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Manganese Removal from Liquid Nickel by Hydrogen Plasma Arc Melting

机译:通过氢等离子体弧熔化从液体镍中去除锰

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摘要

In this work, the removal of manganese from nickel melts by Ar and (10%, 20% and 40%) H2 plasma arc melting under various pressures (0.01–0.02, 0.04–0.05 and 0.09–0.1 MPa) was investigated experimentally. The results show that only a slight reduction in the manganese content is obtained by Ar plasma arc melting (PAM). By contrast, the manganese content of liquid nickel decreases noticeably upon the addition of hydrogen to plasma gas, and the rate of manganese removal increases with increasing hydrogen volume fraction. In addition, the reduction in the pressure enhances the efficiency of manganese removal from liquid nickel by hydrogen plasma arc melting (HPAM). The process of manganese removal by HPAM was found to obey a first-order rate law. From kinetic analysis, the rate of reduction in the manganese content increases proportionally to the 0.73–0.75th power of the hydrogen volume fraction in the plasma gas. However, the rate of the manganese content reduction increases proportionally to approximately 0.88th power of %H2 in the plasma gas for the initial manganese content of 0.89 mass%, which is slightly higher than that for the initial manganese concentration of 0.45 mass%. Thermodynamic analysis indicates that the volatilization of manganese benefits from negative pressure and the presence of active hydrogen atoms that act as the transfer media of the metal vapor in the gas boundary layer.
机译:在这项工作中,从镍熔体通过在Ar下各种压力(0.01-0.02,0.04-0.05和0.09-0.11兆帕)除去锰和(10%,20%和40%)的H 2等离子体电弧熔化进行了实验研究。结果表明,仅在锰含量的轻微减少是通过Ar等离子体电弧熔炼(PAM)获得。与此相反,液体镍中的锰含量显着降低时在加入氢与等离子体气体,并与增加的氢气体积分数除锰的速率增加。此外,在压力的降低增强用氢等离子电弧熔化(HPAM)从液体镍锰的去除效率。除锰的聚丙烯酰胺的过程中被发现服从一级速率定律。从动力学分析,在还原锰含量的比率成比例地增加到等离子体气体中的氢的体积分数的0.73-0.75th功率。然而,锰含量减少成比例地增加等离子体气体中的H 2%的约0.88th功率为0.89质量%,这比为0.45质量%的初始浓度锰稍高初始锰含量的速率。热力学分析表明,从负压和充当在气体边界层的金属蒸汽的转移媒体的活性氢原子的存在锰好处挥发。

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