Hydrogen reduction of iron ore pellets: A surface study using ambient pressure X-ray photoelectron spectroscopy

被引:4
作者
Heidari, Aidin [1 ]
Ghosalya, Manoj Kumar [2 ]
Mansouri, Mohammed Alaoui [2 ]
Heikkila, Anne [1 ]
Iljana, Mikko [1 ]
Kokkonen, Esko [3 ]
Huttula, Marko [2 ]
Fabritius, Timo [1 ]
Urpelainen, Samuli [2 ]
机构
[1] Univ Oulu, Fac Technol, Proc Met Res Unit, Oulu, Finland
[2] Univ Oulu, Fac Technol, Nano & Mol Syst Res Unit, Oulu, Finland
[3] Lund Univ, MAX IV Lab, Lund, Sweden
关键词
Direct reduced iron; APXPS; Surface reduction; Hydrogen reduction; Reoxidation; CONCENTRATE PARTICLES RELEVANT; LOW-TEMPERATURE REDUCTION; SPECIES BEAMLINE; XPS SPECTRA; KINETICS; OXIDE; PART; HEMATITE; STORAGE; GAS;
D O I
10.1016/j.ijhydene.2024.08.094
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Using Ambient Pressure X-ray Photoelectron Spectroscopy (APXPS), this study investigates the reduction behavior of iron oxides in direct reduction (DRI) and blast furnace (BF) pellets. H2, CO, and a H2-CO mixture are used as reducing agents at 650 degrees C. The investigation aimed to elucidate variations in the rate of reduction over time and under different conditions. Additionally, contour plots are generated to visualize the X-ray photoelectron peak intensity variations as a function of time. Furthermore, phase stability diagrams based on Fe-O-C and Fe-O-H systems are employed to enhance the understanding of reduction behavior. Results revealed that an increased gas flow rate significantly accelerated the reduction rate due to enhanced gas diffusion, while elevated pressure facilitated the reduction of w & uuml;stite to metallic iron. Notably, the DRI pellet achieves around 90% metallization degree reduction with hydrogen, but the introduction of carbon monoxide into the reducing gas prevented the reduction of the DRI pellet. In the case of BF pellet reduction, approximately 20% metallization degree is observed using H2-CO (50:50), yet subsequent reoxidation of the reduced iron to w & uuml;stite and magnetite occurred. Further investigation identified a significant increase in the partial pressure of H2O and CO2, particularly within the surface porosities, as the underlying cause of this reoxidation phenomenon.
引用
收藏
页码:148 / 161
页数:14
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