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Preparation of ferronickel from nickel laterite via coal-based reduction followed by magnetic separation

机译:通过基于煤的减少制备镍红土的镍铬镍,然后进行磁分离

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摘要

The sticking phenomenon between molten slag and refractory is one of the crucial problems when preparing ferronickel from laterite ore using rotary hearth furnace or rotary kiln processes. This study aims to ameliorate sticking problems by using silicon dioxide (SiO2) to adjust the melting degree of the briquette during reduction roasting. Thermodynamic analysis indicates that the melting temperature of the slag gradually increases with an increase in the SiO2 proportion (SiO2/(SiO2 + Al2O3 + MgO) mass ratio). Experimental validations also prove that the briquette retains its original shape when the SiO2 proportion is greater than 75wt%, and sticking problems are avoided during reduction. A ferronickel product with 8.33wt% Ni and 84.71wt% Fe was prepared via reductive roasting at 1500A degrees C for 90 min with a SiO2 proportion of 75wt% and a C/O molar ratio of 1.0 followed by dry magnetic separation; the corresponding recoveries of Ni and Fe reached 75.70% and 77.97%, respectively. The microstructure and phase transformation of reduced briquette reveals that the aggregation and growth of ferronickel particles were not significantly affected after adding SiO2 to the reduction process.
机译:熔渣和难治之间的粘附现象是使用旋转炉膛或旋转窑工艺从红土矿石制备镍钴时的关键问题之一。本研究旨在通过使用二氧化硅(SiO2)来改善粘性问题,以在减少烘焙过程中调节煤层的熔化度。热力学分析表明,随着SiO 2比例的增加,炉渣的熔化温度逐渐增加(SiO 2 /(SiO 2 + Al2O3 + MgO)质量比)。实验验证还证明,当SiO 2比例大于75wt%时,煤层保持其原始形状,并且在减少期间避免了粘附问题。通过在1500A℃下的还原烘烤90分钟,将含有8.33wt%Ni和84.71wt%Fe的铁氧氧酰基克罗酮产物,其SiO 2比例为75wt%,C / O摩尔比为1.0,然后干燥磁性分离; Ni和Fe的相应回收率分别达到75.70%和77.97%。减冰片的微观结构和相变表明,在将SiO2加入还原过程后,铁酮蛋白颗粒的聚集和生长不会显着影响。

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