Pilot-scale recovery of rare earths and scandium from phosphogypsum and uranium leachates
Ural Federal University (UrFU) and VTT have performed joint research on development of industrial technologies for the extraction of REM and Scandium compounds from phosphogypsum and Uranium ISL leachate solutions. Leaching-absorption experiments at UrFU have been supported with multicomponent solut...
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Published in | E3S Web of Conferences Vol. 8; p. 1026 |
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Abstract | Ural Federal University (UrFU) and VTT have performed joint research on development of industrial technologies for the extraction of REM and Scandium compounds from phosphogypsum and Uranium ISL leachate solutions. Leaching-absorption experiments at UrFU have been supported with multicomponent solution modelling by VTT. The simulations have been performed with VTT’s ChemSheet/Balas program and can be used for speciation calculations in the lixiviant solution. The experimental work combines solvent extraction with advanced ion exchange methodology in a pilot facility capable of treating 5 m3 solution per hour. Currently, the plant produces cerium carbonate, lanthanum oxide, neodymium oxide and concentrate of heavy rare earth metals. A batch of 45 t solids has been processed with the gain of 100 kg’s of REM concentrate. A mini-pilot plant with productivity above 50 liters per hour has been applied to recover scandium oxide and REE concentrates from the uranium ISL solution. As the preliminary product contains radioactivity (mainly strontium), an additional decontamination and cleaning of both concentrates by extraction has rendered a necessity. Finally a purified 99% concentrate of scandium oxide as well as 99% rare earth concentrate are received. |
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AbstractList | Ural Federal University (UrFU) and VTT have performed joint research on development of industrial technologies for the extraction of REM and Scandium compounds from phosphogypsum and Uranium ISL leachate solutions. Leaching-absorption experiments at UrFU have been supported with multicomponent solution modelling by VTT. The simulations have been performed with VTT’s ChemSheet/Balas program and can be used for speciation calculations in the lixiviant solution. The experimental work combines solvent extraction with advanced ion exchange methodology in a pilot facility capable of treating 5 m3 solution per hour. Currently, the plant produces cerium carbonate, lanthanum oxide, neodymium oxide and concentrate of heavy rare earth metals. A batch of 45 t solids has been processed with the gain of 100 kg’s of REM concentrate. A mini-pilot plant with productivity above 50 liters per hour has been applied to recover scandium oxide and REE concentrates from the uranium ISL solution. As the preliminary product contains radioactivity (mainly strontium), an additional decontamination and cleaning of both concentrates by extraction has rendered a necessity. Finally a purified 99% concentrate of scandium oxide as well as 99% rare earth concentrate are received. |
Author | Smyshlyaev, Denis Botalov, Maxim Mashkovtsev, Maxim Koukkari, Pertti Pajarre, Risto Kangas, Petteri Rychkov, Vladimir |
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CitedBy_id | crossref_primary_10_1016_j_gexplo_2020_106699 crossref_primary_10_1021_acs_est_9b00301 crossref_primary_10_1080_10934529_2022_2084310 crossref_primary_10_3390_met8090682 crossref_primary_10_1016_j_cej_2017_10_143 crossref_primary_10_1016_j_hydromet_2023_106140 crossref_primary_10_1016_j_jece_2024_112402 crossref_primary_10_1016_j_seppur_2023_125501 crossref_primary_10_3390_catal13040672 |
Cites_doi | 10.1016/S0898-8838(08)60017-3 10.1002/3527606157.ch51 |
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SubjectTerms | Cerium Computer simulation Decontamination Heavy metals Ion exchange Lanthanum Lanthanum oxides Leachates Leaching Neodymium Phosphogypsum Radioactivity Rare earth elements Scandium Scandium compounds Scandium oxides Solvent extraction Speciation Strontium Uranium |
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Title | Pilot-scale recovery of rare earths and scandium from phosphogypsum and uranium leachates |
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