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Selective Extraction of Rare Earth Elements from Permanent Magnet Scraps with Membrane Solvent Extraction
Author(s) -
DaeJin Kim,
Lawrence Powell,
Lætitia H. Delmau,
Eric S. Peterson,
Jim Herchenroeder,
Ramesh R. Bhave
Publication year - 2015
Publication title -
environmental science and technology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.851
H-Index - 397
eISSN - 1520-5851
pISSN - 0013-936X
DOI - 10.1021/acs.est.5b01306
Subject(s) - aqueous solution , neodymium , hydrochloric acid , chemistry , neodymium magnet , praseodymium , membrane , extraction (chemistry) , nitric acid , solvent , hollow fiber membrane , nuclear chemistry , chromatography , materials science , magnet , inorganic chemistry , organic chemistry , laser , biochemistry , physics , quantum mechanics , optics
The rare earth elements (REEs) such as neodymium, praseodymium, and dysprosium were successfully recovered from commercial NdFeB magnets and industrial scrap magnets via membrane assisted solvent extraction (MSX). A hollow fiber membrane system was evaluated to extract REEs in a single step with the feed and strip solutions circulating continuously through the MSX system. The effects of several experimental variables on REE extraction such as flow rate, concentration of REEs in the feed solution, membrane configuration, and composition of acids were investigated with the MSX system. A multimembrane module configuration with REEs dissolved in aqueous nitric acid solutions showed high selectivity for REE extraction with no coextraction of non-REEs, whereas the use of aqueous hydrochloric acid solution resulted in coextraction of non-REEs due to the formation of chloroanions of non-REEs. The REE oxides were recovered from the strip solution through precipitation, drying, and annealing steps. The resulting REE oxides were characterized with XRD, SEM-EDX, and ICP-OES, demonstrating that the membrane assisted solvent extraction is capable of selectively recovering pure REEs from the industrial scrap magnets.

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