Solvent Extraction of Neodymium(III) by Functionalized Ionic Liquid Trioctylmethylammonium Dioctyl Diglycolamate in Fluorine-free Ionic Liquid Diluent

被引:123
作者
Rout, Alok [1 ]
Binnemans, Koen [1 ]
机构
[1] Katholieke Univ Leuven, Dept Chem, B-3001 Heverlee, Belgium
关键词
RARE-EARTH ELEMENTS; METAL-IONS; SELECTIVE EXTRACTION; MUTUAL SEPARATION; NITRATE SOLUTIONS; PHASE-SEPARATION; MECHANISM; ACID; EUROPIUM(III); BEHAVIOR;
D O I
10.1021/ie404340p
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The extraction behavior of neodymium and other rare earths from nitric acid media by the functionalized ionic liquid trioctylmethylammonium dioctyl diglycolamate, [A336][DGA], was investigated. The nonfluorinated ionic liquid trioctylmethylammonium nitrate, [A336][NO3], was used as diluent. The extraction behavior of neodymium(III) in this ionic liquid solution was carried out as a function of various parameters such as the pH, concentration of the extractant, type of acidic media, temperature, concentration of salting-out agent, and concentration of the aqueous feed. The extraction behavior of [A336][DGA) in [A336][NO3] was compared with that of [A336][DGA] in the chloride-containing ionic liquid diluent [A336][Cl] (Aliquat 336). The distribution ratios obtained in [A336][DGA] were compared with those observed in molecular extractant N,N-dioctyl diglycol amic acid (HDGA), from which the anion of the ionic liquid extractant was prepared. The distribution ratio for extraction of neodymium(III) by [A336][DGA] in [A336][NO3] was higher than that for extraction by HDGA in [A336][NO3], at pH values >2. The effects of thermodynamic parameters, the stripping of neodymium(III) from the ionic liquid, and the reusability of the functionalized ionic liquid were studied in detail. The general applicability of the extraction system was illustrated by the extraction of lanthanide(III) ions other than neodymium(III).
引用
收藏
页码:6500 / 6508
页数:9
相关论文
共 73 条
[11]  
Billard I, 2013, HDB PHYS CHEM RARE E, P213, DOI DOI 10.1016/B978-0-444-59536-2.00003-9
[12]   Is a universal model to describe liquid-liquid extraction of cations by use of ionic liquids in reach? [J].
Billard, Isabelle ;
Ouadi, Ali ;
Gaillard, Clotilde .
DALTON TRANSACTIONS, 2013, 42 (17) :6203-6212
[13]   Liquid-liquid extraction of actinides, lanthanides, and fission products by use of ionic liquids: from discovery to understanding [J].
Billard, Isabelle ;
Ouadi, Ali ;
Gaillard, Clotilde .
ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 2011, 400 (06) :1555-1566
[14]   Rare-Earth Economics: The Balance Problem [J].
Binnemans, K. ;
Jones, P. T. ;
Van Acker, K. ;
Blanpain, B. ;
Mishra, B. ;
Apelian, D. .
JOM, 2013, 65 (07) :846-848
[15]   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
[16]   Industrial preparation of phosphonium ionic liquids [J].
Bradaric, CJ ;
Downard, A ;
Kennedy, C ;
Robertson, AJ ;
Zhou, YH .
GREEN CHEMISTRY, 2003, 5 (02) :143-152
[17]   EXTRACTION OF LIGHT RARE-EARTH ELEMENTS BY AMINES AT HIGH INORGANIC NITRATE CONCENTRATION [J].
CERNA, M ;
VOLAUFOVA, E ;
ROD, V .
HYDROMETALLURGY, 1992, 28 (03) :339-352
[18]  
Daes C. F., 1976, HYDROLYSIS CATIONS
[19]   MIXED IONIC SOLVENT SYSTEMS .3. MECHANISM OF EXTRACTION [J].
DAVIS, JC ;
GRINSTEA.RR .
JOURNAL OF PHYSICAL CHEMISTRY, 1970, 74 (01) :147-&
[20]   Task-specific ionic liquids [J].
Davis, JH .
CHEMISTRY LETTERS, 2004, 33 (09) :1072-1077