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Carbothermic Reduction of Vanadium-Titanium Magnetite in Molten NaOH

机译:熔融氢氧化钠中钒钛磁铁矿的碳热还原

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The carbothermic reduction experiments were carried out for vanadium-titanium magnetite in alkaline molten in argon atmosphere at high temperatures. The effects of reduction temperature, carbon content and addition agent on the formation of pig iron containing vanadium were studied by X-ray diffraction (XRD) and scanning electron microscope (SEM). The XRD patterns of reduced slags results showed that Fe phase disappeared and the main phase of the reduced sample were Na_(16)Ti_(10)O_(28), CaTiO_(3), and Na_(1.66)AlSiO_(4.33) when the reduction temperature was more than 1473 K when cooled in the air. The SEM pictures show that most of V exists in the crystalline phase, such as Na_(16)Ti_(10)O_(28), NaAlSiO_(4) and CaTiO_(3), when quenched in air slowly; and the vanadium is dispersed in the slag phase when cooled by water quickly. Furthermore, the effects of additive NaOH on the reduction were also studied, results show that NaOH could enhance the separation of iron and slag, promote the transformation of vanadium and titanium and inhibit the vanadium enrichment in metal phase.
机译:钒钛磁铁矿在高温氩气气氛下在碱性溶液中进行了碳热还原实验。通过X射线衍射(XRD)和扫描电子显微镜(SEM)研究了还原温度,碳含量和添加剂对生铁中钒的影响。还原渣的X射线衍射图谱表明,还原铁时Fe相消失,还原相的主要相为Na_(16)Ti_(10)O_(28),CaTiO_(3)和Na_(1.66)AlSiO_(4.33)。在空气中冷却时,还原温度超过1473K。 SEM照片显示,在空气中缓慢淬火时,大部分V存在于结晶相中,如Na_(16)Ti_(10)O_(28),NaAlSiO_(4)和CaTiO_(3)。当水迅速冷却时,钒会分散在炉渣相中。此外,还研究了添加剂NaOH对还原的影响,结果表明NaOH可以增强铁和炉渣的分离,促进钒和钛的转化,并抑制钒在金属相中的富集。

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