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Zeolite Catalysis

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Zeolite Catalysis ( zeolite-catalysis )

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27. Padró, C.L.; Rey, E.A.; Peña, L.G.; Apesteguía, C.R. Activity, selectivity and stability of Zn-exchanged NaY and ZSM5 zeolites for the synthesis of o-hydroxyacetophenone by phenol acylation. Microporous Mesoporous Mater. 2011, 143, 236–242. 28. Sad, M.E.; Padró, C.L.; Apesteguía, C.R. Selective synthesis of p-cresol by methylation of phenol. Appl. Catal. A 2008, 342, 40–48. 29. Sad, M.E.; Padró, C.L.; Apesteguía, C.R. Study of the phenol methylation mechanism on zeolites HBEA, HZSM5 and HMCM22. J. Mol. Catal. A 2010, 327, 63–72. 30. Alabi, W.; Atanda, L.; Jermy, R.; Al-Khattaf, S. Kinetics of toluene alkylation with methanol catalyzed by pure and hybridized HZSM-5 catalysts. Chem. Eng. J. 2012, 195, 276–288. 31. Crocellà, V.; Cerrato, G.; Magnacca, G.; Morterra, C.; Cavani, F.; Cocchi, S.; Passeri, S.; Scagliarini, D.; Flego, C.; Perego, C. The balance of acid, basic and redox sites in Mg/Me-mixed oxides: The effect on catalytic performance in the gas-phase alkylation of m-cresol with methanol. J. Catal. 2010, 270, 125–135. 32. Gevert, S.; Eriksson, M.; Eriksson, P.; Massoth, F. Direct hydrodeoxygenation and hydrogenation of 2, 6-and 3, 5-dimethylphenol over sulphided CoMo catalyst. Appl. Catal. A 1994, 117, 151–162. 33. Derrouiche, S.; Bianchi, D. Heats of Adsorption Using Temperature Programmed Adsorption Equilibrium: Application to the Adsorption of CO on Cu/Al2O3 and H2 on Pt/Al2O3. Langmuir 2004, 20, 4489–4497. 34. Odebunmi, E.O.; Ollis, D.F. Catalytic hydrodeoxygenation: I. Conversions of o-, p-, and m-cresols. J. Catal. 1983, 80, 56–64. 35. Massoth, F.; Politzer, P.; Concha, M.; Murray, J.; Jakowski, J.; Simons, J. Catalytic hydrodeoxygenation of methyl-substituted phenols: Correlations of kinetic parameters with molecular properties. J. Phys. Chem. B 2006, 110, 14283–14291. 36. Adebajo, M.O.; Howe, R.F.; Long, M.A. Methylation of benzene with methanol over zeolite catalysts in a low pressure flow reactor. Catal. Today 2000, 63, 471–478. 37. Young, L.; Butter, S.; Kaeding, W. Shape selective reactions with zeolite catalysts: III. Selectivity in xylene isomerization, toluene-methanol alkylation, and toluene disproportionation over ZSM-5 zeolite catalysts. J. Catal. 1982, 76, 418–432. 38. Baduraig, A.; Odedairo, T.; Al-Khattaf, S. Disproportionation and methylation of toluene with methanol over zeolite catalysts. Top. Catal. 2010, 53, 1446–1456. 39. Zhu, Z.; Chen, Q.; Xie, Z.; Yang, W.; Li, C. The roles of acidity and structure of zeolite for catalyzing toluene alkylation with methanol to xylene. Microporous Mesoporous Mater. 2006, 88, 16–21. 40. Conte, M.; Lopez-Sanchez, J.A.; He, Q.; Morgan, D.J.; Ryabenkova, Y.; Bartley, J.K.; Carley, A.F.; Taylor, S.H.; Kiely, C.J.; Khalid, K. Modified zeolite ZSM-5 for the methanol to aromatics reaction. Catal. Sci. Technol. 2012, 2, 105–112. 41. Nimmanwudipong, T.; Runnebaum, R.C.; Block, D.E.; Gates, B.C. Catalytic conversion of guaiacol catalyzed by platinum supported on alumina: Reaction network including hydrodeoxygenation reactions. Energy Fuels 2011, 25, 3417–3427. 223

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