Reduction Kinetics Of Magnetite Concentrate Particles With Hydrogen At 1150 – 1600 °C Relevant To A Novel Flash Ironmaking Process

The Minerals, Metals and Materials Society
Mohamed Elzohiery Yousef Mohassab Amr Abdelghany Shengqin Zhang Feng Chen Hong Yong Sohn
Organization:
The Minerals, Metals and Materials Society
Pages:
9
File Size:
230 KB
Publication Date:
Jan 1, 2016

Abstract

A novel ironmaking process is under development at the University of Utah aimed at producing iron directly from iron oxide concentrate in a flash reactor. This process will reduce hazardous emissions and save energy. The kinetics of magnetite reduction with hydrogen was previously investigated in our laboratory in the temperature range 1150 to 1400 oC at large temperature increments (~100 oC increments). Due to the significant melting that occurs above 1350 oC, the reduction kinetics was measured and analyzed in two distinct temperature ranges of 1150 to 1350 oC and 1350 to 1600 oC (~50 oC increments). Experiments were performed using magnetite concentrate particles of different sizes under various hydrogen partial pressures and residence times. Reduction degrees of more than 90 % were achieved in a few seconds at temperatures as low as 1250 ºC. Different rate expressions were needed to obtain reliable agreement with experimental data.
Citation

APA: Mohamed Elzohiery Yousef Mohassab Amr Abdelghany Shengqin Zhang Feng Chen Hong Yong Sohn  (2016)  Reduction Kinetics Of Magnetite Concentrate Particles With Hydrogen At 1150 – 1600 °C Relevant To A Novel Flash Ironmaking Process

MLA: Mohamed Elzohiery Yousef Mohassab Amr Abdelghany Shengqin Zhang Feng Chen Hong Yong Sohn Reduction Kinetics Of Magnetite Concentrate Particles With Hydrogen At 1150 – 1600 °C Relevant To A Novel Flash Ironmaking Process. The Minerals, Metals and Materials Society, 2016.

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