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Publication Date:
April 2012
ISSN:
2191-9550
DOI:
10.1515/gps-2012-0006

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Green Sciences

Editor-in-Chief: Hessel, Volker

Editorial Board Member: Akay, Galip / Arends, Isabel / Cann, Michael C. / Cheng, Yi / Cravotto, Giancarlo / Kralisch, Dana / D. P. Nigam, Krishna / Saha, Basu / Serra, Christophe A. / Zhang, Wei

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Open Access

Fast microwave synthesis of Pt-MFI zeolite coatings on silicon micromonoliths: application to VOC catalytic combustion

Ingrid Marin1 / Esperanza Adrover2 / Didac Vega3 / Miguel Urbiztondo4 / Maria Pilar Pina1, 5 / 1, 5 / 1, 5

1Instituto Universitario de Nanociencia Aragón. Universidad de Zaragoza, Mariano Esquillor, edif I+D, 50018 Zaragoza, España

2Planta Piloto de Ingeniería Química, Universidad Nacional del Sur, Bahia Blanca, Argentina

3Universidad Politécnica de Catalunya, Jordi Girona 1-3, Mod C4, 08034 Barcelona, España

4Centro Universitario de la Defensa (CUD), Academia General Militar (AGM) Ctra. Huesca s/n. 50090 Zaragoza, España

5Departamento de Ingenieria Quimica y Tecnologías del Medio Ambiente, Universidad de Zaragoza, María de Luna 3, 50018 Zaragoza, España

Corresponding authors

Citation Information: Green Processing and Synthesis. Volume 1, Issue 2, Pages 169–174, ISSN (Online) 2191-9550, ISSN (Print) 2191-9542, DOI: 10.1515/gps-2012-0006, April 2012

Publication History:
Received:
2012-01-27
Accepted:
2012-03-07

Abstract

This paper describes the preparation of a ZSM-5 zeolite layer onto conventional Si wafers and Si micromonoliths, by using microwave-assisted seeded hydrothermal synthesis. A homogeneous ZSM-5 zeolite layer up to 680 nm was obtained over the external surface of a Si micromonolith (surface to volume ratio >300,000 m-1) after only 4 min of hydrothermal synthesis at 453 K. As a proof of concept, the catalytic activity of the prepared ZSM-5 coated micromonoliths, after a conventional Pt ion-exchange process, was demonstrated in the combustion of traces of n-hexane (200 ppmV) in air.

Keywords: MFI; microreactor; microwave synthesis; VOC combustion

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