Extracting Uranium and Molybdenum from Refractory U-Mo Associated Ore

The Minerals, Metals and Materials Society
Kang Liu Zhiping Yang Fengqi Zhao Liuyin Shi Yan Song Xing Fan
Organization:
The Minerals, Metals and Materials Society
Pages:
11
File Size:
372 KB
Publication Date:
Mar 1, 2018

Abstract

Due to the high energy consumption, long technical process, low usage rate of vanadium during the traditional smelting vanadium steel process, a new method for decarburization by CO2 to directly smelt vanadium-containing steel in blast furnace was proposed. In this paper, the thermodynamics of CO2 decarburization in molten iron process was calculated out by FactSage. The thermodynamic calculations indicated that in standard state, the transformation temperature of C and V was 1357 °C; the oxidation order of element was Si, C, V, Mn and S when using CO2 as oxidant. The experiment of blowing CO2 temperature showed that decarburization reaction temperature was 1550 °C, carbon content could be decreased to 0.676%, the decarburization rate was 88%. There was no effect on vanadium content in molten iron during the decarburization process, vanadium content was 0.323%, which meets the request of vanadium mould steel.
Citation

APA: Kang Liu Zhiping Yang Fengqi Zhao Liuyin Shi Yan Song Xing Fan  (2018)  Extracting Uranium and Molybdenum from Refractory U-Mo Associated Ore

MLA: Kang Liu Zhiping Yang Fengqi Zhao Liuyin Shi Yan Song Xing Fan Extracting Uranium and Molybdenum from Refractory U-Mo Associated Ore. The Minerals, Metals and Materials Society, 2018.

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