首页> 外文会议>Energy technology 2018: Carbon dioxide management and other technologies >Recovery of Nickel and Cobalt from a Waste Zone of Nickel Laterite Ore Using a Mixture of Extractants in Solvent Extraction Technique
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Recovery of Nickel and Cobalt from a Waste Zone of Nickel Laterite Ore Using a Mixture of Extractants in Solvent Extraction Technique

机译:溶剂萃取技术中混合萃取剂从镍红土矿废料中回收镍和钴

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The surface zone of nickel laterite ore is generally considered as residue. However, because of the depletion of ore sources and the increase in demand, this previously discarded zone may now be processed economically for nickel and cobalt. After leaching and removal of the impurities, the solution contains cobalt, magnesium, manganese and nickel. Solvent extraction is a hydrometallurgical technique used in the separation of metals from aqueous solutions. Cyanex 272 and D2EHPA are extractants used to separate nickel from cobalt. The mixture of extractants can change the performance during the metals extraction. This work aims to evaluate the solvent extraction of nickel and cobalt when Cyanex 272 and D2EHPA are mixed. The results showed that the increased concentration of D2EHPA in the organic phase increased the extraction of nickel and magnesium. However, cobalt extraction was reduced and the manganese extraction was not altered.
机译:红土镍矿的表面区域通常被视为残留物。但是,由于矿石来源的枯竭和需求的增加,现在可以较经济地加工先前废弃的镍和钴加工区。浸出并除去杂质后,溶液中含有钴,镁,锰和镍。溶剂萃取是一种湿法冶金技术,用于从水溶液中分离金属。 Cyanex 272和D2EHPA是用于从钴中分离镍的萃取剂。萃取剂的混合物可以改变金属萃取过程中的性能。这项工作旨在评估将Cyanex 272和D2EHPA混合使用时镍和钴的溶剂萃取率。结果表明,有机相中D2EHPA浓度的增加增加了镍和镁的萃取率。但是,钴的提取减少了,锰的提取没有改变。

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