Acta Chimica Sinica ›› 2024, Vol. 82 ›› Issue (10): 1013-1021.DOI: 10.6023/A24070216 Previous Articles Next Articles
Article
投稿日期:
2024-07-15
发布日期:
2024-09-02
基金资助:
Qin Zhao, Fang Li, Penghe Zhang, Yueming Liu()
Received:
2024-07-15
Published:
2024-09-02
Contact:
*E-mail: ymliu@chem.ecnu.edu.cn; Tel.: 021-62232058
Supported by:
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Qin Zhao, Fang Li, Penghe Zhang, Yueming Liu. Acid Strength Controlled Reaction Pathways for the Catalytic Cracking of 1-Heptene over ZSM-5[J]. Acta Chimica Sinica, 2024, 82(10): 1013-1021.
Sample | Si/Al2a | Pore propertyb | |||
---|---|---|---|---|---|
Smicro/ (m2•g−1) | Sexter/ (m2•g−1) | Vtotal/ (cm3•g−1) | Vmicr/ (cm3•g−1) | ||
ZSM-5(55) | 55 | 319 | 56 | 0.288 | 0.142 |
ZSM-5(99) | 99 | 309 | 72 | 0.258 | 0.138 |
ZSM-5(149) | 149 | 356 | 53 | 0.225 | 0.154 |
ZSM-5(198) | 198 | 303 | 55 | 0.263 | 0.135 |
ZSM-5(271) | 271 | 328 | 68 | 0.248 | 0.151 |
Sample | Si/Al2a | Pore propertyb | |||
---|---|---|---|---|---|
Smicro/ (m2•g−1) | Sexter/ (m2•g−1) | Vtotal/ (cm3•g−1) | Vmicr/ (cm3•g−1) | ||
ZSM-5(55) | 55 | 319 | 56 | 0.288 | 0.142 |
ZSM-5(99) | 99 | 309 | 72 | 0.258 | 0.138 |
ZSM-5(149) | 149 | 356 | 53 | 0.225 | 0.154 |
ZSM-5(198) | 198 | 303 | 55 | 0.263 | 0.135 |
ZSM-5(271) | 271 | 328 | 68 | 0.248 | 0.151 |
Sample | Si/Al2a | Pore propertyb | |||
---|---|---|---|---|---|
Smicro/ (m2•g−1) | Sexter/ (m2•g−1) | Vtotal/ (cm3•g−1) | Vmicr/ (cm3•g−1) | ||
ZSM-5(I) | 99 | 218 | 65 | 0.224 | 0.098 |
ZSM-5(II) | 102 | 269 | 57 | 0.286 | 0.111 |
ZSM-5(III) | 110 | 275 | 58 | 0.297 | 0.120 |
ZSM-5(IV) | 105 | 259 | 53 | 0.276 | 0.116 |
ZSM-5(V) | 120 | 246 | 49 | 0.271 | 0.111 |
Sample | Si/Al2a | Pore propertyb | |||
---|---|---|---|---|---|
Smicro/ (m2•g−1) | Sexter/ (m2•g−1) | Vtotal/ (cm3•g−1) | Vmicr/ (cm3•g−1) | ||
ZSM-5(I) | 99 | 218 | 65 | 0.224 | 0.098 |
ZSM-5(II) | 102 | 269 | 57 | 0.286 | 0.111 |
ZSM-5(III) | 110 | 275 | 58 | 0.297 | 0.120 |
ZSM-5(IV) | 105 | 259 | 53 | 0.276 | 0.116 |
ZSM-5(V) | 120 | 246 | 49 | 0.271 | 0.111 |
Sample | Aciditya | |||
---|---|---|---|---|
WA/ (mmol•g−1) | SA/ (mmol•g−1) | TA/ (mmol•g−1) | S/W | |
ZSM-5(55) | 0.134 | 0.198 | 0.332 | 1.48 |
ZSM-5(99) | 0.076 | 0.130 | 0.206 | 1.71 |
ZSM-5(149) | 0.050 | 0.088 | 0.138 | 1.76 |
ZSM-5(198) | 0.027 | 0.062 | 0.089 | 2.30 |
ZSM-5(271) | 0.020 | 0.048 | 0.068 | 2.40 |
Sample | Aciditya | |||
---|---|---|---|---|
WA/ (mmol•g−1) | SA/ (mmol•g−1) | TA/ (mmol•g−1) | S/W | |
ZSM-5(55) | 0.134 | 0.198 | 0.332 | 1.48 |
ZSM-5(99) | 0.076 | 0.130 | 0.206 | 1.71 |
ZSM-5(149) | 0.050 | 0.088 | 0.138 | 1.76 |
ZSM-5(198) | 0.027 | 0.062 | 0.089 | 2.30 |
