Chin.J.Chem.Eng. ›› 2018, Vol. 26 ›› Issue (10): 2070-2076.DOI: 10.1016/j.cjche.2018.03.030
• Catalysis, Kinetics and Reaction Engineering • Previous Articles Next Articles
Chuang Liu, Yihua Long, Zhengbao Wang
Received:
2018-02-05
Revised:
2018-03-25
Online:
2018-11-14
Published:
2018-10-28
Contact:
Zhengbao Wang,E-mail address:zbwang@zju.edu.cn
Supported by:
Supported by the National Natural Science Foundation of China (21676238).
Chuang Liu, Yihua Long, Zhengbao Wang
通讯作者:
Zhengbao Wang,E-mail address:zbwang@zju.edu.cn
基金资助:
Supported by the National Natural Science Foundation of China (21676238).
Chuang Liu, Yihua Long, Zhengbao Wang. Optimization of conditions for preparation of ZSM-5@silicalite-1 core-shell catalysts via hydrothermal synthesis[J]. Chin.J.Chem.Eng., 2018, 26(10): 2070-2076.
Chuang Liu, Yihua Long, Zhengbao Wang. Optimization of conditions for preparation of ZSM-5@silicalite-1 core-shell catalysts via hydrothermal synthesis[J]. Chinese Journal of Chemical Engineering, 2018, 26(10): 2070-2076.
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URL: https://cjche.cip.com.cn/EN/10.1016/j.cjche.2018.03.030
[1] W. Vermeiren, J.P. Gilson, Impact of zeolites on the petroleum and petrochemical industry, Top. Catal. 52(2009) 1131-1161.[2] H.A. Mohameed, B.A. Jdayil, K. Takrouri, Separation of para-xylene from xylene mixture via crystallization, Chem. Eng. Process. 46(2007) 25-36.[3] T.C. Tsai, S.B. Liu, I.K. Wang, Disproportionation and transalkylation of alkylbenzenes over zeolite catalysts, Appl. Catal. A Gen. 181(1999) 355-398.[4] Y.J. Ji, B. Zhang, L. Xu, H.H. Wu, H.G. Peng, L. Chen, Y.M. Liu, P. Wu, Core/shell-structured Al-MWW@B-MWW zeolites for shape-selective toluene disproportionation to paraxylene, J. Catal. 283(2011) 168-177.[5] L.Y. Fang, S.B. Liu, I. Wang, Enhanced para-selectivity by selective coking during toluene disproportionation over H-ZSM-5 zeolite, J. Catal. 185(1999) 33-42.[6] H. Teng, J. Wang, X.Q. Ren, D.M. Chen, Disproportionation of toluene by modified ZSM-5 zeolite catalysts with high shape-selectivity prepared using chemical liquid deposition with tetraethyl orthosilicate, Chin. J. Chem. Eng. 19(2011) 292-298.[7] I. Hill, A. Malek, A. Bhan, Kinetics and mechanism of benzene, toluene, and xylene methylation over H-MFI, ACS Catal. 3(2013) 1992-2001.[8] Z.H. Wen, D.Q. Yang, F. Yang, Z.H. Wei, X.D. Zhu, Methylation of toluene with methanol over HZSM-5:A periodic density functional theory investigation, Chin. J. Catal. 37(2016) 1882-1890.[9] Q. Ouyang, S.F. Yin, L. Chen, X.P. Zhou, C.T. Au, A new catalytic process for highefficiency synthesis of p-xylene by methylation of toluene with CH3Br, AIChE J. 59(2013) 532-540.[10] W. Alabi, L. Atanda, R. Jermy, S. Al-Khattaf, Kinetics of toluene alkylation with methanol catalyzed by pure and hybridized HZSM-5 catalysts, Chem. Eng. J. 195(2012) 276-288.[11] C.Y. Dai, A.F. Zhang, M. Liu, L. Gu, X.W. Guo, C.S. Song, Hollow alveolus-like nanovesicle assembly with metal-encapsulated hollow zeolite nanocrystals, ACS Nano 10(2016) 7401-7408.