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IRON CATALYSED GRAPHITISATION IN THE BLAST FURNACE

机译:高炉铁催化石墨化

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The paper describes the study of iron catalysed graphitisation in a set of coke samples extracted from a blast furnace, by means of optical microscopy, X-ray diffraction (XRD) and Raman microprobe techniques. The direct link obtained between optical microscopy and Raman spectroscopy in the Raman microprobe proved useful in linking morphology to molecular structure. The results show that catalytic graphitisation takes place at temperatures well below the temperature where graphitisation would normally be expected to occur. The mechanism of graphitisation probably involves dissolution and precipitation processes. The most noticeable spectral difference between the graphite produced by the catalytic process and the coke is the resolution of the second order Raman G′ band of the former into an overlapping doublet, whereas the latter only has a single symmetric peak. These spectral changes are associated with the decrease in the d_(002) values and the development of graphitic structure. The results suggest that temperature, amount of iron in contact with the coke and residence time of the coke in the hottest regions of the furnace are important factors in the catalytic graphitisation process. The use of XRD and Raman spectroscopy for the characterisation of the thermal history of blast furnace coke samples is discussed.
机译:本文介绍了通过光学显微镜,X射线衍射(XRD)和拉曼显微探针技术对高炉中提取的一组焦炭样品中铁催化石墨化的研究。拉曼显微探针在光学显微镜和拉曼光谱之间获得的直接联系被证明可用于将形态学与分子结构联系起来。结果表明,催化石墨化发生在远低于通常预期发生石墨化的温度的温度下。石墨化的机制可能涉及溶解和沉淀过程。由催化过程产生的石墨和焦炭之间最明显的光谱差异是前者的二阶拉曼G'谱带解析为重叠的双峰,而后者仅具有一个对称峰。这些光谱变化与d_(002)值的降低和石墨结构的发展有关。结果表明,温度,与焦炭接触的铁量以及焦炭在炉子​​最热区域的停留时间是催化石墨化过程中的重要因素。讨论了使用XRD和拉曼光谱表征高炉焦炭样品的热历史。

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