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2024 | OriginalPaper | Buchkapitel

Development and Assessment of Different Hydrometallurgical Processes for Sustainable Recovery of Rare Earths from Spent NdFeB Magnets

verfasst von : Aarti Kumari, Sushanta Kumar Sahu

Erschienen in: Rare Metal Technology 2024

Verlag: Springer Nature Switzerland

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Abstract

The utilization of NdFeB magnets is extensive in cutting-edge technologies such as hybrid electric vehicles and wind turbines. These magnets possess a substantial REE (Rare Earth Elements) content, approximately 30%, which significantly surpasses the concentration found in natural REE ores. Due to their pronounced economic significance and the associated supply risks stemming from limited primary resources, REEs are classified as critical metals. With the NdFeB permanent magnet sector experiencing an annual growth rate of 20%, the recycling of end-of-life magnets emerges as a highly effective strategy for mitigating challenges related to the supply of essential raw materials. In the current investigation, three distinct processes have been developed to recover REEs from spent wind turbine magnets. These processes encompass (1) oxidation roasting-acid leaching, (2) chlorination roasting-water leaching, and (3) electrochemical dissolution. Optimization of process parameters has been meticulously undertaken for each of these methods to achieve the production of high-purity rare earth oxide (>99%). Furthermore, a comparative evaluation has been conducted, taking into account energy efficiency and environmental sustainability, to determine the most viable approach for the sustainable recovery of REEs from spent NdFeB magnets.

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Literatur
1.
Zurück zum Zitat Kumari A, Sahu SK (2023) A comprehensive review on recycling of critical raw materials from spent neodymium iron boron (NdFeB) magnet. Sep Purif Technol 317:123527CrossRef Kumari A, Sahu SK (2023) A comprehensive review on recycling of critical raw materials from spent neodymium iron boron (NdFeB) magnet. Sep Purif Technol 317:123527CrossRef
2.
Zurück zum Zitat Goodenough KM, Wall F, Merriman D (2018) The rare earth elements: demand, global resources, and challenges for resourcing future generations. Nat Resour Res 27(2):201–216CrossRef Goodenough KM, Wall F, Merriman D (2018) The rare earth elements: demand, global resources, and challenges for resourcing future generations. Nat Resour Res 27(2):201–216CrossRef
4.
Zurück zum Zitat Kumari A, Sinha MK, Pramanik S, Sahu SK (2018) Recovery of rare earths from spent NdFeB magnets of wind turbine: leaching and kinetic aspects. Waste Manage 75:486–498CrossRef Kumari A, Sinha MK, Pramanik S, Sahu SK (2018) Recovery of rare earths from spent NdFeB magnets of wind turbine: leaching and kinetic aspects. Waste Manage 75:486–498CrossRef
5.
Zurück zum Zitat Kumari A, Raj R, Randhawa NS, Sahu SK (2021) Energy efficient process for recovery of rare earths from spent NdFeB magnet by chlorination roasting and water leaching. Hydrometallurgy 201:105581 Kumari A, Raj R, Randhawa NS, Sahu SK (2021) Energy efficient process for recovery of rare earths from spent NdFeB magnet by chlorination roasting and water leaching. Hydrometallurgy 201:105581
6.
Zurück zum Zitat Kumari A, Dipali, Randhawa NS, Sahu SK (2021) Electrochemical treatment of spent NdFeB magnet in organic acid for recovery of rare earths and other metal values. J Cleaner Prod 309:127393 Kumari A, Dipali, Randhawa NS, Sahu SK (2021) Electrochemical treatment of spent NdFeB magnet in organic acid for recovery of rare earths and other metal values. J Cleaner Prod 309:127393
Metadaten
Titel
Development and Assessment of Different Hydrometallurgical Processes for Sustainable Recovery of Rare Earths from Spent NdFeB Magnets
verfasst von
Aarti Kumari
Sushanta Kumar Sahu
Copyright-Jahr
2024
DOI
https://doi.org/10.1007/978-3-031-50236-1_4

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