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Zeolite Catalysis

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Zeolite Catalysis ( zeolite-catalysis )

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9. Idem, R.O.; Katikaneni, S.P.R.; Bakhshi, N.N. Catalytic conversion of canola oil to fuels and chemicals: Roles of catalyst acidity, basicity and shape selectivity on product distribution. Fuel Process. Technol. 1997, 51, 101–125. 10. Katikaneni, S.P.R.; Adjaye, J.D.; Bakhshi, N.N. Studies on the catalytic conversion of canola oil to hydrocarbons: influence of hybrid catalysts and steam. Energy Fuels 1995, 9, 599–609. 11. Katikaneni, S.P.R.; Adjaye, J.D.; Idem, R.O.; Bakhshi, N.N. Catalytic conversion of canola oil over potassium-impregnated HZSM-5 catalysts: C2–C4 olefin production and model reaction studies. Ind. Eng. Chem. Res. 1996, 35, 3332–3346. 12. Botas, J.A.; Serrano, D.P.; García, A.; Ramos, R. Catalytic conversion of rapeseed oil for the production of raw chemicals, fuels and carbon nanotubes over Ni-modified nanocrystalline and hierarchical ZSM-5. Appl. Catal. B 2014, 145, 205–215. 13. Vu, X.H.; Schneider, M.; Bentrup, U.; Dang, T.T.; Phan, B.M.Q.; Nguyen, D.A.; Armbruster, U.; Martin, A. Hierarchical ZSM-5 materials for an enhanced formation of gasoline-range hydrocarbons and light olefins in catalytic cracking of triglyceride-rich biomass. Ind. Eng. Chem. Res. 2015, 54, 1773–1782. 14. Vu, X.H.; Bentrup, U.; Hunger, M.; Kraehnert, R.; Armbruster, U.; Martin, A. Direct synthesis of nanosized-ZSM-5/SBA-15 analog composites from preformed ZSM-5 precursors for improved catalytic performance as cracking catalyst. J. Mater. Sci. 2014, 49, 5676–5689. 15. Wallenstein, D.; Seese, M.; Zhao, X. A novel selectivity test for the evaluation of FCC catalysts. Appl. Catal. A 2002, 231, 227–242. 16. Twaiq, F.A.; Zabidi, N.A.M.; Bhatia, S. Catalytic conversion of palm oil to hydrocarbons: performance of various zeolite catalysts. Ind. Eng. Chem. Res. 1999, 38, 3230–3237. 17. Melero, J.A.; Clavero, M.M.; Calleja, G.; Garcia, A.; Miravalles, R.; Galindo, T. Production of biofuels via the catalytic cracking of mixtures of crude vegetable oils and nonedible animal fats with vacuum gas oil. Energy Fuels 2010, 24, 707–717. 18. Tago, T.; Konno, H.; Nakasaka, Y.; Masuda, T. Size-controlled synthesis of nano-zeolites and their application to light olefin synthesis. Catal. Surv. Asia 2012, 16, 148–163. 19. Konno, H.; Tago, T.; Nakasaka, Y.; Ohnaka, R.; Nishimura, J.; Masuda, T. Effectiveness of nano-scale ZSM-5 zeolite and its deactivation mechanism on catalytic cracking of representative hydrocarbons of naphtha. Micropor. Mesopor. Mater. 2013, 175, 25–33. 20. Vu, X.H.; Eckelt, R.; Armbruster, U.; Martin, A. High-temperature synthesis of ordered mesoporous aluminosilicates from ZSM-5 nanoseeds with improved acidic properties. Nanomaterials 2014, 4, 712–725. 204

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