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Formation Rate of Calcium Ferrite Melt Focusing on SiO_2 and Al_2O_3 Component

机译:专注于SiO_2和Al_2O_3成分的铁氧体钙熔体的形成速率

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The effect of the particle size of hematite on the formation rate of calcium ferrite melt and the dissolution rate of solid hematite into molten calcium ferrite were investigated. Without regard to the particle size of hematite, the addition of SiO_2 was more effective than the addition of Al_2O_3 for increasing the melting rate and reducing the melt formation temperature in calcium ferrite system. On the other hand, the addition of Al_2O_3 was more effective than the addition of SiO_2 for increasing the dissolution rate of solid hematite into the generated molten ternary calcium ferrite. The amount of dissolved hematite into molten calcium ferrite increased linearly with increasing the immersion time. The dissolution rate of solid hematite into molten calcium ferrite was mostly determined by DELTA(mol percent Fe_2O_3) that was considered to be the driving force of the dissolution and the effect of the revolution speed on the amount of dissolved hematite can be negligible. Therefore, the dissolution reaction of solid hematite at the reaction interface was the rate-controlling step under the condition of this study.
机译:研究了赤铁矿粒径对铁酸钙熔体形成速率和固体赤铁矿在熔融铁酸钙中溶解速率的影响。不考虑赤铁矿的粒径,在铁酸钙体系中,SiO_2的添加比Al_2O_3的添加更为有效。另一方面,Al_2O_3的添加比SiO_2的添加更有效地提高了固态赤铁矿在生成的熔融三元铁氧体中的溶解速率。随着浸入时间的增加,溶解在熔融铁氧体钙中的赤铁矿数量呈线性增加。固态赤铁矿在熔融铁酸钙中的溶解速率主要由DELTA(摩尔百分比Fe_2O_3)确定,这被认为是溶解的驱动力,而转速对赤铁矿溶解量的影响可以忽略不计。因此,在本研究条件下,固态赤铁矿在反应界面的溶解反应是控制速率的步骤。

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