Study on the Reduction of Molybdenum Dioxide by Hydrogen

Byung‐Su Kim, Eun Young Kim, Ho-Suck Jeon, Hoo-In Lee, Jae-chun Lee

MATERIALS TRANSACTIONS · 2008 · 60 citations · 7 references

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Abstract

The reduction of MoO2 powder by hydrogen is one of the most important steps for manufacturing ferromolybdenum alloy and molybdenum powder. The results of experiments on the kinetics of this reaction are presented in this paper. The experiments were carried out under nonisothermal condition in hydrogen atmosphere using TGA equipment. The nonisothermal experiments were carried out at various linear heating rates up to 1273 K. It was found that the reduction reaction is very fast under the whole heating rate until the reduction ratio of MoO2 approaches to about 0.92. The reduction ratio of MoO2 was about 0.98 after finishing the reduction reaction at a heating rate of 4 K/min. Kinetics of the reaction was analyzed from the dynamic TGA data by means of Coats and Redfern equation. The nucleation and growth model yielded a satisfactory fit to these experimental data.

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