[12] K. Shen, W.Z. Qian, N. Wang, C. Su, F. Wei, Fabrication of c-axis oriented ZSM-5 hollow fibers based on an in situ solid-solid transformation mechanism, J. Am. Chem. Soc. 135(2013) 15322-15325.[13] Y. Peng, X.F. Lu, Z.B. Wang, Y.S. Yan, Fabrication of b-oriented MFI zeolite films under neutral conditions without the use of hydrogen fluoride, Angew. Chem. Int. Ed. 54(2015) 5709-5712.[14] X.F. Lu, Y. Peng, Z.B. Wang, Y.S. Yan, Rapid fabrication of highly b-oriented zeolite MFI thin films using ammonium salts as crystallization-mediating agents, Chem. Commun. 51(2015) 11076-11079.[15] A.G. Machoke, A.M. Beltran, A. Inayat, B. Winter, T. Weissenberger, N. Kruse, R. Guttel, E. Spiecker, W. Schwieger, Micro/macroporous system:MFI-type zeolite crystals with embedded macropores, Adv. Mater. 27(2015) 1066-1070.[16] N. Wang, W.Z. Qian, K. Shen, C. Su, F. Wei, Bayberry-like ZnO/MFI zeolite as high performance methanol-to-aromatics catalyst, Chem. Commun. 52(2016) 2011-2014.[17] D. Mitsuyoshi, K. Kuroiwa, Y. Kataoka, T. Nakagawa, M. Kosaka, K. Nakamura, S. Suganuma, Y. Araki, N. Katada, Shape selectivity in toluene disproportionation into para-xylene generated by chemical vapor deposition of tetramethoxysilane on MFI zeolite catalyst, Microporous Mesoporous Mater. 242(2017) 118-126.[18] J. Xie, L. Chen, W.H. Wang, P. Wang, C.T. Auab, S.F. Yin, Direct dual-template synthesis of HZSM-5 zeolite for enhanced p-xylene selectivity in toluene methylation with CH3Br, Catal. Sci. Technol. 7(2017) 1211-1216.[19] M. Miyamoto, T. Kamei, N. Nishiyama, Y. Egashira, K. Ueyama, Single crystals of ZSM-5/silicalite composites, Adv. Mater. 17(2005) 1985-1988.[20] D.V. Vu, M. Miyamoto, N. Nishiyama, Y. Egashira, K. Ueyama, Morphology control of silicalite/HZSM-5 composite catalysts for the formation of para-xylene, Catal. Lett. 127(2009) 233-238.[21] D. Van Vu, M. Miyamoto, N. Nishiyama, S. Ichikawa, Y. Egashira, K. Ueyama, Catalytic activities and structures of silicalite-1/H-ZSM-5 zeolite composites, Microporous Mesoporous Mater. 115(2008) 106-112.[22] D. Van Vu, M. Miyamoto, N. Nishiyama, Y. Egashira, K. Ueyama, Selective formation of para-xylene over H-ZSM-5 coated with polycrystalline silicalite crystals, J. Catal. 243(2006) 389-394.[23] M. Okamoto, Y. Osafune, MFI-type zeolite with a core-shell structure with minimal defects synthesized by crystal overgrowth of aluminum-free MFI-type zeolite on aluminum-containing zeolite and its catalytic performance, Microporous Mesoporous Mater. 143(2011) 413-418.[24] Y.Q. Deng, W.F. Zhou, H.M. Lv, Y.Y. Zhang, C.T. Au, S.F. Yin, Synthesis of HZSM-5@silicalite-1 core-shell composite and its catalytic application in the generation of p-xylene by methylation of toluene with methyl bromide, RSC Adv. 4(2014) 37296-37301.[25] J.Y. Zhang, X.L. Zhu, G.W. Wang, P.Z. Wang, Z. Meng, C.Y. Li, The origin of the activity and selectivity of silicalite-1 zeolite for toluene methylation to para-xylene, Chem. Eng. J. 327(2017) 278-285.[26] C.F. Wang, Q. Zhang, Y.F. Zhu, D.K. Zhang, J.Y. Chen, F.K. Chiang, p-Xylene selectivity enhancement in methanol toluene alkylation by separation of catalysis function and shape-selective function, Mol. Catal. 433(2017) 242-249.