低温还原过程中铁矿石团块反应模式和还原崩解行为的定量评估

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The utilization of H_(2) in the ironmaking process is a potential option for a further reduction of CO_(2) emission from the blast furnace (BF). H_(2) promotes the reduction reaction of burden materials, but its influence on their reduction disintegration behavior remains unknown in detail. This study investigates its influence on the specified essential factors governing the reduction disintegration behavior of the iron ore agglomerates, i.e. , iron ore sinters and pellets.Reduction disintegration index (RDI) values were measured after the reduction of the agglomerate samples using the gas mixtures of CO–H_(2)–CO_(2)–N_(2). The mineral textures of reduced samples were observed using an optical-microscope and an electron probe micro-analyzer for the evaluation of reaction modes. Further, Thiele modulus (? ), which is considered as the index of reaction modes during reduction, was calculated using the measurement results. The calculated ? showed reasonable correlation with RMI values, which is one index of the reaction mode evaluated by an elemental analysis using EPMA. Disintegration does not make much progress when ? is larger than a certain limit value, whereas it proceeds significantly when ? is less than that value.
机译:在炼铁过程中利用H_(2)是进一步减少高炉(BF)排放CO_(2)的潜在选择。 H_(2)促进了物料的还原反应,但其对物料分解崩解行为的影响尚不清楚。这项研究调查了它对控制铁矿石团块还原崩解行为的特定基本因素的影响。铁矿石烧结矿和球团矿。使用CO–H_(2)–CO_(2)–N_(2)的混合气体还原团块样品后,测定还原崩解指数(RDI)值。使用光学显微镜和电子探针微分析仪观察还原样品的矿物质地,以评估反应模式。此外,使用测量结果计算出被认为是还原过程中反应模式的指标的蒂尔模量(ηi)。计算的?与RMI值具有合理的相关性,RMI值是通过使用EPMA进行元素分析评估的反应模式的指标之一。 时崩解没有太大进展?大于某个极限值,而?小于该值。

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