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Effect of Gas Composition on the Carbothermic Reduction of Manganese Oxide

机译:气体成分对氧化锰碳热还原的影响

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This paper examines the reduction of pure MnO, Groote Eylandt (Northern Australia) manganese ore, siliceous manganese fines and ferromanganese slag by graphite. Reduction was conducted in the stagnant atmosphere of argon, Ar-CO gas of varying composition and helium. The rate and extent of reduction were determined by thermo-gravimetric analysis and by monitoring CO and CO_2 concentrations in the gas phase. The rate of MnO reduction in Ar-CO gas increased with decreasing CO partial pressure. Reduction in helium was faster than in argon. Under given experimental conditions (stagnant gas atmosphere) the reduction rate was mix-controlled by CO mass transfer in the gas phase and chemical reaction.
机译:本文研究了石墨对纯MnO,Groote Eylandt(北澳大利亚)锰矿石,硅质锰矿粉和铁锰渣的还原作用。还原是在氩气,不同组成的Ar-CO气体和氦气的停滞气氛中进行的。通过热重分析和监测气相中CO和CO_2的浓度来确定还原的速率和程度。 Ar-CO气体中MnO的还原速率随CO分压的降低而增加。氦气的还原比氩气的还原更快。在给定的实验条件下(静止的气体气氛),还原速率通过气相中的CO传质和化学反应进行混合控制。

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