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A Kinetic Model for Limestone Decomposition under BOF Steelmaking Condition

机译:转炉炼钢条件下石灰石分解的动力学模型

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In BOF steelmaking process, high-activity lime has been widely used to form an appropriate slag as a medium for the removal of non-volatile impurities from the hot metal treated. In recent years, however, great attention has been paid to the possibility of directly using limestone instead of lime in the furnace. Despite laboratory experiments and industrial trials have proven the feasibility of the technique, a list of underlying issues still require more considerations, e.g. , thermodynamics and kinetics of steelmaking reactions and limestone evolution during blowing under the new condition. The main motivation behind this paper is to establish a kinetic model for limestone decomposition under BOF steelmaking condition on the basis of shrinking core hypothesis. The Kozeny-Carman equation that correlates pressure gradient with the corresponding velocity is integrated into the model in order to account for the CO_(2) flow through the lime layer packed with small grains. The model is demonstrated using a set of experimental data and is finally verified by comparing the obtained thermal conductivity and grain size with available values in the literature.
机译:在转炉炼钢过程中,高活性石灰已广泛用于形成合适的炉渣,作为从处理后的铁水中去除非挥发性杂质的介质。然而,近年来,人们非常关注在炉中直接使用石灰石代替石灰的可能性。尽管实验室实验和工业试验已经证明了该技术的可行性,但是一些潜在的问题仍然需要更多的考虑,例如。新条件下炼钢反应的热力学和动力学以及石灰石在吹塑过程中的演化。本文的主要动机是基于缩核假设,建立转炉炼钢条件下石灰石分解的动力学模型。将压力梯度与相应速度相关联的Kozeny-Carman方程式已集成到模型中,以说明流过填充有小颗粒的石灰层的CO_(2)流量。该模型使用一组实验数据进行了演示,最后通过将获得的热导率和晶粒尺寸与文献中的可用值进行比较来进行验证。

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