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Study on Metallized Reduction and Magnetic Separation of Iron from Fine Particles of High Iron Bauxite Ore

机译:高铁铝土矿细颗粒中铁的金属还原和磁选研究

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High iron bauxite ore is a typical unmanageable polyparagenetic resource and owns high comprehensive utilization value. Separation of iron from fine particles of high iron bauxite ore by the process of metallized reduction and magnetic dressing was researched systemically. The effect of magnetic field intensity, reduction temperature, reduction time, mole ratio of fixed carbon to reducible oxygen (FC/O) and ore particles size on separation indexes was researched. The results show that, with the conditions of reduction temperature of 1,400?°C, reduction time of 180?min, FC/O of 2.0, ore particle size of –2.0?mm and magnetic field intensity of 40 KA/m, about 89.24?% of the iron could be removed from high iron bauxite ore as metallic iron. Meanwhile, 86.09?% of the aluminum is stayed in non-magnetic fraction as alumina. However, the formation of hercynite (FeAl_(2)O_(4)) limits the reduction rate of iron oxides to metallic iron. The lower reduction conditions and higher recovery ratio of iron could be achieved with adopting ore-coal composite agglomerates or adding catalyst.
机译:高铝土矿是典型的难以管理的多共生资源,具有较高的综合利用价值。系统地研究了通过金属还原和磁选法从高铝矾土矿石细颗粒中分离铁的方法。研究了磁场强度,还原温度,还原时间,固定碳与可还原氧的摩尔比(FC / O)以及矿石粒度对分离指数的影响。结果表明,在还原温度为1,400?C,还原时间为180?min,FC / O为2.0,矿石粒径为–2.0?mm和磁场强度为40 KA / m的条件下,约89.24。可以从高铁铝土矿矿石中除掉%%的铁作为金属铁。同时,铝的86.09 %%以氧化铝的形式保留在非磁性部分中。然而,水英石(FeAl_(2)O_(4))的形成限制了氧化铁还原成金属铁的速率。采用矿石-煤复合团聚体或添加催化剂可达到较低的还原条件和较高的铁回收率。

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