[27] Y.H. Yue, Y. Tang, Y. Liu, Z. Gao, Chemical liquid deposition zeolites with controlled pore-opening size and shape-selective separation of isomers, Ind. Eng. Chem. Res. 35(1996) 430-433.[28] Z.R. Zhu, Z.K. Xie, Q.L. Chen, D.J. Kong, W. Li, W.M. Yang, C. Li, Chemical liquid deposition with polysiloxane of ZSM-5 and its effect on acidity and catalytic properties, Microporous Mesoporous Mater. 101(2007) 169-175.[29] A.B. Halgeri, J. Das, Recent advances in selectivation of zeolites for para-disubstituted aromatics, Catal. Today 73(2002) 65-73.[30] J.H. Ahn, R. Kolvenbach, S.S. Al-Khattaf, A. Jentys, J.A. Lercher, Enhancing shape selectivity without loss of activity-novel mesostructured ZSM5 catalysts for methylation of toluene to p-xylene, Chem. Commun. 49(2013) 10584-10586.[31] R.W. Weber, K.P. Moller, M. Unger, C.T. O'Connor, The chemical vapour and liquid deposition of tetraethoxysilane on the external surface of ZSM-5, Microporous Mesoporous Mater. 23(1998) 179-187.[32] J.H. Ahn, R. Kolvenbach, C. Neudeck, S.S. Al-Khattaf, A. Jentys, J.A. Lercher, Tailoring mesoscopically structured H-ZSM5 zeolites for toluene methylation, J. Catal. 311(2014) 271-280.[33] P. Lu, Z.Y. Fei, L. Li, X.Z. Feng, W.J. Ji, W.P. Ding, Y. Chen, W.M. Yang, Z.K. Xie, Effects of controlled SiO2 deposition and phosphorus and nickel doping on surface acidity and diffusivity of medium and small sized HZSM-5 for para-selective alkylation of toluene by methanol, Appl. Catal. A Gen. 453(2013) 302-309.[34] Y.R. Wang, M. Liu, A.F. Zhang, Y. Zuo, F.S. Ding, Y. Chang, C.S. Song, X.W. Guo, Methanol usage in toluene methylation over Pt modified ZSM-5 catalyst:Effects of total pressure and carrier gas, Ind. Eng. Chem. Res. 56(2017) 4709-4717.[35] F. Yaripour, Z. Shariatinia, S. Sahebdelfar, A. Irandoukht, Effect of boron incorporation on the structure, products selectivities and lifetime of H-ZSM-5 nanocatalyst designed for application in methanol-to-olefins (MTO) reaction, Microporous Mesoporous Mater. 203(2015) 41-53.[36] J.Breen,R.Burch,M.Kulkarni,P.Collier,S.Golunski,Enhancedpara-xyleneselectivityin the toluene alkylation reaction at ultralow contact time, J. Am. Chem. Soc. 127(2005) 5020-5021.[37] Y. Zhao, W. Tan, H.Y. Wu, A.F. Zhang, M. Liu, G.M. Li, X.S. Wang, C.S. Song, X.W. Guo, Effect of Pt on stability of nano-scale ZSM-5 catalyst for toluene alkylation with methanol into p-xylene, Catal. Today 160(2011) 179-183.[38] A.K. Aboul-Gheit, A.A. Aboul-Enein, A.E. Awadallah, S.A. Ghoneim, E.A. Emam, Paraxylene maximization part VⅢ:Promotion of H-ZSM-5 zeolite by Pt and HF doping for use as catalysts in toluene alkylation with methanol, Chin. J. Catal. 31(2010) 1209-1216.[39] H.Y. Wu, M. Liu, W. Tan, K.K. Hou, A.F. Zhang, Y.R. Wang, X.W. Guo, Effect of ZSM-5 zeolite morphology on the catalytic performance of the alkylation of toluene with methanol, J. Energy Chem. 23(2014) 491-497.[40] W. Tan, M. Liu, Y. Zhao, K.K. Hou, H.Y. Wu, A.F. Zhang, H. Liu, Y.R. Wang, C.S. Song, X.W. Guo, Para-selective methylation of toluene with methanol over nano-sized ZSM-5 catalysts:Synergistic effects of surface modifications with SiO2, P2O5 and MgO, Microporous Mesoporous Mater. 