[1] R.M. Li, S.Y. Xing, S.A. Zhang, M.H. Han, Effect of surface silicon modification of H-beta zeolites for alkylation of benzene with 1-dodecene, RSC Adv. 10(17)(2020)10006-10016. [2] J.J. Wang, Y.Y. Chuang, H.Y. Hsu, T.C. Tsai, Toward industrial catalysis of zeolite for linear alkylbenzene synthesis:A mini review, Catal. Today 298(2017)109-116. [3] A. Aitani, J.B. Wang, I. Wang, S. Al-Khattaf, T.C. Tsai, Environmental benign catalysis for linear alkylbenzene synthesis:A review, Catal. Surv. Asia 18(1)(2014)1-12. [4] G. Zahedi, H. Yaqubi, M. Ba-Shammakh, Dynamic modeling and simulation of heavy paraffin dehydrogenation reactor for selective olefin production in linear alkyl benzene production plant, Appl. Catal. A 358(1)(2009)1-6. [5] M.H. Han, Z. Cui, C. Xu, W. Chen, Y. Jin, Synthesis of linear alkylbenzene catalyzed by Hb-zeolite, Appl. Catal. A 238(1)(2003)99-107. [6] T.C. Tsai, I. Wang, S.J. Li, J.Y. Liu, Development of a green LAB process:Alkylation of benzene with 1-dodecene over mordenite, Green Chem. 5(4)(2003)404-409. [7] J.G. Ma, B.J. Boyd, C.J. Drummond, Positional isomers of linear sodium dodecyl benzene sulfonate:Solubility, self-assembly, and air/water interfacial activity, Langmuir 22(21)(2006)8646-8654. [8] J.L.G. de Almeida, M. Dufaux, Y. Ben Taarit, C. Naccache, Linear alkylbenzene, J. Am. Oil Chem. Soc. 71(7)(1994)675-694. [9] J.A. Kocal, B.V. Vora, T. Imai, Production of linear alkylbenzenes, Appl. Catal. A 221(1-2)(2001)295-301. [10] S. Sivasanker, A. Thangaraj, Distribution of isomers in the alkylation of benzene with long-chain olefins over solid acid catalysts, J. Catal. 138(1)(1992)386-390. [11] C. Perego, P. Ingallina, Recent advances in the industrial alkylation of aromatics:New catalysts and new processes, Catal. Today 73(1-2)(2002)3-22. [12] C. DeCastro, E. Sauvage, M.H. Valkenberg, W.F. Holderich, Immobilised ionicliquids as lewis acid catalysts for the alkylation of aromatic compounds with dodecene, J. Catal. 196(1)(2000)86-94. [13] G.P. Qi, F. Jiang, X.W. Sun, S.Q. Zhao, Alkylation mechanism of benzene with 1-dodecene catalyzed by Et3NHCl-AlCl3, Sci. China Chem. 53(5)(2010)1102-1107. [14] H.L. Xin, Q. Wu, M.H. Han, D.Z. Wang, Y. Jin, Alkylation of benzene with 1-dodecene in ionic liquids[Rmim]+Al2Cl6X-(R=butyl, octyl and dodecyl; X=chlorine, bromine and iodine), Appl. Catal. A 292(2005)354-361. [15] H.O. Zhu, X.Q. Ren, J. Wang, A comparative study of the catalytic behavior of SBA-15 supported heteropoly acid H3PW12O40 and H-Y catalysts in the alkylation of benzene with 1-dodecene, React. Kinet. Catal. Lett. 83(1)(2004)19-24. [16] J.C. Zhang, B.H. Chen, C.Y. Li, Z.G. Zhu, L.Y. Wen, E.Z. Min, Kinetics of benzene alkylation with 1-dodecene over a supported tungstophosphoric acid catalyst, Appl. Catal. A 249(1)(2003)27-34. [17] J.C. Zhang, Z.G. Zhu, C.Y. Li, L.Y. Wen, E.Z. Min, Characterization and kinetic investigation of tungstophosphoric supported on SiO2 for alkylation of benzene with 1-dodecene to synthesize linear alkylbenzene, J. Mol. Catal. 198(1-2)(2003)359-367. [18] M.A. Harmer, Q. Sun, Solid acid catalysis using ion-exchange resins, Appl. Catal. A 221(1-2)(2001)45-62. [19] J.H. Clark, G.L. Monks, D.J. Nightingale, P.M. Price, J.F. White, A new solid acidbased route to linear alkylbenzenes, J. Catal. 193(2)(2000)348-350. [20] F. Zarkesh, F. Farzaneh, A.M. Ghandi, Metal ions exchanged montmorillonite as catalyst for alkylation of benzene with 1-dodecene, React. Kinet. Catal. Lett. 89(2)(2006)247-252. [21] B.Y. Liu, Z.T. Liao, Y. Wu, C.H. Ding, F.S. Butt, Y. Huang, J.X. Dong, Efficient production of linear alkylbenzene by liquid alkylation between benzene and 1-dodecene over MWW zeolites, Mol. Catal. 