Extraction of Rare Earth Elements from Chloride Solutions Using Mixtures of P507 and Cyanex 272

Author:

Afonin Mikhail A.1,Nechaev Andrey V.2,Yakimenko Ilya A.1,Belova Vera V.3

Affiliation:

1. Department of Technology of Rare Elements and Nanomaterials Based on Them, St. Petersburg State Institute of Technology (Technical University), Moskovsky pr., 26, 190013 St. Petersburg, Russia

2. Join-Stock Company «Group of Companies «Rusredmet», 47R Kingisepp Highway, 198320 St. Petersburg, Russia

3. Kurnakov Institute of General and Inorganic Chemistry, Russian Academy of Sciences, 31 Leninskii pr., 119991 Moscow, Russia

Abstract

In this study, the extraction of rare earth elements (REEs) from chloride solutions after leaching REE carbonate concentrate with solutions of the mixtures of P507 (2-ethylhexylphosphonic acid mono-2-ethylhexyl ester) and Cyanex 272 (bis(2,4,4-trimethylpentyl)phosphinic acid) (1:1) at various concentrations was experimentally studied. It was shown that the distribution ratios of all REEs decrease with the increasing concentration of these metals in the initial solution, which is associated with the loading of the organic phase. The most significant improvement in the extraction is observed for the heavy group of rare earth elements. The extractability of REEs increases with the increasing atomic number of the element, as is typical for the extraction of these metals with acidic organophosphorus extractants. The data obtained show that the separation factors of adjacent rare earth elements decrease slightly with the increasing concentration of metals in the initial aqueous solution. Increasing the concentration of the extractant mixture does not have a significant effect on the values of the adjacent REE separation factors. The data obtained on the distribution ratios and separation factors made it possible to propose a flow sheet for the separation of rare earth elements with the production of Y, Ho, Tb and Dy.

Funder

Ministry of Science and Higher Education of the Russian Federation

Publisher

MDPI AG

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