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Original Articles

Crucial Role of Weak Acid Sites for Catalytic Performance of Zeolites in Ethyl tert-butyl Ether Synthesis

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References

  • Anilkumar, M., and Hoelderich, W. F. (2012). Gas phase Beckmann rearrangement of cyclohexanone oxime to ϵ-caprolactam over mesoporous, microporous and amorphous Nb2O5/silica catalysts: A comparative study, Catal. Today, 198, 289–299.
  • Auroux, A. (1997). Acidity characterization by microcalorimetry and relationship with reactivity, Topics Catal., 4, 71–89.
  • Busca, G. (2007). Acid catalysts in industrial hydrocarbon chemistry, Chem. Rev., 107, 5366–5410.
  • Busca, G., Bevilacqua, M., Armaroli, T., and Trombetta, M. (2002). FT-IR studies of internal, external and extraframework sites of FER, MFI, BEA and MOR type protonic zeolite materials, Stud. Surf. Sci. Catal., 142A, 975–982.
  • Collignon, F., and Poncelet, G. (2001). Comparative vapor phase synthesis of ETBE from ethanol and isobutene over different acid zeolites, J. Catal., 202, 68–77.
  • Dartt, C. B., and Davis, M. E. (1994). Applications of zeolites to fine chemicals synthesis, Catal. Today, 19, 151–186.
  • Farneth, W. E., and Gorte, R. J. (1995). Methods for characterizing zeolite acidity, Chem. Rev., 95, 615–635.
  • Follmann, S., and Ernst, S. (2016). Influence of the pore architecture on the selective conversion of ethene to propene and butenes over medium pore zeolites, New J. Chem., 40, 4414–4419.
  • Gervasini, A., Carniti, P., and Auroux, A. (2005). Surface acidity of catalytic solids studied by base desorption: experimental and modelling approaches, Thermochim. Acta, 434, 42–49.
  • Kapustin, G. I., and Brueva, T. R. (2001). A simple method for determination of heats of ammonia adsorption on catalysts from thermodesorption data, Thermochim. Acta, 379, 71–75.
  • Kapustin, G. I., Brueva, T. R., Kutateladze, G. M., and Klyachko, A. M. (1987). Comparison of thermodesorption and calorimetric methods of investigation of acidity of zeolites, Kinet. Catal., 28, 759–762.
  • Katada, N., and Niwa, M. (2004). Analysis of acidic properties of zeolitic and non-zeolitic solid acid catalysts using temperature-programmed desorption of ammonia, Catal. Surv. Asia, 8, 161–170.
  • Katada, N., Suzuki, K., Noda, T., Miyatani, W., Taniguchi, F., and Niwa, M. (2010). Correlation of the cracking activity with solid acidity and adsorption property on zeolites, Appl. Catal. A: Gen., 373, 208–213.
  • Kondo, J. N., Yoda, E., Ishikawa, H., Wakabayashi, F., and Domen, K. (2000). Acid property of silanol groups on zeolites assessed by reaction probe IR study, J. Catal., 191, 275–281.
  • Liu, Z. H., Dong, X., Zhu, Y., Emwas, A.-H., Zhang, D., Tian, Q., and Han, Y. (2015). Investigating the influence of mesoporosity in zeolite beta on its catalytic performance for the conversion of methanol to hydrocarbons, ACS Catal., 5, 5837–5845.
  • Martínez, C., and Corma, A. (2011). Inorganic molecular sieves: Preparation, modification and industrial application in catalytic processes, Coord. Chem. Rev., 255, 1558–1580.
  • Niwa, M., and Katada, N. (1997). Measurements of acidic property of zeolites by temperature programmed desorption of ammonia, Catal. Surv. Jpn., 1, 215–226.
