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Producing Pure Magnesium Through Silicothermic Under the Atmospheric Pressure

机译:在大气压下通过硅热产生纯镁

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The majority of pure magnesium produced worldwide is made by using silicothermic method (Pidgeon process). However, the Pidgeon process suffers poor efficiency, low industrial concentration, and intermittent production. The main reason is that Pidgeon process requires to keep the reaction chamber in a vacuum state during the entire reduction process. By analyzing the thermodynamic reaction principle, we reveal that it is the low magnesium partial pressure instead of vacuum that is necessary for the silicothermic process. Based on this understanding, we develop a new technique that can produce pure magnesium under the atmospheric pressure by using silicothermic method. Flowing argon is used to carry away the magnesium vapor around the reactants, which reduces the local magnesium partial pressure. The magnesium production efficiency reaches 82.36% that is comparable to the widely used Pidgeon method, and high purity of magnesium with 99.97 wt% after melting is produced directly. The industrialized application of this exciting technique is expected to help the silicothermic to realize high efficiency, automated, and continuous production while at the same time completely change the poor production conditions, and reduce energy consumption and pollution.
机译:全球生产的大部分纯镁通过使用硅热法(Pidgeon Process)进行。然而,皮甘顿工艺效率较差,产业浓度低,间歇性生产。主要原因是Pidgeon工艺需要在整个还原过程中将反应室保持在真空状态。通过分析热力学反应原理,我们揭示了硅热进程所需的低镁部分压力而不是真空。基于这种理解,我们开发了一种新技术,可以通过使用硅热法在大气压下生产纯镁。流动的氩气用于在反应物周围携带镁蒸气,这降低了局部镁的部分压力。镁生产效率达到82.36%,可与广泛使用的吡孔方法相当,直接生产熔化后99.97wt%的高纯度。这一令人兴奋技术的工业化应用有望帮助硅热,实现高效率,自动化和连续生产,同时完全改变差的生产条件,降低能耗和污染。

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