Wolfinger Thomas, Spreitzer Daniel, Schenk Johannes
K1-MET GmbH, Stahlstraße 14, 4020 Linz, Austria.
Primetals Technologies Austria GmbH, Turmstraße 44, 4020 Linz, Austria.
Materials (Basel). 2022 Apr 6;15(7):2687. doi: 10.3390/ma15072687.
This review focuses on the usability of iron ore ultra-fines for hydrogen-based direct reduction. Such technology is driven by the need to lower CO emissions and energy consumption for the iron and steel industry. In addition, low operational and capital expenditures and a high oxide yield because of the direct use of ultra-fines can be highlighted. The classification of powders for a fluidized bed are reviewed. Fluid dynamics, such as minimum fluidization velocity, entrainment velocity and fluidized state diagrams are summarized and discussed regarding the processing of iron ore ultra-fines in a fluidized bed. The influence of the reduction process, especially the agglomeration phenomenon sticking, is evaluated. Thus, the sticking determining factors and the solutions to avoid sticking are reviewed and discussed. The essential theoretical considerations and process-relevant issues are provided for the usability of iron ore ultra-fines for hydrogen-based fluidized bed direct reduction.
本综述聚焦于铁矿石超细粉用于氢基直接还原的可用性。此类技术是受钢铁行业降低一氧化碳排放和能源消耗的需求所驱动。此外,还可强调因直接使用超细粉而带来的低运营成本和资本支出以及高氧化物产率。对用于流化床的粉末分类进行了综述。总结并讨论了诸如最小流化速度、夹带速度和流化状态图等流体动力学,这些与在流化床中处理铁矿石超细粉有关。评估了还原过程的影响,尤其是团聚现象(黏附)。因此,对黏附的决定因素及避免黏附的解决方案进行了综述和讨论。针对铁矿石超细粉用于氢基流化床直接还原的可用性,给出了基本的理论考量和与工艺相关的问题。