A chemical process which consumes a minimum amount of chemicals to recover rare-earth metals from NdFeB magnets was developed. The recovery of rare-earth elements from end-of-life consumer products has gained increasing interest during the last few years. Examples of valuable rare earths are neodymium and dysprosium because they are important constituents of strong permanent magnets used in several large or growing application fields (e.g. hard disk drives, wind turbines, electric vehicles, magnetic separators, etc.). In this paper, the rare-earth elements were selectively dissolved from a crushed and roasted NdFeB magnet with a minimum amount of acid, further purified with solvent extraction and precipitated as pure oxalate salts. The whol...
In this manuscript, we demonstrate a room temperature electrochemical process for efficiently recycl...
© 2017 The Chinese Society of Rare Earths NdFeB magnets currently dominate the magnet market. Supply...
Due to their remarkable magnetic properties, such as a high maximum energy product, high remanence, ...
A chemical process which consumes a minimum amount of chemicals to recover rare-earth metals from Nd...
The continuous miniaturization of electric motors, hard disks and wind turbines is causing an increa...
There is a considerable interest in the extraction of rare earths (RE) from NdFeB magnets in order t...
NdFeB magnet waste is one of the important secondary resources from which rare-earth elements (REEs)...
NdFeB magnet waste is one of the important secondary resources from which rare-earth elements (REEs)...
NdFeB magnet waste is one of the important secondary resources from which rare-earth elements (REEs)...
The results obtained from the work on a concept of a recycling process for NdFeB magnets to recover...
A procedure for the efficient extraction and separation of rare earths and other valuable elements f...
Rare earth metal elements have been used widely in many different fields such as in fluorescence, po...
NdFeB magnets are used in wind turbines and hybrid electric vehicles and are instrumental in progres...
This paper proposes a pyrometallurgical recycling method for end-of-life NdFeB magnets by oxidizing ...
In this manuscript, we demonstrate a room temperature electrochemical process for efficiently recycl...
In this manuscript, we demonstrate a room temperature electrochemical process for efficiently recycl...
© 2017 The Chinese Society of Rare Earths NdFeB magnets currently dominate the magnet market. Supply...
Due to their remarkable magnetic properties, such as a high maximum energy product, high remanence, ...
A chemical process which consumes a minimum amount of chemicals to recover rare-earth metals from Nd...
The continuous miniaturization of electric motors, hard disks and wind turbines is causing an increa...
There is a considerable interest in the extraction of rare earths (RE) from NdFeB magnets in order t...
NdFeB magnet waste is one of the important secondary resources from which rare-earth elements (REEs)...
NdFeB magnet waste is one of the important secondary resources from which rare-earth elements (REEs)...
NdFeB magnet waste is one of the important secondary resources from which rare-earth elements (REEs)...
The results obtained from the work on a concept of a recycling process for NdFeB magnets to recover...
A procedure for the efficient extraction and separation of rare earths and other valuable elements f...
Rare earth metal elements have been used widely in many different fields such as in fluorescence, po...
NdFeB magnets are used in wind turbines and hybrid electric vehicles and are instrumental in progres...
This paper proposes a pyrometallurgical recycling method for end-of-life NdFeB magnets by oxidizing ...
In this manuscript, we demonstrate a room temperature electrochemical process for efficiently recycl...
In this manuscript, we demonstrate a room temperature electrochemical process for efficiently recycl...
© 2017 The Chinese Society of Rare Earths NdFeB magnets currently dominate the magnet market. Supply...
Due to their remarkable magnetic properties, such as a high maximum energy product, high remanence, ...