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Effect of Temperature on Dephosphorization of Ferrosilicon using Electromagnetic Levitation Technology under Vacuum

机译:真空电磁悬浮技术温度对硅铁脱磷脱磷的影响

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Electromagnetic levitation (EML) is a novel contact-less process which avoids the contaminant from the crucible at high temperature. EML is also praised for providing great kinetics condition. The technology plays a very good role in the dephosphorization of ferrosilicon for the photovoltaic industry. In this research, the influence of the magnetic field on the temperature field under levitated conditions is studied. Building the coupling model of magnetic field and temperature field. The research uncovered that the magnetic field where the specimens are changed corresponding to the shape of specimens. The range of the temperature of the temperature field where the specimens does not vary a lot. It's due to the Joule heat generated by electromagnetic stirring inside the sample, which makes the temperature uniform. Based on this, the effect of temperature on dephosphorization is researched. The experimental researches have shown that when the levitated ferrosilicon alloy (24% Fe-76% Si) is placed in the flow of argon-hydrogen gas, the phosphorus removal increases with both time and temperature. Upon approaching the equilibrium time point, the reaction becomes mass transfer limited in the liquid phase. It's observed that an equilibrium time point exists at approximately 45 minutes, for which the concentration of phosphorus remains constant, independent of increasing refining time. Higher processing temperature results in lower final [P] content, with a 72% rate of removal achieved after 40 minutes of levitation at 1720°C.
机译:电磁悬浮(EML)是一种新型接触过程,避免在高温下坩埚的污染物。 EML也称为提供伟大的动力学条件。该技术在硅胶的脱磷硅对光伏工业中起着非常好的作用。在该研究中,研究了磁场对悬浮条件下温度场的影响。构建磁场和温度场的耦合模型。该研究发现,样品改变的磁场对应于样本的形状。试样不含量不变的温度场的温度范围。它是由于样品内通过电磁搅拌产生的焦耳热,这使得温度均匀。基于此,研究了温度对脱磷的影响。实验研究表明,当升定的硅铁合金(24%Fe-76%Si)置于氩气气流中时,磷去除随时间和温度而增加。在接近平衡时间点时,反应变为液相中的质量转移限制。它观察到,平衡时间点在大约45分钟内存在,其中磷的浓度保持恒定,与提高时间的增加无关。较高的加工温度导致较低的最终[P]含量,在1720℃下悬浮40分钟后的72%取出速率。

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