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A STUDY OF COAL-BASED DIRECT REDUCTION OF COMPOSITE BINDER MAGNETITE PREHEATED PELLETS

机译:基于煤的粘结剂结合磁铁矿预热丸直接还原的研究

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A study of the coal-based direct reduction behaviors of composite binder magnetite pellets was carried out in a simulating coal-based grate-rotary kiln process. It is shown that preheated pellets possess much better reducibility than fired oxide pellets: 40 min are required for preheated pellets to reach over 90% metallization degree compared to 100 min for fired oxide pellets. The compressive strength of preheated pellets decreases dramatically at the earlier stage of reduction, climbs quickly after reducing for 30min and achieves a high value at the end of reduction. However, the compressive strength of metallized pellets from reducing of fired pellets is much lower, more cracks and fractures being formed. In the preheated pellets, crystallite of metal iron is coarse. In the oxide pellet, a large number of interconnected crystals of metal iron are formed inside pellets, and pellet structure is very compact.
机译:在模拟煤基炉排回转窑过程中,对复合粘结剂磁铁矿球团的煤基直接还原行为进行了研究。结果表明,预热的颗粒比烧成的氧化物颗粒具有更好的还原性:与烧成的氧化物颗粒相比,预热的颗粒达到100%的金属化程度需要40分钟。预热颗粒的抗压强度在还原的早期阶段急剧下降,在还原30分钟后迅速攀升,在还原结束时达到较高的值。然而,由于减少了烧成的球团,金属化球团的抗压强度要低得多,形成了更多的裂纹和断裂。在预热的球团中,金属铁的晶粒较粗。在氧化物粒料中,在粒料内部形成大量相互连接的金属铁晶体,并且粒料结构非常紧凑。

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