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Effect of Slag Melting Behavior on Metal-Slag Separation Temperature in Powdery Iron, Slag and Carbon Mixture

机译:熔渣行为对粉状铁,渣和碳混合物中金属渣分离温度的影响

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Utilization of self reducing pellet in blast furnace is one of the effective technologies to mitigate the CO_(2) emissions in the steel industry. However, there are not sufficient researches on how the pellet behaves around cohesive zone. Therefore, purpose of this study is to clarify the effect of slag melting behavior on metal-slag separation behavior. In order to simulate the behavior around cohesive zone, electrolytic iron powder, carbon powder, and synthetic slag were prepared as reduced iron, residual carbon and slag components, respectively. They were well mixed as given mass ratios decided from the composition of the self reducing pellet. Different kinds of slag compositions were adopted to change properties, such as melting temperature and viscosity. The mixtures were pressed into tablets and used as experimental samples. “In-situ ” observations of metal-slag separation behavior in the mixtures during constant rate heating were done by a laser microscope combined with infra-red furnace and metal-slag separation temperatures were decided. Following results were obtained. The metal-slag separation behavior was dominated largely by agglomeration behavior of liquid phase of iron. The separation surely occurred when both phases of iron and slag change to liquid phases. At the same time, the separation could also occur even if a small amount of solid phases still remained in the mixture. In this experimental condition, the effect of slag melting temperature on the separation was larger than the effect of slag's viscosity.
机译:在高炉中使用自还原颗粒是减轻钢铁行业CO_(2)排放的有效技术之一。然而,关于颗粒如何在粘性区域周围的行为还没有足够的研究。因此,本研究的目的是阐明熔渣行为对金属渣分离行为的影响。为了模拟凝聚区周围的行为,分别将电解铁粉,碳粉和合成炉渣制备为还原铁,残留碳和炉渣成分。由于给定的质量比由自还原粒料的组成决定,它们混合均匀。采用不同种类的炉渣成分来改变性质,例如熔融温度和粘度。将混合物压制成片剂并用作实验样品。通过结合红外炉的激光显微镜对恒速加热过程中混合物中的金属渣分离行为进行“现场”观察,并确定了金属渣分离温度。得到以下结果。金属渣分离行为主要由铁液相的团聚行为决定。当铁和炉渣的两相都转变为液相时,肯定会发生分离。同时,即使混合物中仍残留少量固相,也可能发生分离。在此实验条件下,炉渣熔化温度对分离的影响大于炉渣粘度的影响。

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