Synthesis and applications of Ce(III)-imprinted polymer based on attapulgite as the sacrificial support material for selective separation of cerium(III) ions
Author:
Publisher
Springer Science and Business Media LLC
Subject
Analytical Chemistry
Link
http://link.springer.com/content/pdf/10.1007/s00604-010-0416-z.pdf
Reference25 articles.
1. Majdan M, Pikus S, Gladysz-Plaska A, Fuks L, Ziba E (2002) Adsorption of light lanthanides on the zeolite A surface. Colloids Surf A 209:27–35
2. Dhara S, Sarkar S, Basu S, Chattopadhyay P (2009) Separation of the 90Sr-90Y pair with cerium(IV) iodotungstate cation exchanger. Appl Radiat Isot 67:530–534
3. Jain VK, Handa A, Sait SS, Shrivastav P, Agrawal YK (2001) Pre-concentration, separation and trace determination of lanthanum(III), cerium(III), thorium(IV) and uranium(VI) on polymer supported o-vanillinsemicarbazone. Anal Chim Acta 429:237–246
4. Vasudevan S, Sozhan G, Mohan S, Pushpavanam S (2005) An electrochemical process for the separation of cerium from rare earths. Hydrometallurgy 76:115–121
5. Huang JH, Liu YF, Jin QZ, Wang XG, Yang J (2007) Adsorption studies of a water soluble dye, Reactive Red MF-3B, using sonication-surfactant-modified attapulgite clay. J Hazard Mater 143:541–548
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