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Experimental Study on the Reversion Reaction Between Magnesium and CO Vapor in the Carbothermic Reduction of Magnesia Under Vacuum

机译:真空氧化镁氧化镁氧化镁和CO蒸汽逆转反应的实验研究

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The mechanism of magnesia production was investigated experimentally in reversion reaction process in vacuum. Condensation temperature and temperature gradient which effected on the condensation of the magnesium vapor produced by magnesia carbothermic reduction in vacuum have been investigated by Mg recovery efficiency, XRD, SEM and EDS. The results show that the higher recovery efficiency was obtained when the condensing temperature which is closer to the dew point of magnesium in the constant temperature gradient. Under the condition of appropriate condensation temperature, the lower the temperature gradient is, the better the crystallization of magnesium vapor is. The XRD patterns of the profile and undersurface of the condensation product of 1873 K show that the profile of the condensation contains Mg only and the purity of the metal magnesium is high. But the undersurface of the condensation contains Mg and MgO. The SEM and EDS images of the profile and undersurface of condensation indicate that the microstructure of the undersurface of condensation is largely flocculent structure and irregular arrangement and the crystal morphology was poor and particles were also tiny. This is due to magnesium vapor reacted with CO vapor at cooling phase, MgO and C obtained covered the undersurface and stopped magnesium vapor condensing.
机译:在真空中实验研究了氧化镁生产的机制。通过Mg回收效率,XRD,SEM和EDS研究了在真空中产生的氧化镁碳热还原产生的镁蒸汽冷凝的冷凝温度和温度梯度。结果表明,当在恒定温度梯度中更接近镁的露点时,获得较高的恢复效率。在适当的冷凝温度的条件下,温度梯度越低,镁蒸气的结晶越好。 1873k的冷凝产品的轮廓和下表面的XRD图案表明,冷凝的轮廓仅含有Mg,金属镁的纯度高。但缩合的下表面含有mg和mgo。裂缝曲线和下表面的SEM和EDS图像表明缩合的下表面的微观结构在很大程度上是絮凝性的结构,并且不规则的布置和晶体形态差,颗粒也很小。这是由于在冷却相时与CO蒸汽反应的镁蒸气,MgO和C覆盖下表面和止动镁蒸汽冷凝。

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