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Limestone Dissolution in Converter Slag: Kinetics and Influence of Decomposition Reaction

机译:石灰在转炉炉渣中的溶解:动力学及分解反应的影响

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Dissolution rate of limestone in converter slag is a key to evaluate the feasibility of limestone slagging mode during steelmaking process. In this work, kinetics of limestone dissolution in converter slag at 1300–1400°C were studied and the influence of decomposition reaction were investigated. The results showed that the dissolution process of limestone in converter slag can be divided into three stages: stagnation stage, coupling stage and sole dissolution stage. Higher slag temperature and lower slag basicity were conducive to reduce the duration time of stagnation stage and obtain higher dissolution degree. The coupling stage of limestone dissolution was confirmed to be controlled by the chemical reaction, whereas diffusion through the boundary layer as well as combination of controlling steps was the rate limitation at the sole dissolution stage under different slag basicities. The kinetics parameters were determined. In addition, CO_(2) bubbles generated from decomposition reaction could provide a certain enhancement of limestone dissolution and inhabit the formation of 2CaO·SiO_(2) phase at the coupling stage of limestone dissolution in converter slag.
机译:石灰石在转炉渣中的溶解速率是评价炼钢过程中石灰石结渣方式可行性的关键。在这项工作中,研究了石灰石在1300–1400°C下溶解在转炉炉渣中的动力学,并研究了分解反应的影响。结果表明,石灰石在转炉渣中的溶解过程可分为停滞阶段,耦合阶段和单一溶解阶段三个阶段。较高的炉渣温度和较低的炉渣碱度有利于减少停滞阶段的持续时间,并获得较高的溶出度。石灰石溶解的耦合阶段被证实是由化学反应控制的,而通过边界层的扩散以及控制步骤的组合是在不同矿渣碱度下唯一溶解阶段的速率限制。确定了动力学参数。另外,分解反应产生的CO_(2)气泡可一定程度地促进石灰石的溶解,并在转炉渣中石灰石溶解的耦合阶段中形成2CaO·SiO_(2)相。

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