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Recycling and substitution of light rare earth elements, cerium, lanthanum, neodymium, and praseodymium from end-of-life applications-A review

机译:报废应用中的轻稀土元素,铈,镧,钕和pr的回收和替代-评论

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The light rare earth elements (LREEs) lanthanum, cerium, neodymium and praseodymium are increasingly used in renewable energy technology and are applicable in portable electronic devices, such as phosphors in lightning applications and in catalysis. The extraction of REEs from virgin ores causes environmental degradation. LREEs are considered as critical metals. To overcome the environmental and criticality challenges of LREEs, recycling presents means by which they can be obtained from secondary sources. Presently, the recycling rate of LREEs is still very low. Substitutes of LREEs in most cases are either inferior or still undiscovered. This study investigates the criticality challenges and environmental impacts of producing LREEs from virgin ores. It focuses on LREEs obtainable in selected end-of-life products considered to have significant recycling potential; these include NdFeB magnets, Ni-MH batteries, phosphors in lighting and catalysts. Current recycling technologies, including representative methods and current recycling challenges are also reviewed. Although current recycling technologies have recorded growth, there is still a need for further improvements. The article highlights current LREEs substitution advances and the faced challenges in finding suitable LREEs substitutes. Furthermore, future ways to promote sustainability of LREEs recycling, to improve substitution, and to tackle the criticality challenges of LREEs are proposed. (C) 2019 Elsevier Ltd. All rights reserved.
机译:镧,铈,钕和ase中的轻稀土元素(LREEs)越来越多地用于可再生能源技术中,并且可应用于便携式电子设备,例如闪电应用和催化领域的荧光粉。从原始矿石中提取稀土元素会导致环境恶化。稀土元素被视为关键金属。为了克服LREE的环境和关键性挑战,提出了回收利用的手段,可以从二级来源获取它们。目前,LREEs的回收率仍然很低。在大多数情况下,LREE的替代品劣质或仍未被发现。这项研究调查了从原始矿石生产LREE的临界挑战和环境影响。它着重于在某些被认为具有重大回收潜力的报废产品中可获得的轻稀土;其中包括钕铁硼磁体,镍氢电池,照明中的磷光体和催化剂。还审查了当前的回收技术,包括代表性方法和当前的回收挑战。尽管当前的回收技术已取得增长,但仍需要进一步改进。本文重点介绍了当前LREE替代品的发展以及寻找合适的LREE替代品时面临的挑战。此外,提出了未来的方法来促进LREE的可持续性回收,改善替代和应对LREE的关键性挑战。 (C)2019 Elsevier Ltd.保留所有权利。

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