[1] P. Zhang, J. Ran, Z. Zhang, X. Du, W. Qi, J. Niu, Investigation on the effect of water vapor on the catalytic combustion of methane on platinum, Pet. Sci. Technol. 36(2018) 494-499.[2] Q. Meng, B. Liu, J. Piao, Q. Liu, Synthesis of the composite material Y/ASA and its catalytic performance for the cracking of n-decane, J. Catal. 290(2012) 55-64.[3] H. Li, Z.E. Zhang, Z.J. Liu, Application of artificial neural networks for catalysis:A review, Catalysts 7(2017) 306.[4] C.M. Gong, H.B. Ning, J.Q. Xu, Z.R. Li, Q. Zhu, X.Y. Li, Experimental and modeling study of thermal and catalytic cracking of n-decane, J. Anal. Appl. Pyrolysis 110(2014) 463-469.[5] J.A. Wang, L.F. Chen, L.E. Norena, J. Navarrete, M.E. Llanos, J.L. Contreras, O. Novaro, Mesoporous structure, surface acidity and catalytic properties of Pt/Zr-MCM-41 catalysts promoted with 12-tungstophosphoric acid, Microporous Mesoporous Mater. 112(2008) 61-76.[6] T. Hamoule, M.H. Peyrovi, M. Rashidzadeh, M.R. Toosi, Catalytic reforming of nheptane over Pt/Al-HMS catalysts, Catal. Commun. 16(2011234-239.[7] K. Fujimoto, K. Aimoto, I. Nakamura, A. Zhang, Isomerization of n-pentane and other light hydrocarbons on hybrid catalyst, Ind. Eng. Chem. Res. 34(1995) 1074-1080.[8] G.S. Mishra, K. Machado, A. Kumar, Highly selective n -alkanes oxidation to ketones with molecular oxygen catalyzed by SBA-15 supported rhenium catalysts, J. Ind. Eng. Chem. 20(20142228-2235.[9] S. Hajimirzaee, A.S. Mehr, M. Ghavipour, M. Vatankhah, R.M. Behbahani, Effect of metal loading on catalytic activity and selectivity of ZSM-5 zeolite catalyst in conversion of methanol to olefins and aromatics, Liq. Fuels Technol. 35(2016279-286.[10] H.E. Kluksdahl. Reforming a sulfur-free naphtha with a platinum-rhenium catalyst. US Patent. (1968) 3-415-737.[11] R.L. Jacobson, H.E. Kluksdahl, C.S. Coy, R.W. Davis, Microstructures of bimetallic clusters:Bond order metal simulator for disordered alloys, J. Catal. 49(1969) 400-407.[12] W.J. Qi, J.Y. Ran, Z. Zhang, J.T. Niu, P. Zhang, L.J. Fu, B. Hu, Q.L. Li, Methane combustion reactivity during the metal → metallic oxide transformation of Pd-Pt catalysts:Effect of oxygen pressure, Appl. Surf. Sci. 435(2018) 776-785.[13] W.M.H. Sachtler, Selectivity and rate of activity decline of bimetallic catalysts:The viscosity of concentrated suspensions and solutions, Catal. Rev. Sci. Eng. 14(1976) 1-12.[14] J.H. Balakrishnan, K. Krishnan, J. Schwank, A chemisorption and XPS study of bimetallic Pt-Sn/Al2O3 catalysts, J. Catal. 127(1991287-306.[15] V. Ponec, G.C. Bond, Reactions of alkanes and reforming of naphtha, Stud. Surf. Sci. Catal. 95(1995) 583-677.[16] J.P. Boitiaux, J.M. Deves, B. Didillon, C.R. Marcilly, Catalyst prepartion, Chem. Ind, Vol. 10, Marcel Dekker, New York 1994, p. 79.[17] M.H. Peyrovi, T. Hamoule, B. Sabour, M. Rashidzadeh, Synthesis, characterization and catalytic application of bi-and trimetallic Al-HMS supported catalysts in hydroconversion of n-heptane, J. Ind. Eng. Chem. 18(2012) 986-992.[18] Z. Alothman, A review:Fundamental aspects of silicate mesoporous materials, Materials 5(20152874-2902.[19] T. Tanev, T.J. Pinnavaia, A neutral templating route to mesoporous molecular sieves, Science 267(1995) 865-867.[20] T. Chiranjeevi, P. Kumar, M. Rana, G. Dhar, T.S. Prasada Rao, Physico-chemical characterization and catalysis on mesoporous Al-HMS supported molybdenum hydrotreating catalysts, J. Mol. Catal. A Chem. 181(2002) 109-117.[21] H. Jin, X. Yi, S. Sun, J. Liu, G. Yang, H. Zhu, W. Fang, Hydrocracking of n-decane over non-sulfided Ni-CsxH3-xPW12O40/Al2O3 catalysts, Fuel Process. Technol. 97(2012) 52-59.[22] B. Qiu, X. Yi, L. Lin, W. Fang, H. Wan, The hydrocracking of n-decane over bifunctional Ni-H3PW12O40/SiO2 catalysts, Catal. Today 131(2008) 464-471.[23] M. Roussel, J. Lemberton, M. Guisnet, T. Cseri, E. Benazzi, Mechanisms of n-decane hydrocracking on a sulfided NiW on silica-alumina catalyst, J. Catal. 218(2003) 427-437.[24] S.Z. Abghari, A. Alizadehdakhel, R.S. Mohaddecy, Experimental and modeling study of a catalytic reforming unit, J. Taiwan Inst. Chem. Eng. 4(2014) 1411-1420.[25] W. Han, C. Yao, Research on high cetane and high octane number fuels and the mechanism for their common oxidation and auto-ignition, Fuel 15(201529-40.[26] C.F. Yan, W. Ye, C.Q. Guo, S.L. Huang, W.B. Li, W.M. Luo, Numerical simulation and experimental study of hydrogen production from dimethyl ether steam reforming in a micro-reactor, Int. J. Hydrog. Energy 32(2014) 18642-18649.[27] B. Sabour, M.H. Peyrovi, T. Hamoule, M. Rashidzadeh, Catalytic dehydration of methanol to dimethyl ether (DME) over Al-HMS catalysts, J. Ind. Eng. Chem. 1(2013222-227.[28] M. Abdi-Khanghah, R.M. Behbahani, T. Hamoule, A. Baghban, Kinetic modeling and laboratory investigation of catalytic toluene methylation to para-xylene, Pet. Sci. Technol. 35(2017) 1866-1872.[29] Y. Yan, Z. Zhang, L. Zhang, X. Wang, K. Liu, Z. Yang, Investigation of autothermal reforming of methane for hydrogen production in a spiral multi-cylinder microreactor used for mobile fuel cell, Int. J. Hydrog. Energy 40(2015) 1886-1893.[30] Y. Yan, H. Yan, L. Zhang, L. Li, J. Zhu, Z. Zhang, Numerical investigation on combustion characteristics of methane/air in a micro-combustor with a regular triangular pyramid bluff body, Int. J. Hydrog. Energy 43(2018) 7570-7581. |