Particle-resolved computational modeling of hydrogen-based direct reduction of iron ore pellets in a fixed bed. Part I: Methodology and validation

被引:3
作者
Ali, Mohammed Liaket [1 ]
Fradet, Quentin [1 ]
Riedel, Uwe [1 ]
机构
[1] German Aerosp Ctr DLR, Inst Low Carbon Ind Proc, Aussere Oybiner Str 14-16, D-02763 Zittau, Germany
关键词
Fixed bed; CFD; Iron oxide pellet; Hydrogen; Direct reduction process; GAS-SOLID REACTIONS; NUMERICAL-SIMULATION; CARBON-DIOXIDE; OXIDE PELLETS; PACKED-BEDS; FLUID-FLOW; MOVING-BED; KINETICS; VOIDAGE; WALL;
D O I
10.1016/j.ijhydene.2024.09.028
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
In the pursuit of more sustainable steelmaking, stakeholders are engaging in a transformative exploration of hydrogen-based direct reduction as an alternative to conventional blast furnaces. As a bridging step between single iron ore pellets and industrial shaft furnaces, direct reduction modeling in a fixed bed configuration can play a central role for subsequent process optimization. However, this task involves numerous challenging steps: generation of a realistic packed bed structure along with a good quality mesh and, foremost, reliable transport and kinetic processes for the individual pellets. Therefore, the present work formulates a sound methodology to progress from single particle considerations to 3D-CFD simulations of iron ore reduction using hydrogen in fixed beds, further supported by validations regarding the bed structure and the overall reduction against experimental data from the literature of a 500 g iron ore bed. The current results offer new insights into the direct reduction process, revealing, for instance, the non-uniform reduction of pellets within the bed, the presence of gas pockets, or the importance of the temperature deviation due to the endothermic reduction of iron oxides with hydrogen.
引用
收藏
页码:332 / 343
页数:12
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