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HERO ID
5634533
Reference Type
Journal Article
Title
A polymer inclusion membrane composed of the binary carrier PC-88A and Versatic 10 for the selective separation and recovery of Sc
Author(s)
Sharaf, M; Yoshida, W; Kubota, F; Kolev, SD; Goto, M
Year
2018
Is Peer Reviewed?
1
Journal
RSC Advances
EISSN:
2046-2069
Publisher
Royal Society of Chemistry
Location
CAMBRIDGE
Volume
8
Issue
16
Page Numbers
8631-8637
Language
English
PMID
35539843
DOI
10.1039/c7ra12697b
Web of Science Id
WOS:000426710300020
URL
https://search.proquest.com/docview/2220909916?accountid=171501
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Abstract
This study reports on the selective separation of scandium (Sc) from other rare earth metals (REMs) using a polymer inclusion membrane (PIM). The PIM prepared with PC-88A (2-ethylhexyl hydrogen-2-ethylhexylphosphonate) alone as the carrier showed high extractability but the poor back-extraction of the extracted Sc3+ ions did not allow the transport of these ions to the receiving solution of a membrane transport system. To overcome this problem, a novel approach was introduced using a mixture of carriers that allowed Sc3+ transport into the receiving solution. A cellulose triacetate (CTA) based PIM containing both PC-88A and Versatic 10 (decanoic acid) as carriers and dioctyl phthalate (DOP) as a plasticizer was prepared for the selective separation of Sc3+ from other REM ions in nitrate media. The membrane composition was optimized and the effect of operational parameters such as pH of the feed solution and composition of the receiving solution was explored. The flux at the membrane/feed solution interface was found to depend significantly on the carrier concentration in the PIM, pH of the feed solution and the receiving solution acidity. The newly developed PIM allowed quantitative and selective transport of Sc3+ thus demonstrating its suitability for the selective recovery of this metal.
Keywords
article; acidity; cellulose; decanoic acid; nitrates; phthalates; physiological transport; plasticizers; polymers; scandium
Tags
IRIS
•
Nitrate/Nitrite
Literature Search Update, 1/1/2018 – 8/17/2022
PubMed
WoS
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