首页> 外文会议>Global Conference on Extractive Metallurgy >The Evolution of Cobalt-Nickel Separation and Purification Technologies: Fifty Years of Solvent Extraction and Ion Exchange
【24h】

The Evolution of Cobalt-Nickel Separation and Purification Technologies: Fifty Years of Solvent Extraction and Ion Exchange

机译:钴 - 镍分离和净化技术的演变:五十年的溶剂萃取和离子交换

获取原文

摘要

The close proximity of cobalt and nickel on the Periodic Table and their frequent occurrence together in nature means that their separation in primary hydrometallurgical flowsheets is not only often necessary, but requires the use of innovative chemistry to achieve high selectivity. Today, increasingly stringent demands for the high-purity cobalt and nickel salts required for battery applications in consumer electronics, electric vehicles, and solar applications are again challenging the state of the art. The evolution of cobalt-nickel separations is traced from the basic precipitation technologies employed in 1960s, through commissioning of the first cobalt solvent-extraction plant in South Africa in 1974, to the commercialisation of organophosphinic-acid extractants (which provided a step-change improvement in selectivity) and their eventual widespread use in the 1980s and '90s. This was followed later by their sulphur analogue, which enabled different possibilities for laterite processing in the new millennium. Separations in chloride media, which take advantage of the different speciation chemistries, and nickel extraction by oximes in ammoniacal systems are also discussed. More recently, chelating and solvent-impregnated resins have added further dimensions to the possibilities for flowsheet design and enabled higher purity products to be attained from both primary and secondary sources. Selected case studies and flowsheets are described.
机译:钴和镍在周期性表上的靠近接近,其频繁发生在自然中的频繁发生意味着它们在初级氢化冶金流程中的分离不仅是必要的,而且需要使用创新化学来实现高选择性。如今,对消费电子,电动车和太阳能应用中的电池应用所需的高纯度钴和镍盐的需求越来越严格地挑战了最新的技术。通过1974年南非的第一个钴溶剂 - 萃取厂调试的钴镍镍分离的演变由20世纪60年代的基本降水技术追踪,以便于有机磷酸酸萃取物的商业化(提供了阶跃改变改善在选择性中)及其在20世纪80年代和90年代的最终广泛使用。随后,他们的硫类似物之后,这使得在新千年中能够为红线加工的不同可能性。还讨论了利用不同的物质化学的氯化物培养基中的分离,以及通过氧化肟在氨体系中的氧化镍提取。最近,螯合和溶剂浸渍的树脂在流动设计的可能性中增加了进一步的尺寸,并使能够从初级和二级来源获得的更高纯度产品。描述了所选案例研究和流程。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号