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Numerical Simulation Study on the Preparation of Micro-Nanometer MgO Magnesium Oxide by Direct Pyrolysis of Molten MgCl2 Magnesium Chloride

机译:熔融MgCl2氯化镁直接热解制备微纳米MgO氧化镁的数值模拟研究

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摘要

Micro-nanometer sized MgO products have unique properties and hence are widely used. In the process of preparing titanium sponge by Kroll method, a large number of by-products such as molten MgCl2 is produced. In China, it is treated as a waste, as it wastes energy and causes pollution. In this study, a new process for the preparation of micro-nanometer sized MgO by the direct pyrolysis of molten MgCl2 is proposed. Also, the followed pyrolysis process is numerically simulated. The results from this investigation show that the fluid flows very precisely and smoothly in orbits in the reactor, and the flow velocity of fluid was maximum at the mouth of the throat. Under the gravitational action, MgO was concentrated at the middle and lower parts of the reactor. A reaction temperature of 1473 K ensured both the highest yield and consuming a reasonable amount of energy. The standard velocity guaranteed the highest reaction efficiency while preventing the accumulation of product in the reactor.
机译:微纳米尺寸的MgO产品具有独特的性质,因此广泛使用。在通过Kroll方法制备钛海绵的过程中,制备大量副产物,例如熔融MgCl 2。在中国,它被视为浪费,因为它浪费能量并导致污染。在该研究中,提出了通过熔融MgCl2的直接热解制备微纳米大小MgO的新方法。而且,在数值上模拟了洗涤的热解过程。本研究的结果表明,流体在反应器中的轨道中非常精确地流动,流体的流速在喉咙口处最大。在重力作用下,MgO浓缩在反应器的中下部分。反应温度为1473k,确保最高产量和消耗合理的能量。标准速度保证了最高的反应效率,同时防止在反应器中积聚产品。

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