z-logo
open-access-imgOpen Access
Alkyl-Substituted Aminobis(phosphonates)—Efficient Precipitating Agents for Rare Earth Elements, Thorium, and Uranium in Aqueous Solutions
Author(s) -
Emilia J. Virtanen,
Siiri Perämäki,
Kaisa Helttunen,
Ari Väisänen,
Jani O. Moilanen
Publication year - 2021
Publication title -
acs omega
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.779
H-Index - 40
ISSN - 2470-1343
DOI - 10.1021/acsomega.1c02982
Subject(s) - chemistry , lanthanide , deprotonation , thorium , phosphonate , aqueous solution , titration , uranium , oxalate , ligand (biochemistry) , scandium , precipitation , inorganic chemistry , nuclear chemistry , extraction (chemistry) , actinide , coordination complex , metal , organic chemistry , ion , biochemistry , materials science , receptor , physics , meteorology , metallurgy
The efficient and environmentally sustainable separation process for rare earth elements (REE), especially for adjacent lanthanoids, remains a challenge due to the chemical similarity of REEs. Tetravalent actinoids, thorium, and traces of uranium are also present in concentrates of REEs, making their separation relevant. This study reports six simple water-soluble aminobis(phosphonate) ligands, RN[CH 2 P(O)(OH) 2 ] 2 ( 1 R = CH 2 CH 3 , 2 R = (CH 2 ) 2 CH 3 , 3 R = (CH 2 ) 3 CH 3 , 4 R = (CH 2 ) 4 CH 3 , 5 R = (CH 2 ) 5 CH 3 , 6 R = CH 2 CH(C 2 H 5 )(CH 2 ) 3 CH 3 ) as precipitating agents for REEs, Th, and U, as well as gives insight into the coordination modes of the utilized ligands with REEs at the molecular level. Aminobis(phosphonates) 4 - 6 with longer carbon chains were found to separate selectively thorium, uranium, and scandium from REEs with short precipitation time (15 min) and excellent separation factors that generally range from 100 to 2000 in acidic aqueous solution. Ligands 1 - 6 also improved separation factors for adjacent lanthanoids in comparison to traditional oxalate precipitation agents. Importantly, precipitated metals can be recovered from the ligands with 3 molar HNO 3 with no observed ligand decomposition enabling the possibility of recycling the ligands in the separation process. NMR-monitored pH titrations for 1 showed deprotonation steps at p K a 1.3, 5.55, and >10.5, which indicate that the ligands remain in a deprotonated [ L ] -1 form in the pH range of 0-4 used in the precipitation studies. 31 P NMR titration studies between 1 and M(NO 3 ) 3 (M = Y, La, Lu) gave satisfactory fits for 1:3, 1:2, and 1:1 metal-ligand stoichiometries for Y, La, and Lu, respectively, according to an F-test. Therefore, aminobis(phosphonate) precipitation agents 1 - 6 are likely to form metal complexes with fewer ligands than traditional separation agents like DEHPA, which coordinates to REEs in 1:6 metal-ligand ratio.

The content you want is available to Zendy users.

Already have an account? Click here to sign in.
Having issues? You can contact us here
Accelerating Research

Address

John Eccles House
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom