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Relationship between the Phases, Structure, MgO Migration and the Reduction Performance of the Pre-oxidized Vanadium-titanium Magnetite Ore in a Fluidized Bed

机译:流化床中预氧化钒钛磁铁矿的相,结构,MgO迁移与还原性能之间的关系

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This paper contrastively investigated the reduction behavior of raw and oxidized vanadium titanium magnetite ore (RVTM and OVTM) in a bubbling fluidized bed at 800°C under 75%N_(2)-25%H_(2), and systematically revealed the relationship between the structure, phases change, MgO migration behavior and the reduction performance. Microstructure observations suggest that oxidization conditions greatly affect structural evolution, phase transformation of Fe–Ti oxides, and migration of MgO in OVTM. The reduction results indicated that the average metallization degree enhanced by 8–10% as the OVTM ore had high oxidization degree. When the RVTM ore was treated at 800°C, the reduction rate increased with the increase of oxidization degree, no significant difference was observed among these oxidized samples due to their similar internal and surface structure. However, the reduction rate of OVTM at 950°C depended on the oxidization time. The reduction rate of OVTM oxidized at 950°C for 2 h was faster than the one for 1 h, which was attributed to the better exsolution of MgO and the formation of bigger pores, even though both samples were fully oxidized and Fe_(2)TiO_(5) formed in the oxidization process.
机译:本文对比研究了在800°C鼓泡流化床中在75%N_(2)-25%H_(2)下鼓泡流化床中原始和氧化的钒钛磁铁矿矿石(RVTM和OVTM)的还原行为,并系统地揭示了两者之间的关系结构,相变,MgO迁移行为和还原性能。微观结构观察表明,氧化条件极大地影响了结构演化,Fe-Ti氧化物的相变以及OVTM中MgO的迁移。还原结果表明,由于OVTM矿石具有高氧化度,平均金属化度提高了8-10%。当RVTM矿石在800°C下处理时,还原速率随氧化度的增加而增加,由于这些氧化样品的内部和表面结构相似,因此未观察到显着差异。然而,在950℃下OVTM的还原速率取决于氧化时间。 OVTM在950°C氧化2 h的还原速率快于OVTM在1 h的还原速率,这归因于即使两个样品都被完全氧化且Fe_(2),MgO的析出更好并且形成了更大的孔TiO_(5)在氧化过程中形成。

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