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Carbothermic Reduction of Vanadium Titanomagnetite by Microwave Irradiation and Smelting Behavior

机译:微波辐射及熔炼行为对钒钛磁铁矿的碳还原反应

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The recovery rate of the titanium is much low in the current process of the vanadium titanomagnetite resource in Panzhihua, China. The carbothermic reduction process in the microwave filed was proposed because the problem caused by Ti(C,N) should be avoid and the TiO_(2) content in the slag should increase. The reduction behavior of the ore in microwave and the distribution of the elements during the smelting process were studied. The heating rate of the vanadium titanomagnetite in the microwave field can be divided into three stages: the very fast heating period in initial 25 minutes in which no apparent reduction happens, the slow heating period in which the solid reduction of the magnetite decreases the heating rate, another fast heating period in which the reduction of ilmenite happens. About 60% of iron from 1 kg of the ore and carbonaceous materials was obtained by an energy supply of 10 kW by microwave irradiation in 120 min. The recovery ratios of Fe, V and Si increase with increasing the reduction temperature. The addition of the CaO can increase the recovery ratio of Fe and V, but decrease the recovery ratio of Si.
机译:在攀枝花市目前的钒钛磁铁矿资源开采过程中,钛的回收率很低。由于应避免由Ti(C,N)引起的问题并且应提高炉渣中TiO_(2)的含量,因此提出了在微波场中进行碳热还原的方法。研究了矿石在微波中的还原行为以及冶炼过程中元素的分布。钒钛磁铁矿在微波场中的加热速率可分为三个阶段:最初的25分钟内非常快的加热时间,没有明显的还原发生;缓慢的加热时间,磁铁矿的固体还原降低了加热速率。 ,这是钛铁矿还原的另一个快速加热期。通过在120分钟内通过微波照射提供10 kW的能量,可以从1千克矿石和碳质材料中获得约60%的铁。 Fe,V和Si的回收率随着还原温度的升高而增加。 CaO的添加可以提高Fe和V的回收率,但是降低Si的回收率。

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