N2O Direct Decomposition over Hierarchical FeZSM-5 Catalysts

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Hierarchical FeZSM-5 microspheres were prepared in the presence of 3-aminopropyltriethoxysilane (APTES) in the synthesis system. The structure and morphology of the synthesized zeolites have been characterized by XRD, SEM, and N2 adsorption techniques. The hierarchical FeZSM-5 shows a much better catalytic performance in the direct decomposition of N2O, compared to FeZSM-5 synthesized without APTES.

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Advanced Materials Research (Volumes 518-523)

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2593-2596

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May 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] H. Rodhe: Science Vol. 248 (1990), p.1217

Google Scholar

[2] L.D. Li and N.J. Guan: Micropor. Mesopor. Mater. Vol. 117 (2009), p.450

Google Scholar

[3] G.I. Panov, G.A. Sheveleva, A.S. Kharitonov, V.N. Romannikov and L.A. Vostrikova: Appl. Catal. A: Gen. Vol. 82 (1992), p.31

Google Scholar

[4] A. Ribera, I.W.C.E. Arends, S. de Vries, J. Pérez-Ramírez and R.A. Sheldon: J. Catal. Vol. 195 (2000), p.287

Google Scholar

[5] F. Zhang, X. Chen, J. Zhuang, Q. Xiao, Y. Zhong and W. Zhu: Catalysis Science & Technology Vol. 1 (2011), p.1250

Google Scholar

[6] J. Perez-Ramirez, F. Kapteijn, J.C. Groen, A. Domenech, G. Mul and J.A. Moulijn: J. Catal. Vol. 214 (2003), p.33

Google Scholar

[7] G. Centi, S. Perathoner, F. Vazzana, M. Marella, M. Tomaselli and M. Mantegazza: Adv. Environ. Res. Vol. 4 (2000), p.325

Google Scholar

[8] K. Sun, H. Xia, Z. Feng, R. van Santen, E. Hensen and C. Li: J. Catal. Vol. 254 (2008), p.383

Google Scholar

[9] A.J.H.P. van der Pol and J.H.C. van Hooff: Appl. Catal. A: Gen. Vol. 92 (1992), p.93

Google Scholar

[10] G.I. Panov, V.I. Sobolev and A.S. Kharitonov: J. Mol. Catal. Vol. 61 (1990), p.85

Google Scholar

[11] V.I. Sobolev, A.S. Kharitonov, Y.A. Paukshtis and G.I. Panov: J. Mol. Catal. Vol. 84 (1993), p.117

Google Scholar

[12] J. Pérez-Ramírez, F. Kapteijn, G. Mul and J.A. Moulijn: Catal. Commun. Vol. 3 (2002), p.19

Google Scholar

[13] I. Yuranov, D.A. Bulushev, A. Renken and L. Kiwi-Minsker: J. Catal. Vol. 227 (2004), p.138

Google Scholar

[14] A. Ates and A. Reitzmann: Chem. Eng. J. Vol. 134 (2007), p.218

Google Scholar

[15] M. Rivallan, G. Ricchiardi, S. Bordiga and A. Zecchina: J. Catal. Vol. 264 (2009), p.104

Google Scholar

[16] F.M. Zhang, X. Chen, J. Zhuang, Q. Xiao, Y.J. Zhong and W.D. Zhu,: Catal. Sci. Technol. Vol. 1 (2011), p.1250.

Google Scholar

[17] J. Perez-Ramirez, C.H. Christensen, K. Egeblad, C.H. Christensen and J.C. Groen: Chem. Soc. Rev. Vol. 37 (2008), p.2530

Google Scholar

[18] A. Corma: Chem. Rev. Vol. 97 (1997), p.2373

Google Scholar

[19] B. Louis, F. Ocampo, H.S. Yun, J.P. Tessonnier and M.M. Pereira: Chem. Eng. J. Vol. 161 (2010), p.397

Google Scholar

[20] R. Chal, C. Gerardin, M. Bulut and S. van Donk: ChemCatChem Vol. 3 (2010), p.67

Google Scholar

[21] M.S. Holm, E. Taarning, K. Egeblad and C.H. Christensen: Catal. Today Vol. 168 (2011), p.3

Google Scholar

[22] D.P. Serrano, J. Aguado, J.M. Escola, J.M. Rodriguez and A. Peral: Chem. Mater. Vol. 18 (2006), p.2462

Google Scholar

[23] D.P. Serrano, J. Aguado, G. Morales, J.M. Rodriguez, A. Peral, M. Thommes, J.D. Epping and B.F. Chmelka: Chemistry of Materials Vol. 21 (2009), p.641

Google Scholar