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Evolutional behavior of carbonaceous material during dissolution in molten iron of COREX

机译:核心钢水溶解期间碳质材料的进化行为

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摘要

The dissolution behaviours of lumpy coal and coke used in COREX gasifier in molten iron were investigated. The time-dependent interfacial reaction products were observed and the microcrystalline structures of solid fuels were identified. The results showed that the rate of carbon dissolution in molten iron using lumpy coal was significantly less than that when the coke was used. The ordered carbon microcrystalline at the reaction interface would be a priority to dissolve. The interface thickness of the eroded coke was larger than that of coal char due to the uneven microtexture distribution and the irregular pore structure. The amount of attachments on the erosion interface was positively related to the dissolution time regardless of the type of solid fuel. Although the amount of ash phases on the coal char surface was less than that on the coke surface, the final carbon content in molten iron and dissolution rate of coal char were still less due to its microstructure of carbon matrix. This study contributes to understanding the dissolution mechanism of the solid fuels used in COREX gasifier and improving the fuel utilization.
机译:研究了钢铁铁水酸气化器中使用的块状煤和焦炭的溶出行为。观察到时间依赖性界面反应产物,并鉴定固体燃料的微晶结构。结果表明,使用块状煤中熔融铁中的碳溶解速率明显小于焦炭时的碳溶液。反应界面处的有序碳微晶是优先溶解的优先级。由于脱尺寸的微扫描分布和不规则孔隙结构,侵蚀焦炭的界面厚度大于煤炭的厚度。无论固体燃料的类型如何,侵蚀界面上的附件的数量与溶解时间正相关。尽管煤炭表面上的灰分相的量小于焦炭表面上的灰分,但由于其碳基质的微观结构,熔融铁和溶出速率的最终碳含量仍然较少。该研究有助于了解Corex气化器中使用的固体燃料的溶出机制,提高燃料利用。

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