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Preparation of Ferronickel from Nickel Laterite Ore via Semi-molten Reduction Followed by Magnetic Separation

机译:通过半熔化矿石从镍红土矿石中制备镍氢,然后磁分离

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The rotary kiln-electric furnace (RKEF) process is the main method for producing ferronickel from nickel laterite ore. However, this process is energy intensive as it involves several high temperature steps. Therefore, a novel process is proposed to directly produce ferronickel from nickel laterite ore by semi-molten reduction, which is expected to be realized in a rotary hearth furnace (RHF). The RHF process is able to shorten the flow sheet, decrease the reaction temperature as well as reduce energy consumption. In this study, the influence of basicity on reduction of nickel laterite ore was investigated. The results showed that it is possible to produce the ferronickel nugget directly at 1400 °C when the quaternary basicity [(m_(CaO) + m_(MgO))/(m_(SiO_2) + m_(Al_2O_3))] was fixed at 0.60. Under this experimental condition, the grade and the recovery ratio of nickel reached 11.53% and 98.59%, and the grade and recovery ratio of Fe were 84.16% and 68.72%, respectively.
机译:旋转窑电炉(RKEF)工艺是从镍红土矿石中生产铁镍的主要方法。然而,该过程是能量密集,因为它涉及几个高温步骤。因此,提出了一种通过半熔化的半熔融减少从镍红土矿石中直接生产镍镍的铁镍,这预计将在旋转炉膛炉(RHF)中实现。 RHF工艺能够缩短流量表,降低反应温度以及降低能量消耗。在这项研究中,研究了研究碱度对镍红土矿石还原的影响。结果表明,当第四节碱度[(M_(CAO)+ MgO))/(M_(SIO_2)+ M_(AL_2O_3))]固定为0.60时,可以在1400°C下直接在1400°C下生产铁酮块。 。在这种实验条件下,镍的等级和回收率达到11.53%和98.59%,级别和恢复比例分别为84.16%和68.72%。

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