Leaching and Recovery of Rare-Earth Elements from Neodymium Magnet Waste Using Organic Acids

被引:79
作者
Gergoric, Marino [1 ]
Ravaux, Christophe [2 ]
Steenari, Britt-Marie [1 ]
Espegren, Fredrik [1 ]
Retegan, Teodora [1 ]
机构
[1] Chalmers Univ Technol, Nucl Chem & Ind Mat Recycling, Chem & Chem Engn, S-41296 Gothenburg, Sweden
[2] Natl Sch Chem Montpellier, Decontaminat & Environm Management, F-34090 Montpellier, France
关键词
rare earths; neodymium magnets; solvent extraction; leaching; citric acid; acetic acid; NDFEB PERMANENT-MAGNET; SOLVENT-EXTRACTION; CITRIC-ACID; SULFURIC-ACID; REE RECOVERY; ACETIC-ACID; SEPARATION; SCRAP; KINETICS; COMPLEXATION;
D O I
10.3390/met8090721
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Over the last decade, rare-earth elements (REEs) have become critical in the European Union (EU) in terms of supply risk, and they remain critical to this day. End-of-life electronic scrap (e-scrap) recycling can provide a partial solution to the supply of REEs in the EU. One such product is end-of-life neodymium (NdFeB) magnets, which can be a feasible source of Nd, Dy, and Pr. REEs are normally leached out of NdFeB magnet waste using strong mineral acids, which can have an adverse impact on the environment in case of accidental release. Organic acids can be a solution to this problem due to easier handling, degradability, and less poisonous gas evolution during leaching. However, the literature on leaching NdFeB magnets waste with organic acids is very scarce and poorly investigated. This paper investigates the recovery of Nd, Pr, and Dy from NdFeB magnets waste powder using leaching and solvent extraction. The goal was to determine potential selectivity between the recovery of REEs and other impurities in the material. Citric acid and acetic acid were used as leaching agents, while di-(2-ethylhexyl) phosphoric acid (D2EHPA) was used for preliminary solvent extraction tests. The highest leaching efficiencies were achieved with 1 mol/L citric acid (where almost 100% of the REEs were leached after 24 h) and 1 mol/L acetic acid (where >95% of the REEs were leached). Fe and Cotwo major impuritieswere co-leached into the solution, and no leaching selectivity was achieved between the impurities and the REEs. The solvent extraction experiments with D2EHPA in Solvent 70 on 1 mol/L leachates of both acetic acid and citric acid showed much higher affinity for Nd than Fe, with better extraction properties observed in acetic acid leachate. The results showed that acetic acid and citric acid are feasible for the recovery of REEs out of NdFeB waste under certain conditions.
引用
收藏
页数:17
相关论文
共 36 条
[1]   Evaluating Rare Earth Element Availability: A Case with Revolutionary Demand from Clean Technologies [J].
Alonso, Elisa ;
Sherman, Andrew M. ;
Wallington, Timothy J. ;
Everson, Mark P. ;
Field, Frank R. ;
Roth, Richard ;
Kirchain, Randolph E. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2012, 46 (06) :3406-3414
[2]  
[Anonymous], [No title captured], Patent No. 5129945
[3]   Comparison of atmospheric citric acid leaching kinetics of nickel from different Indonesian saprolitic ores [J].
Astuti, Widi ;
Hirajima, Tsuyoshi ;
Sasaki, Keiko ;
Okibe, Naoko .
HYDROMETALLURGY, 2016, 161 :138-151
[4]   Comparison of effectiveness of citric acid and other acids in leaching of low-grade Indonesian saprolitic ores [J].
Astuti, Widi ;
Hirajima, Tsuyoshi ;
Sasaki, Keiko ;
Okibe, Naoko .
MINERALS ENGINEERING, 2016, 85 :1-16
[5]  
Awais M, 2017, RECYCLING-BASEL, V2, DOI 10.3390/recycling2040022
[6]   Leaching kinetics study of neodymium from the scrap magnet using acetic acid [J].
Behera, S. S. ;
Parhi, P. K. .
SEPARATION AND PURIFICATION TECHNOLOGY, 2016, 160 :59-66
[7]   Recycling of rare earths: a critical review [J].
Binnemans, Koen ;
Jones, Peter Tom ;
Blanpain, Bart ;
Van Gerven, Tom ;
Yang, Yongxiang ;
Walton, Allan ;
Buchert, Matthias .
JOURNAL OF CLEANER PRODUCTION, 2013, 51 :1-22
[8]   Aqueous complexation of citrate with neodymium(III) and americium(III): a study by potentiometry, absorption spectrophotometry, microcalorimetry, and XAFS [J].
Brown, M. Alex ;
Kropf, A. Jeremy ;
Paulenova, Alena ;
Gelis, Artem V. .
DALTON TRANSACTIONS, 2014, 43 (17) :6446-6454
[9]  
Cotton S., 2006, LANTHANIDE ACTINIDE
[10]  
European Commission, 2018, CRITICAL RAW MAT EU