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Thermodynamic Analysis of the Selective Reduction of a Nickeliferous Limonitic Laterite Ore by Hydrogen

机译:氢选择性还原镍铁褐铁红土矿石的热力学分析

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Nickeliferous limonitic laterite ores are becoming increasingly attractive as a source of metallic nickel as the costs associated with recovering nickel from the sulphide ores increase. Unlike the sulphide ores, however, the laterite ores are not amenable to concentration by conventional mineral processing techniques such as froth flotation. One potential concentrating method would be the pyrometallurgical solid state reduction of the nickeliferous limonitic ores at relatively low temperatures, followed by beneficiation via magnetic separation. A number of reductants can be utilized in the reduction step, and in this research, a thermodynamic model has been developed to investigate the reduction of a nickeliferous limonitic laterite by hydrogen. The nickel recovery to the ferronickel phase was predicted to be greater than 95% at temperatures of 673-873 K. Reductant additions above the stoichiometric requirement resulted in high recoveries over a wider temperature range, but the nickel grade of the ferronickel decreased.
机译:随着从硫化矿石中回收镍的成本增加,镍铁锰铁矿红土矿石作为金属镍的来源变得越来越有吸引力。但是,与硫化矿石不同,红土矿石不适合通过常规矿物加工技术(例如泡沫浮选)进行浓缩。一种潜在的浓缩方法是在相对较低的温度下对镍铁锰铁矿进行热冶金固态还原,然后通过磁选进行选矿。在还原步骤中可以使用多种还原剂,在这项研究中,已经开发了一种热力学模型来研究镍对褐铁质红土的氢还原作用。预计在673-873 K的温度下,镍铁相的镍回收率将超过95%。超过化学计量要求的还原剂添加量会导致在较宽的温度范围内高回收率,但镍铁的镍品位下降。

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