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Production of Magnesium by Vacuum Aluminothermic Reduction with Magnesium Aluminate Spinel as a By-Product

机译:用铝酸铝尖晶石真空铝热量减少生产镁作为副产物

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The Pidgeon process currently accounts for 85% of the world's magnesium production. Although the Pidgeon process has been greatly improved over the past 10 years, such production still consumes much energy and material and creates much pollution. The present study investigates the process of producing magnesium by employing vacuum aluminothermic reduction and by using magnesite as material and obtaining magnesium aluminate spinel as a by-product. The results show that compared with the Pidgeon process, producing magnesium by vacuum aluminothermic reduction can save materials by as much as 50%, increase productivity up to 100%, and save energy by more than 50%. It can also reduce CO2 emission by up to 60% and realize zero discharge of waste residue. Vacuum aluminothermic reduction is a highly efficient, low-energy-consumption, and environmentally friendly method of producing magnesium.
机译:Pidgeon过程目前占世界镁生产的85%。 虽然在过去的10年里,Pidgeon过程已经大大提高,但这种生产仍然消耗了大量的能源和材料,并产生了很多污染。 本研究通过采用真空铝热还原和使用菱镁矿作为材料并获得铝酸镁尖晶石作为副产物来研究生产镁的方法。 结果表明,与皮孔工艺相比,通过真空铝热量减少生产镁,可以将材料节省多达50%,提高生产率高达100%,并节省能源超过50%。 它还可以将CO 2发射减少至多60%,并实现废渣的零排放。 真空铝热减少是一种高效,低能耗,环保的生产镁的方法。

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