196(2014) 18-30.[41] Y. Zhao, H.Y. Wu, W. Tan, M.M. Zhang, M. Liu, C.S. Song, X.S. Wang, X.W. Guo, Effect of metal modification of HZSM-5 on catalyst stability in the shape-selective methylation of toluene, Catal. Today 156(2010) 69-73.[42] H.L. Janardhan, G.V. Shanbhag, A.B. Halgeri, Shape-selective catalysis by phosphate modified ZSM-5:Generation of new acid sites with pore narrowing, Appl. Catal. A Gen. 471(2014) 12-18.[43] A.N. Xu, H.F. Ma, H.T. Zhang, W.Y. Ying, D.Y. Fang, Effect of boron on ZSM-5 catalyst for methanol to propylene conversion, Pol. J. Chem. Technol. 15(2013) 95-101.[44] J. Zhou, Y.D. Wang, W. Zou, C.M. Wang, L.Y. Li, Z.C. Liu, A.M. Zheng, D.J. Kong, W.M. Yang, Z.K. Xie, Mass transfer advantage of hierarchical zeolites promotes methanol converting into para-methyl group in toluene methylation, Ind. Eng. Chem. Res. 56(2017) 9310-9321.[45] J.H. Li, H. Xiang, M. Liu, Q.L. Wang, Z.R. Zhu, Z.H. Hu, The deactivation mechanism of two typical shape-selective HZSM-5 catalysts for alkylation of toluene with methanol, Catal. Sci. Technol. 4(2014) 2639-2649.[46] J. Cejka, N. Zilkova, B. Wichterlova, G. EderMirth, J.A. Lercher, Decisive role of transport rate of products for zeolite para-selectivity:Effect of coke deposition and external surface silylation on activity and selectivity of HZSM-5 in alkylation of toluene, Zeolites 17(1996) 265-271.[47] T. Yashima, Y. Sakaguchi, S. Namba, Selective formation of p-xylene by alkylation of toluene with methanol on ZSM-5 type zeolites, Stud. Surf. Sci. Catal. 7(1981) 739-751.[48] C.S. Lee, T.J. Park, W.Y. Lee, Alkylation of toluene over double structure ZSM-5 type catalysts covered with a silicalite shell, Appl. Catal. A Gen. 96(1993) 151-161.[49] N. Nishiyama, M. Miyamoto, Y. Egashira, K. Ueyama, Zeolite membrane on catalyst particles for selective formation of p-xylene in the disproportionation of toluene, Chem. Commun. 18(2001) 1746-1747.[50] A. Ghorbanpour, A. Gumidyala, L.C. Grabow, S.P. Crossley, J.D. Rimer, Epitaxial growth of ZSM-5@silicalite-1:A core-shell zeolite designed with passivated surface acidity, ACS Nano 9(2015) 4006-4016.[51] X.F. Lu, Y. Peng, Z.B. Wang, Y.S. Yan, A facile fabrication of highly b-oriented MFI zeolite films in the TEOS-TPAOH-H2O system without additives, Microporous Mesoporous Mater. 230(2016) 49-57.[52] Y. Liu, X.Z. Zhou, X.M. Pang, Y.Y. Jin, X.J. Meng, X.M. Zheng, X.H. Gao, F.S. Xiao, Improved para-xylene selectivity in meta-xylene isomerization over ZSM-5 crystals with relatively long b-axis length, ChemCatChem 5(2013) 1517-1523.[53] Z.H. Wei, L.F. Chen, Q.S. Cao, Z.H. Wen, Z. Zhou, Y.R. Xu, X.D. Zhu, Steamed Zn/ZSM-5 catalysts for improved methanol aromatization with high stability, Fuel Process. Technol. 162(2017) 66-77.[54] K.Y. Wang, X.S. Wang, Comparison of catalytic performances on nanoscale HZSM-5 and microscale HZSM-5, Microporous Mesoporous Mater. 112(2008) 187-192.[55] J.G. Zhang, W.Z. Qian, C.Y. Kong, F. Wei, Increasing para-xylene selectivity in making aromatics from methanol with a surface-modified Zn/P/ZSM-5 catalyst, ACS Catal. 5(2015) 2982-2988. |
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