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Iron Ore Characterisation during High Temperature Thermal Processing

机译:高温热处理过程中铁矿石的表征

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摘要

Ironmaking essentially involves different ways of combining iron ores and energy sources to produce metallic iron. The thermal properties of the iron ores determine the amount of energy required for processing. Investigating and understanding these thermal properties is thus extremely important with respect to controlling the ironmaking processes. Using experimental and mathematical techniques, six iron ores from different origins were thermally characterised in this study. Chemical and structural changes in the iron ore during heating were investigated using SEM, EDS, and XRD analysis. Throughout the process, a number of transformations and reactions were apparent, and these have been quantified for each ore. Goethite was found to decompose between 250-350℃. This endothermic reaction was found to be the most important stage with the energy requirement to heat iron ore samples dependent upon the amount of goethite in the iron ore. The endothermic kaolinite decomposition occurred at 600℃ while the exothermic partial reduction of hematite to magnetite occurred at 850℃. Differences between the raw and sintered iron ores were investigated.
机译:炼铁实质上涉及将铁矿石和能源结合起来生产金属铁的不同方式。铁矿石的热性质决定了加工所需的能量。因此,就控制炼铁工艺而言,研究和理解这些热性能极为重要。使用实验和数学技术,对来自不同来源的六种铁矿石进行了热学表征。使用SEM,EDS和XRD分析研究了加热过程中铁矿石的化学和结构变化。在整个过程中,许多转化和反应是显而易见的,并且已经针对每种矿石进行了量化。发现针铁矿在250-350℃之间分解。发现该吸热反应是最重要的阶段,加热铁矿石样品所需的能量取决于铁矿石中针铁矿的量。吸热高岭石在600℃发生分解,而赤铁矿向磁铁矿的放热部分还原在850℃发生。研究了生铁矿石和烧结铁矿石之间的差异。

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