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Microwave carbothermic reduction roasting of a low grade nickeliferous silicate laterite ore

机译:微波碳热还原低级含镍硅酸盐的焙烧

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The known resources of nickel sulphide ores are quickly diminishing and in order to satisfy future nickel demands, nickel laterite deposits are being investigated as an alternative. Currently, expensive leaching and smelting processes are used to process the nickel laterite ores. The objective of the present research was to produce a high grade nickel concentrate via microwave carbothermic reduction roasting followed by magnetic separation. A thermodynamic model was developed for the roasting process in order to determine the optimum experimental conditions. The experimental variables investigated were: microwave energy and argon shrouding for the reduction tests and the magnetic field strength for the concentration stage. The behaviours of nickel and cobalt were studied in the reduction and magnetic separation processes. By optimizing the reducing and magnetic separation conditions, a high grade concentrate containing 9.2% nickel with a nickel recovery of 88.8% was achieved. (C) 2015 Elsevier Ltd. All rights reserved.
机译:已知的硫化镍矿石资源迅速减少,为了满足未来的镍需求,正在研究镍红土沉积物作为替代方案。目前,使用昂贵的浸出和冶炼工艺来处理镍红土矿石。本研究的目的是通过微波碳热还原焙烧生产高级镍浓缩物,然后通过微波碳热还原焙烧,然后进行磁性分离。为焙烧过程开发了一种热力学模型,以确定最佳的实验条件。研究的实验变量是:微波能量和氩气用于减少试验和浓度阶段的磁场强度。在减少和磁性分离过程中研究了镍和钴的行为。通过优化还原和磁性分离条件,实现了含有9.2%镍的高级浓缩物,镍回收率为88.8%。 (c)2015 Elsevier Ltd.保留所有权利。

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