531(2022)112642. [22] X.D. Yuan, J.N. Park, J. Wang, C.W. Lee, S.E. Park, Alkylation of benzene with 1-dodecene over usy zeolite catalyst:Effect of pretreatment and reaction conditions, Korean J. Chem. Eng. 19(4)(2002)607-610. [23] W. Aslam, M.A.B. Siddiqui, B. Rabindran Jermy, A. Aitani, J. Cejka, S. Al-Khattaf, Selective synthesis of linear alkylbenzene by alkylation of benzene with 1-dodecene over desilicated zeolites, Catal. Today 227(2014)187-197. [24] S.Y. Xing, T.F. Wang, M.H. Han, Effect of different frameworks on the zeolite catalyzed alkylation of benzene with 1-dodecene, Mol. Catal. 531(2022)112644. [25] J.S. Lin, J.J. Wang, J. Wang, I. Wang, R.J. Balasamy, A. Aitani, S. Al-Khattaf, T.C. Tsai, Catalysis of alkaline-modified mordenite for benzene alkylation of diolefin-containing dodecene for linear alkylbenzene synthesis, J. Catal. 300(2013)81-90. [26] M. Horn acek, P. Hudec, A. Smieskova, T. Jakubík, Alkylation of benzene with 1-alkenes over beta zeolite in liquid phase, React. Kinet. Mech. Catal. 99(2)(2010)431-437. [27] M. Horna cek, P. Hudec, A. Nociar, A. Smieskov a, T. Jakubík, Activity and regenerability of dealuminated zeolite Y in liquid phase alkylation of benzene with 1-alkene, Chem. Pap. 64(4)(2010)469-474. [28] Y. Cao, Alkylation of benzene with dodecene. The activity and selectivity of zeolite type catalysts as a function of the porous structure, Appl. Catal. A 184(2)(1999)231-238. [29] B. Thomas, S. Sugunan, Alkylation of benzene with 1-octene over rare earth exchanged HFAU-Y zeolites, React. Kinet. Catal. Lett. 85(1)(2005)29-36. [30] Z.K. Zhao, W.H. Qiao, G.R. Wang, Z.S. Li, L. Cheng, Alkylation of a-methylnaphthalene with long-chain olefins catalyzed by rare earth lanthanum modified HY zeolite, J. Mol. Catal. 250(1-2)(2006)50-56. [31] N. Wang, Q.M. Sun, R.S. Bai, X. Li, G.Q. Guo, J.H. Yu, In situ confinement of ultrasmall Pd clusters within nanosized silicalite-1 zeolite for highly efficient catalysis of hydrogen generation, J. Am. Chem. Soc. 138(24)(2016)7484-7487. [32] Q.M. Sun, N. Wang, Q.M. Bing, R. Si, J.Y. Liu, R.S. Bai, P. Zhang, M.J. Jia, J.H. Yu, Subnanometric hybrid Pd-M (OH)2, M=Ni, Co, clusters in zeolites as highly efficient nanocatalysts for hydrogen generation, Chem 3(3)(2017)477-493. [33] H. Wang, L.A. Wang, F.S. Xiao, Metal@zeolite hybrid materials for catalysis, ACS Cent. Sci. 6(10)(2020)1685-1697. [34] W.L. Han, Z.C. Tang, P. Zhang, G.X. Lu, Study of one step synthesis of rare earth zeolite (ln-ZSM-5) and application for low temperature CO catalytic oxidation, Catal. Surv. Asia 17(3)(2013)147-155. [35] E. Beche, P. Charvin, D. Perarnau, S. Abanades, G. Flamant, Ce 3d XPS inves-^tigation of cerium oxides and mixed cerium oxide (CexTiyOz), Surf. Interface Anal. 40(2008)264-267, 2008. [36] Z.J. Wu, S. Goel, M. Choi, E. Iglesia, Hydrothermal synthesis of LTAencapsulated metal clusters and consequences for catalyst stability, reactivity, and selectivity, J. Catal. 311(2014)458-468. [37] W.M. Hao, W.M. Zhang, Z.B. Guo, J.H. Ma, R.F. Li, Mesoporous beta zeolite catalysts for benzylation of naphthalene:Effect of pore structure and acidity, Catalysts 8(11)(2018)504. [38] J. Fahy, D.L. Trimm, D.J. Cookson, Four component catalysis for the hydroalkylation of benzene to cyclohexyl benzene, Appl. Catal. A 211(2)(2001)259-268. [39] S. Inagaki, K. Kamino, E. Kikuchi, M. Matsukata, Shape selectivity of MWWtype aluminosilicate zeolites in the alkylation of toluene with methanol, Appl. Catal. A 318(2007)22-27. [40] J. Pérez-Ramírez, J.C. Groen, A. Brückner, M.S. Kumar, U. Bentrup, M.N. Deb-bagh, L.A. Villaescusa, Evolution of isomorphously substituted iron zeolites during activation:Comparison of Fe-beta and Fe-ZSM-5, J. Catal. 232(2)(2005)318-334. [41] R.A. García-Muñoz, D.P. Serrano, G. Vicente, M. Linares, D. Vitvarova, J.