  • O’Sullivan, P., Forni, L., and Hodnett, B. K. (2001). The role of acid site strength in the Beckmann rearrangement, Ind. Eng. Chem. Res., 40, 1471–1475.
  • Oura, K., Lifshits, V. G., Saranin, A., Zotov, A. V., and Katayama, M. (2003). Surface Science, An Introduction, Springer, Berlin.
  • Parra, D., Izquierdo, J. F., Cunill, F., Tejero, J., Fite, C., Iborra, M., and Vila, M. (1998). Catalytic activity and deactivation of acidic ion-exchange resins in methyl tert-butyl ether liquid-phase synthesis, Ind. Eng. Chem. Res., 37, 3575–3581.
  • Patrylak, K. I., Bobonych, F. M., Voloshyna, Y. G., Levchuk, M. M., Il’in, V. G., Yakovenko, O. M., Manza, I. A., and Tsupryk, I. M. (1998). Ukrainian mordenite-clinoptilolite rocks as a base for linear hexane isomerization catalyst, Appl. Catal. A: Gen., 174, 187–198.
  • Pomonis, P. J., and Ladavos, A. K. (2002). Adsorption of Gases at Porous Solid Surfaces, Encyclopedia of Surface and Colloid Science, 1st ed. Marcel Dekker, New York.
  • Puziy, A. M., Matynia, T., Gawdzik, B., and Poddubnaya, O. I. (1999). Use of CONTIN for calculation of adsorption energy distribution, Langmuir, 15, 6016–6025.
  • Savitz, S., Siperstein, F., Gorte, R. J., and Myers, A. L. (1998). Calorimetric study of adsorption of alkanes in high-silica zeolites, J. Phys. Chem. B, 102, 6865–6872.
  • Shin, T., Rong, Y., Harmon, T., and Suffet, M. (2004). Evaluation of the impact of fuel hydrocarbons and oxygenates on groundwater resources, Environ. Sci. Technol., 38, 42–48.
  • Takahashi, T., Kai, T., and Nasution, M. N. A. (1995). Catalyst deactivation of high silica metallosilicates in Beckmann rearrangement of cyclohexanone oxime, Stud. Surf. Sci. Catal., 97, 431–436.
  • Tanabe, K., and Holderich, W. F. (1999). Industrial application of solid acid-base catalysts, Appl. Catal. A: Gen., 181, 399–434.
  • Vlasenko, N. V., and Kochkin, Y. N. (2006). Changes in the acidic properties of the zeolite H-ZSM-11 under the influence of hydrogen and water, Theoret. Experim. Chem., 42, 266–270.
  • Vlasenko, N. V., Kochkin, Y. N., and Puziy, A. M. (2006). Liquid phase synthesis of ethyl-tert-butyl ether: The relationship between acid, adsorption and catalytic properties of zeolite catalysts, J. Mol. Catal. A: Chem., 253, 192–197.
  • Vlasenko, N. V., Kochkin, Y. N., Shvets, A. V., and Kasian, N. V. (2008). Zeolite of beta structure – the perspective mineral catalysts of ethyl-tert-butyl synthesis, Kataliz v promyshlennosti, 27–32. (in Russian).
  • Westphal, G. A., Krahl, J., Bruning, T., Hallier, E., and Bunger, J. (2010). Ether oxygenate additives in gasoline reduce toxicity of exhausts, Toxicology, 268, 198–203.
  • Yang, B.-L., Yang, S.-B., and Yao, R. (2000). Synthesis of ethyl tert-butyl ether from tert-butyl alcohol and ethanol on strong acid cation-exchange resins, Reactive and Functional Polymers, 44, 167–175.
  • Yee, K. F., Mohamed, A. R., and Tan, S. H. (2013). A review on the evolution of ethyl tert-butyl ether (ETBE) and its future prospects, Renew. Sust. Energ. Rev., 22, 604–620.
  • Zhang, Y., Wang, Y., Bu, Y., Zh., M., Wu, W., Min, E., Han, S., and Fu, S. (2005). Beckmann rearrangement of cyclohexanone oxime over Hβ zeolite and Hβ zeolite-supported boride, Catal. Commun., 6, 53–56.

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