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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Formation and characterization of metallic iron grains in coal-based reduction of oolitic iron ore
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Formation and characterization of metallic iron grains in coal-based reduction of oolitic iron ore

机译:煤基铁矿石中金属铁晶粒的形成与表征

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摘要

To reveal the formation and characteristics of metallic iron grains in coal-based reduction, oolitic iron ore was isothermally reduced in various reduction times at various reduction temperatures. The microstructure and size of the metallic iron phase were investigated by scanning electron microscopy, energy-dispersive X-ray spectroscopy, and a Bgrimm process mineralogy analyzer. In the results, the reduced Fe separates from the ore and forms metallic iron protuberances, and then the subsequent reduced Fe diffuses to the protuberances and grows into metallic iron grains. Most of the metallic iron grains exist in the quasi-spherical shape and inlaid in the slag matrix. The cumulative frequency of metallic iron grain size is markedly influenced by both reduction time and temperature. With increasing reduction temperature and time, the grain size of metallic iron obviously increases. According to the classical grain growth equation, the growth kinetic parameters, i.e., time exponent, growth activation energy, and pre-exponential constant, are estimated to be 1.3759 +/- 0.0374, 103.18 kJ center dot mol(-1), and 922.05, respectively. Using these calculated parameters, a growth model is established to describe the growth behavior of metallic iron grains.
机译:为了揭示金属铁颗粒在煤基降低中的形成和特征,在各种还原温度下,鲕粒铁矿石在各种还原时间内等温降低。通过扫描电子显微镜,能量 - 分散X射线光谱和BGRIMM工艺矿物学分析仪研究了金属铁相的微观结构和尺寸。在结果中,减少的Fe与矿石分离并形成金属铁突起,然后随后的减少的Fe扩散到突起并生长成金属铁晶粒。大多数金属铁颗粒存在于准球形上并在炉渣基质中镶嵌。金属铁粒尺寸的累积频率明显影响减少时间和温度。随着较低的温度和时间增加,金属铁的晶粒尺寸明显增加。根据经典谷物生长方程,生长动力学参数,即时间指数,生长激活能量和预指数常数估计为1.3759 +/- 0.0374,103.18 kJ中心点Mol(-1)和922.05 , 分别。使用这些计算的参数,建立了一种生长模型来描述金属铁颗粒的生长行为。

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