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Review of high-temperature recovery of rare earth (Nd/Dy) from magnet waste

机译:从磁铁废料中回收稀土(Nd / Dy)的高温回收

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摘要

Rare-earth metals, particularly neodymium, dysprosium, and praseodymium are becoming increasingly important in the transition to a green economy due to their essential role in permanent magnet applications such as in electric motors and generators. With the increasingly limited rare-earth supply and complexity of processing Nd, Dy, and Pr from primary ores, recycling of rare-earth based magnets has become a necessary option to manage supply and demand. Depending on the form of the starting material (sludge or scrap), there are different routes that can be used to recover neodymium from secondary sources, ranging from hydrometallurgical (based on its primary production process), electrochemical to pyrometallurgical. Pyrometallurgical routes provide solution in cases where water is scarce and generation of waste is to be limited. This paper presents a systematic review of previous studies on the high-temperature (pyrometallurgical) recovery of rare earths from magnets. The features and conditions at which the recycling processes had been studied are mapped and evaluated technically. The review also highlights the reaction mechanisms, behaviors of the rare-earth elements, and the formation of intermediate compounds in high-temperature recycling processes. Recommendations for further scientific research to enable the development of recovery of the rare-earth and magnet recycling are also presented.
机译:稀土金属,特别是钕,和ase,由于在永磁体应用(如电动机和发电机)中的重要作用,在向绿色经济过渡中正变得越来越重要。随着稀土供应的日益有限以及从原始矿石中加工Nd,Dy和Pr的复杂性,稀土基磁体的回收利用已成为管理供需的必要选择。根据原料(污泥或废料)的形式,可以使用不同的途径从二次来源回收钕,从湿法冶金(基于其主要生产工艺),电化学到火法冶金。火法冶金路线可在缺水和废物产生受到限制的情况下提供解决方案。本文介绍了对以前从磁体中高温(火法冶金)回收稀土的研究的系统综述。对回收过程进行了研究的特征和条件在技术上已作图和评估。审查还重点介绍了高温循环过程中稀土元素的反应机理,行为以及中间化合物的形成。还提出了进一步科学研究的建议,以促进稀土和磁铁回收的回收利用。

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