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Thermodynamic Calculations on Direct Reduction of Chromium-Bearing Vanadium Titanium Magnetite

机译:含铬钒钛磁铁矿直接减少的热力学计算

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In order to make full use of the chromium-bearing vanadium titanium magnetite with chromium, a new process of "direct reduction-electric furnace smelting separation" has been developed for recovering the iron, vanadium, titanium and chromium in recent years. In this paper, FactSage, one of the most frequently-used thermodynamic calculation software, was used to calculate the reduction degree of Fe, V and Cr with different n_C/n_O (mole ratio of carbon and oxygen). It was found that the suitable operating conditions of direct reduction process were n_C/n_O > 1.07 and T > 1473 K. In addition, the direct reduction experiment of Hongge vanadium titanium magnetite was carried out and the obtained samples after direct reduction were analyzed by XRD and chemical composition. The result shows that the metallization rate of carbon-containing pellet is nearly 90%.
机译:为了充分利用具有铬的含铬钒钛磁铁矿,已经开发出近年来回收铁,钒,钛和铬的“直接还原电炉冶炼分离”的新方法。在本文中,Factsage是最常用的热力学计算软件之一,用于计算具有不同N_C / N_O(碳和氧气的摩尔比)的Fe,V和Cr的减少程度。发现直接还原过程的合适操作条件是N_C / N_O> 1.07和T> 1473 K.此外,通过XRD进行直接减少后进行的流红钒钛磁铁矿的直接还原实验。和化学成分。结果表明,含碳颗粒的金属化速率接近90%。

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