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Recovering Magnesium from Ferronickel Slag by Vacuum Reduction: Thermodynamic Analysis and Experimental Verification

机译:真空还原法从镍铁渣中回收镁的热力学分析和实验验证

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The feasibility of recovering magnesium from ferronickel slag by vacuum reduction was evaluated. The thermodynamic calculations indicated that the magnesia in slag can be reduced to gaseous magnesium by Si, FeSi, Al, and C, with the minimum reduction temperatures of 2324, 2530, 1678, and 2580 K at 100?000 Pa, respectively. As the system pressure decreases, the minimum reduction temperatures decline significantly. Si maintains the minimum reduction temperature of 1585–1673 K at the atmospheric pressure of 10–100 Pa, acting as a suitable reducing agent for recovering magnesium. To verify the findings, preliminary vacuum reduction experiments, in which CaO was added to eliminate the adverse impact of SiO2 in slag, were carried out. By reducing slag with additions of 50 wt % Si and 30 wt % CaO at 1573 K for 3 h at 10 Pa, the recovery of magnesium reached 97.74%.
机译:评估了通过真空还原从镍铁渣中回收镁的可行性。热力学计算表明,炉渣中的氧化镁可以通过Si,FeSi,Al和C还原为气态镁,最低还原温度分别为100?000 Pa时的2324、2530、1678和2580K。随着系统压力的降低,最低还原温度会明显下降。硅在10-100 Pa的大气压下可维持1585-1673 K的最低还原温度,是回收镁的合适还原剂。为了证实这一发现,进行了初步的真空还原实验,其中添加了CaO以消除炉渣中SiO2的不利影响。通过在1573 K在10 Pa下添加50 wt%Si和30 wt%CaO减少炉渣3 h,镁的回收率达到97.74%。

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