~Cejka, Remarkable catalytic properties of hierarchical zeolite-Beta in epoxide rearrangement reactions, Catal. Today 243(2015)141-152. [42] X.F. Zhang, R.J. Wang, X.X. Yang, Effect of alkaline treatment on pore structure and acidity of HZSM-5 in the synthesis of ethyl mercaptan, Catal. Commun. 60(2015)32-36. [43] K. Góra-Marek, K. Tarach, M. Choi, 2, 6-di-tert-butylpyridine sorption approach to quantify the external acidity in hierarchical zeolites, J. Phys. Chem. C 118(23)(2014)12266-12274. [44] J.J. Huang, B.Y. Liu, Z.T. Liao, H.Y. Chen, K. Yan, Fabrication of Cu-encapsulated hierarchical MEL zeolites for alkylation of mesitylene with benzyl alcohol, Ind. Eng. Chem. Res. 58(36)(2019)16636-16644. [45] V. Pashkova, P. Klein, J. Dedecek, V. Tokarov a, B. Wichterlov a, Incorporation of Al at ZSM-5 hydrothermal synthesis. Tuning of Al pairs in the framework, Microporous Mesoporous Mater. 202(2015)138-146. [46] J. Dedecek, V. Balgova, V. Pashkova, P. Klein, B. Wichterlov a, Synthesis of ZSM-5 zeolites with defined distribution of Al atoms in the framework and multinuclear MAS NMR analysis of the control of Al distribution, Chem. Mater. 24(16)(2012)3231-3239. [47] Y.Y. Ji, C.Y. Wang, Y.C. Zou, J.W. Song, J.Y. Wang, F. Li, F.S. Xiao, Design and synthesis of microporous and micro/mesoporous silica materials with excellent adsorption properties via self-assembly of silica species with tetraethyl ammonium in acidic aqueous media, J. Phys. Chem. C 112(49)(2008)19367-19371. [48] M. Hunger, Brønsted acid sites in zeolites characterized by multinuclear solidstate NMR spectroscopy, Catal. Rev. 39(4)(1997)345-393. [49] R.R. Pinto, P. Borges, M.A.N.D.A. Lemos, F. Lemos, J.C. Vedrine, E.G. Der-ouane, F.R. Ribeiro, Correlating NH3-TPD and 1H MAS NMR measurements of zeolite acidity:Proposal of an acidity scale, Appl. Catal. A 284(1-2)(2005)39-46. [50] Z.M. Yan, D. Ma, J.Q. Zhuang, X.C. Liu, X.M. Liu, X.W. Han, X.H. Bao, F.X. Chang, L. Xu, Z.M. Liu, On the acid-dealumination of USY zeolite:A solid state NMR investigation, J. Mol. Catal. 194(1-2)(2003)153-167. [51] M. Müller, G. Harvey, R. Prins, Comparison of the dealumination of zeolites beta, mordenite, ZSM-5 and ferrierite by thermal treatment, leaching with oxalic acid and treatment with SiCl4 by 1H, 29Si and 27Al MAS NMR, Microporous Mesoporous Mater. 34(2)(2000)135-147. [52] E.G. Derouane, J.C. Vedrine, R.R. Pinto, P.M. Borges, L. Costa, M.A.N.D.A. Lemos, F. Lemos, F.R. Ribeiro, The acidity of zeolites:Concepts, measurements and relation to catalysis:A review on experimental and theoretical methods for the study of zeolite acidity, Catal. Rev. 55(4)(2013)454-515. [53] I. Fechete, A. Simon-Masseron, E. Dumitriu, D. Lutic, P. Caullet, H. Kessler, The role of acidity of CeHeEMTetype zeolite for catalyzing toluene alkylation with methanol to xylenes, Rev. Roum. Chim. 53(2008)55-61. [54] L.H. Duan, Z.L. Sun, D.S. Liu, Z.H. Dai, X.Q. Li, L.J. Song, Adsorption and diffusion of thiophene, benzene, n-octane, and 1-octene on FAU zeolites, Stud. Surf. Sci. Catal. 170(2007)910-917. [55] L.H. Duan, X.H. Gao, X.H. Meng, H.T. Zhang, Q.A. Wang, Y.C. Qin, X.T. Zhang, L.J. Song, Adsorption, co-adsorption, and reactions of sulfur compounds, aromatics, olefins over Ce-exchanged Y zeolite, J. Phys. Chem. C 116(49)(2012)25748-25756. [56] H.G. Wang, L.J. Song, H. Jiang, J. Xu, L.L. Jin, X.T. Zhang, Z.L. Sun, Effects of olefin on adsorptive desulfurization of gasoline over Ce (IV) Y zeolites, Fuel Process. Technol. 90(6)(2009)835-838. [57] I. Craciun, M.F. Reyniers, G.B. Marin, Liquid-phase alkylation of benzene with octenes over Y zeolites:Kinetic modeling including acidity descriptors, J. Catal. 294(2012)136-150. [58] V.R. Choudhary, S.K. Jana, Benzylation of benzene and substituted benzenes by benzyl chloride over InCl3, GaCl3, FeCl3 and ZnCl2 supported on clays and SiMCM-41, J. Mol. Catal. 180(1-2)(2002)267-276. |