Selective Extraction of Rare Earth Elements from Phosphoric Acid by Ion Exchange Resins
Rare earth elements (REE) are present at low concentrations (hundreds of ppm) in phosphoric acid solutions produced by the leaching of phosphate ores by sulfuric acid. The strongly acidic and complexing nature of this medium, as well as the presence of metallic impurities (including iron and uranium...
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doaj-df8e3975bd194e3d966c29c6e2905d492020-11-24T22:09:46ZengMDPI AGMetals2075-47012018-08-018968210.3390/met8090682met8090682Selective Extraction of Rare Earth Elements from Phosphoric Acid by Ion Exchange ResinsXavier Hérès0Vincent Blet1Patricia Di Natale2Abla Ouaattou3Hamid Mazouz4Driss Dhiba5Frederic Cuer6French Nuclear and Alternative Energies Commission (CEA), Nuclear Energy Division—CEA Marcoule, Research Department of Mining and Fuel Recycling ProCesses (DMRC), BP 17171, F-30207 Bagnols sur Ceze, FranceFrench Nuclear and Alternative Energies Commission (CEA), Nuclear Energy Division—CEA Marcoule, Research Department of Mining and Fuel Recycling ProCesses (DMRC), BP 17171, F-30207 Bagnols sur Ceze, FranceFrench Nuclear and Alternative Energies Commission (CEA), Nuclear Energy Division—CEA Marcoule, Research Department of Mining and Fuel Recycling ProCesses (DMRC), BP 17171, F-30207 Bagnols sur Ceze, FranceResearch & Development Direction, OCP SA., BP 118, Jorf Lasfar El Jadida, El Jadida 24000, MoroccoResearch & Development Direction, OCP SA., BP 118, Jorf Lasfar El Jadida, El Jadida 24000, MoroccoResearch & Development Direction, OCP SA., BP 118, Jorf Lasfar El Jadida, El Jadida 24000, MoroccoFrench Nuclear and Alternative Energies Commission (CEA), Nuclear Energy Division—CEA Marcoule, Research Department of Mining and Fuel Recycling ProCesses (DMRC), BP 17171, F-30207 Bagnols sur Ceze, FranceRare earth elements (REE) are present at low concentrations (hundreds of ppm) in phosphoric acid solutions produced by the leaching of phosphate ores by sulfuric acid. The strongly acidic and complexing nature of this medium, as well as the presence of metallic impurities (including iron and uranium), require the development of a particularly cost effective process for the selective recovery of REE. Compared to the classical but costly solvent extraction, liquid-solid extraction using commercial chelating ion exchange resins could be an interesting alternative. Among the different resins tested in this paper (Tulsion CH-93, Purolite S940, Amberlite IRC-747, Lewatit TP-260, Lewatit VP OC 1026, Monophos, Diphonix,) the aminophosphonic IRC-747, and aminomethylphosphonic TP-260 are the most promising. Both of them present similar performances in terms of maximum sorption capacity estimated to be 1.8 meq/g dry resin and in adsorption kinetics, which appears to be best explained by a moving boundary model controlled by particle diffusion.http://www.mdpi.com/2075-4701/8/9/682phosphoric acidrare-earth elementsseparationsolid-liquid extractionion exchange resin |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Xavier Hérès Vincent Blet Patricia Di Natale Abla Ouaattou Hamid Mazouz Driss Dhiba Frederic Cuer |
spellingShingle |
Xavier Hérès Vincent Blet Patricia Di Natale Abla Ouaattou Hamid Mazouz Driss Dhiba Frederic Cuer Selective Extraction of Rare Earth Elements from Phosphoric Acid by Ion Exchange Resins Metals phosphoric acid rare-earth elements separation solid-liquid extraction ion exchange resin |
author_facet |
Xavier Hérès Vincent Blet Patricia Di Natale Abla Ouaattou Hamid Mazouz Driss Dhiba Frederic Cuer |
author_sort |
Xavier Hérès |
title |
Selective Extraction of Rare Earth Elements from Phosphoric Acid by Ion Exchange Resins |
title_short |
Selective Extraction of Rare Earth Elements from Phosphoric Acid by Ion Exchange Resins |
title_full |
Selective Extraction of Rare Earth Elements from Phosphoric Acid by Ion Exchange Resins |
title_fullStr |
Selective Extraction of Rare Earth Elements from Phosphoric Acid by Ion Exchange Resins |
title_full_unstemmed |
Selective Extraction of Rare Earth Elements from Phosphoric Acid by Ion Exchange Resins |
title_sort |
selective extraction of rare earth elements from phosphoric acid by ion exchange resins |
publisher |
MDPI AG |
series |
Metals |
issn |
2075-4701 |
publishDate |
2018-08-01 |
description |
Rare earth elements (REE) are present at low concentrations (hundreds of ppm) in phosphoric acid solutions produced by the leaching of phosphate ores by sulfuric acid. The strongly acidic and complexing nature of this medium, as well as the presence of metallic impurities (including iron and uranium), require the development of a particularly cost effective process for the selective recovery of REE. Compared to the classical but costly solvent extraction, liquid-solid extraction using commercial chelating ion exchange resins could be an interesting alternative. Among the different resins tested in this paper (Tulsion CH-93, Purolite S940, Amberlite IRC-747, Lewatit TP-260, Lewatit VP OC 1026, Monophos, Diphonix,) the aminophosphonic IRC-747, and aminomethylphosphonic TP-260 are the most promising. Both of them present similar performances in terms of maximum sorption capacity estimated to be 1.8 meq/g dry resin and in adsorption kinetics, which appears to be best explained by a moving boundary model controlled by particle diffusion. |
topic |
phosphoric acid rare-earth elements separation solid-liquid extraction ion exchange resin |
url |
http://www.mdpi.com/2075-4701/8/9/682 |
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