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Upgrading nickel content of limonite nickel ore through pelletization, selective reduction and magnetic separation

机译:通过造粒,选择性还原和磁分离提高柠檬酸盐镍矿石的镍含量

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Limonite nickel ore has potency to utilize as raw material for ferronickel or nickel matte, since it has low grade nickel content, thus process development is needed to find the acceptable process for upgrading nickel. The aim of this research is to determine upgrading of Ni content as result of selective reduction of limonite nickel pellet continued by magnetic separation as effect of temperature and time reduction as well as coal and CaSO_4 addition. There are four steps to perform this research, such as preparation including characterization of raw ore and pelletization, selective reduction, magnetic separation and characterization of products by using AAS, XRD and SEM. Based on the result study, pellet form can upgrade 77.78% higher than powder form. Upgrading of Ni and Fe content was up to 3fold and 1.5fold respectively from raw ore used when reduced at 1100°C for 60 minutes with composition of coal and CaSO_4, both 10%. The excess of CaSO_4 addition caused fayalite formation. Moreover, S_2 from CaSO_4 also support to reach low melting point and enlardge particle size of metal formed.
机译:柠檬酸镍矿石具有利用作为镍钴或镍哑光的原料,因为它具有低级镍含量,因此需要工艺开发来找到升级镍的可接受过程。该研究的目的是确定Ni含量的升级,因为磁性分离作为温度和时间减少的效果以及煤和CasO_4的磁性分离的磁性分离的选择性降低的结果。进行该研究有四个步骤,例如通过使用AAS,XRD和SEM表征原料矿石和造粒,选择性降低,磁性分离和表征的制备,包括制备方法。基于结果研究,颗粒形式可以比粉末形式更高77.78%。在1100℃下减少60分钟时,液体和Fe含量的升级分别与原料矿石的升级分别与煤和CasO_4的组成减少60分钟。过量的Caso_4加入导致脱铝矿形成。此外,来自CASO_4的S_2还支持达到所形成的金属的低熔点和扩大粒径。

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