Issue 14, 2012

Rapid detemplation of nanozeolite β: microwave-assisted Fenton-like oxidation

Abstract

An in situ microwave-assisted Fenton-like oxidation has been developed for detemplation of the nanozeolite β without any pretreatment. The influencing factors on the removal of structure-directing agents (SDAs) in the nanozeolite β, such as the composition of Fenton-like reagents (pH, H2O2/TEA+, Fe3+/H2O2) and microwave operation conditions, are investigated, to find that the SDAs in the micropores and solution of the as-prepared nanozeolites could be completely eliminated within 15 min. In comparison with those obtained by the traditional high-temperature calcination, the Fenton-treated nanozeolite particles not only preserve their monodispersity and large external surface area, but also avoid the formation of extra-framework aluminum, which renders an enhanced catalytic performance in fructose dehydration.

Graphical abstract: Rapid detemplation of nanozeolite β: microwave-assisted Fenton-like oxidation

Supplementary files

Article information

Article type
Paper
Submitted
21 Oct 2011
Accepted
25 Apr 2012
First published
31 May 2012

RSC Adv., 2012,2, 6036-6041

Rapid detemplation of nanozeolite β: microwave-assisted Fenton-like oxidation

Y. Hu, Y. Zhang and Y. Tang, RSC Adv., 2012, 2, 6036 DOI: 10.1039/C2RA00947A

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