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 Jun 1;15(11):3943. doi: 10.3390/ma15113943.
This mathematical evaluation focuses on iron ore ultra-fines for their use in a novel hydrogen-based fluidized bed direct reduction process. The benefits of such a process include reduced CO emissions and energy consumption per ton of product, lower operational and capital expenditure, and a higher oxide yield. Typical samples of iron ore ultra-fines, such as pellet feed, are given and classified for a fluidized bed. An operating field for a hydrogen-based fluidized bed direct reduction process using iron ore ultra-fines is shown in the fluidized state diagram following Reh's approach and compared to other processes. The effects of the process conditions and the agglomeration phenomenon sticking were analyzed and evaluated with mathematical case studies. The agglomeration phenomenon sticking was identified as the most critical issue; thus, the dependencies of the fluid dynamics on the characteristic diameter were examined.
该数学评估聚焦于铁矿石超细粉在一种新型氢基流化床直接还原工艺中的应用。这种工艺的优势包括每吨产品的一氧化碳排放量和能源消耗降低、运营和资本支出减少以及氧化物产率提高。给出了铁矿石超细粉的典型样品,如球团矿原料,并针对流化床进行了分类。采用雷氏方法在流化状态图中展示了使用铁矿石超细粉的氢基流化床直接还原工艺的操作范围,并与其他工艺进行了比较。通过数学案例研究分析和评估了工艺条件和结块现象附着的影响。结块现象附着被确定为最关键的问题;因此,研究了流体动力学对特征直径的依赖性。