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Melting Behavior and Interaction of Gangue Phase of Iron-containing Burden

机译:含铁矿渣的熔融行为和Behavior石相的相互作用

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The cohesive zone is an important location in the blast furnace due to decrease of permeability and sharp increase of pressure drop. Since the liquid phase has an important influence on the permeability, this study aimed to investigate the regulation of liquid phase formation in the cohesive zone. Through melting experiments of single and double slag tablets combined with thermodynamic calculations, some important phenomena were observed. The pellet slag melted prior to sinter slag, and the molten pellet slag caused the sinter slag to melt at a temperature below the melting temperature. The liquid phase of the cohesive zone originated due to the low melting point material of the gangue phase, and the interaction of different iron-containing burdens gangue phase. The production of the liquid phase was affected by the composition and temperature. The progress of the interaction seemed to be affected by the liquid phase ratio. The interaction was re-understood: interaction is physicochemical reactions of gangue phases of different iron-containing burdens which occurred during the formation of molten blast furnace slag with uniform composition. Thermodynamic calculations were consistent with the experimental results and showed that the interaction of the cohesive zone increased the liquid phase, which was disadvantageous for the permeability.
机译:由于高渗透率的降低和压降的急剧增加,粘性区是高炉中的重要位置。由于液相对渗透率有重要影响,因此本研究旨在研究内聚区液相形成的规律。通过单渣和双渣片的熔化实验以及热力学计算,观察到一些重要现象。球团渣在烧结矿渣之前熔化,并且熔融的球团渣导致烧结矿渣在低于熔化温度的温度下熔化。粘结区的液相是由于脉石相的低熔点物质,以及不同的含铁负荷脉石相的相互作用而产生的。液相的产生受组成和温度的影响。相互作用的进程似乎受到液相比率的影响。重新理解了这种相互作用:相互作用是具有均匀组成的熔融高炉矿渣形成过程中发生的不同含铁负荷的脉石相的物理化学反应。热力学计算与实验结果一致,表明内聚区的相互作用增加了液相,这不利于渗透性。

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