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Magnesium production by carbothermic reduction in vacuum

机译:真空中碳热还原法生产镁

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In present work, we investigate production of magnesium by carbothermic reduction under vacuum conditions. The process was divided into two parts, one is reduction process, and the other one is condensation process. The experimental results revealed that during reduction process, the gas–solid reaction between MgO and CO was not occurred at a temperature and pressure of 1723?K and 30–100?Pa respectively. So the main reduction reaction was MgO(s)?+?C(s)?=?Mg(g)?+?CO(g) (under vacuum) and reaction type belonged to solid–solid reaction. In Condensation Process, according to a contrast and analysis, the condensation quality of magnesium is associated with CO concentration. The resultant product C was formed and it followed magnesium vapor condensation which prevents mutual combination of two metal droplets to forms the compact condensation produces. Therefore, in order to compact morphological forms of magnesium crystal whiskers, we must control the technical conditions and find the method to separate the magnesium vapor and carbon monoxide. That's the key factor to get better crystalline structure.
机译:在目前的工作中,我们研究了在真空条件下通过碳热还原法生产镁的方法。该过程分为两个部分,一个是还原过程,另一个是冷凝过程。实验结果表明,在还原过程中,温度和压力分别为1723?K和30-100?Pa时,MgO和CO之间没有发生气固反应。因此主要的还原反应是MgO(s)++ C(s)?=?Mg(g)?+?CO(g)(在真空下),反应类型属于固-固反应。在冷凝过程中,根据对比和分析,镁的冷凝质量与CO浓度相关。形成所得产物C,然后进行镁蒸气冷凝,这防止了两个金属液滴的相互结合形成紧密的冷凝产物。因此,为了压实镁晶须的形态,必须控制技术条件,寻找分离镁蒸气和一氧化碳的方法。这是获得更好的晶体结构的关键因素。

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