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Rare Earth Element Preconcentration from Various Primary and Secondary Sources by Polymeric Ion Exchange Resins

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dc.creator Rychkov, Vladimir
dc.creator Botalov, Maxim
dc.creator Bunkov, Grigory
dc.creator Kirillov, Evgeny
dc.creator Akcil, Ata
dc.creator Taukin, Aslan
dc.creator Malyshev, Andrey
dc.creator Kirillov, Sergey
dc.creator Smyshlyaev, Denis
dc.creator Semenishchev, Vladimir
dc.date 2022-01-01T00:00:00Z
dc.identifier a0fe0be6-2beb-4300-b84b-def0e3ce2765
dc.identifier 10.1080/15422119.2021.1993255
dc.identifier https://avesis.sdu.edu.tr/publication/details/a0fe0be6-2beb-4300-b84b-def0e3ce2765/oai
dc.description The choice of an appropriate method for rare earth element (REE) preconcentration from industrial by-products is a very difficult task. Most of the REE separation reviews focus on liquid extraction methods, whereas sorption processes are usually mentioned in connection with chromatographic individual REE separation. Limited information is currently available on ion exchange methods for REE preconcentration. The REE sorption methods are gradually acquiring great practical significance due to depleting REE sources. The present review deals with the history, recent studies and commercial applications of REE sorption from various complex industrial by-products such as products of apatite treatment, phosphogypsum and uranium ores. It covers an extensive study on the recent research related to use of polymeric ion-exchange sorption materials for REE preconcentration and recovery from various industrial wastes.
dc.language eng
dc.rights info:eu-repo/semantics/closedAccess
dc.title Rare Earth Element Preconcentration from Various Primary and Secondary Sources by Polymeric Ion Exchange Resins
dc.type info:eu-repo/semantics/article


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