ZSM-5(271) | 0.020 | 0.048 | 0.068 | 2.40 |
Sample | Aciditya | |||
---|---|---|---|---|
WA/ (mmol•g−1) | SA/ (mmol•g−1) | TA/ (mmol•g−1) | S/W | |
ZSM-5(I) | 0.109 | 0.053 | 0.162 | 0.49 |
ZSM-5(II) | 0.085 | 0.093 | 0.177 | 1.10 |
ZSM-5(III) | 0.065 | 0.102 | 0.167 | 1.59 |
ZSM-5(IV) | 0.052 | 0.108 | 0.159 | 2.08 |
ZSM-5(V) | 0.049 | 0.112 | 0.161 | 2.29 |
Sample | Aciditya | |||
---|---|---|---|---|
WA/ (mmol•g−1) | SA/ (mmol•g−1) | TA/ (mmol•g−1) | S/W | |
ZSM-5(I) | 0.109 | 0.053 | 0.162 | 0.49 |
ZSM-5(II) | 0.085 | 0.093 | 0.177 | 1.10 |
ZSM-5(III) | 0.065 | 0.102 | 0.167 | 1.59 |
ZSM-5(IV) | 0.052 | 0.108 | 0.159 | 2.08 |
ZSM-5(V) | 0.049 | 0.112 | 0.161 | 2.29 |
Sample | Conv./ mol% | Selectivity/mol% | ||||||||
---|---|---|---|---|---|---|---|---|---|---|
C2= | C3= | C4= | C5= | C10~C20 | C30 | C40~C50 | H2 | C6+ | ||
ZSM-5(55) | 100 | 24.78 | 37.41 | 9.35 | 1.93 | 2.55 | 2.30 | 2.22 | 11.37 | 8.09 |
ZSM-5(99) | 100 | 23.94 | 40.67 | 10.28 | 1.60 | 2.17 | 2.02 | 1.55 | 10.65 | 7.12 |
ZSM-5(149) | 100 | 22.38 | 43.05 | 14.47 | 0.95 | 1.98 | 1.50 | 2.04 | 9.50 | 4.13 |
ZSM-5(198) | 100 | 19.90 | 47.91 | 19.88 | 1.09 | 1.03 | 1.29 | 1.44 | 4.16 | 3.30 |
ZSM-5(271) | 100 | 15.52 | 53.09 | 25.52 | 1.79 | 0.51 | 0.63 | 0.68 | 1.18 | 1.08 |
Sample | Conv./ mol% | Selectivity/mol% | ||||||||
---|---|---|---|---|---|---|---|---|---|---|
C2= | C3= | C4= | C5= | C10~C20 | C30 | C40~C50 | H2 | C6+ | ||
ZSM-5(55) | 100 | 24.78 | 37.41 | 9.35 | 1.93 | 2.55 | 2.30 | 2.22 | 11.37 | 8.09 |
ZSM-5(99) | 100 | 23.94 | 40.67 | 10.28 | 1.60 | 2.17 | 2.02 | 1.55 | 10.65 | 7.12 |
ZSM-5(149) | 100 | 22.38 | 43.05 | 14.47 | 0.95 | 1.98 | 1.50 | 2.04 | 9.50 | 4.13 |
ZSM-5(198) | 100 | 19.90 | 47.91 | 19.88 | 1.09 | 1.03 | 1.29 | 1.44 | 4.16 | 3.30 |
ZSM-5(271) | 100 | 15.52 | 53.09 | 25.52 | 1.79 | 0.51 | 0.63 | 0.68 | 1.18 | 1.08 |
Sample | Conv./ mol% | Selectivity/mol% | ||||||||
---|---|---|---|---|---|---|---|---|---|---|
C2= | C3= | C4= | C5= | C10~C20 | C30 | C40~C50 | H2 | C6+ | ||
ZSM-5(I) | 100 | 7.55 | 55.05 | 30.70 | 4.72 | 0.21 | 0.52 | 0.89 | 0.66 | 1.40 |
ZSM-5(II) | 100 | 13.34 | 53.34 | 27.80 | 1.77 | 0.38 | 0.78 | 0.78 | 0.87 | 0.93 |
ZSM-5(III) | 100 | 14.20 | 52.48 | 23.82 | 1.57 | 0.62 | 0.97 | 1.30 | 2.68 | 2.36 |
ZSM-5(IV) | 100 | 17.00 | 52.12 | 22.97 | 1.54 | 0.58 | 1.11 | 1.04 | 1.65 | 1.99 |
ZSM-5(V) | 100 | 17.94 | 51.60 | 22.30 | 1.51 | 0.64 | 1.21 | 1.53 | 1.34 | 1.93 |
Sample | Conv./ mol% | Selectivity/mol% | ||||||||
---|---|---|---|---|---|---|---|---|---|---|
C2= | C3= | C4= | C5= | C10~C20 | C30 | C40~C50 | H2 | C6+ | ||
ZSM-5(I) | 100 | 7.55 | 55.05 | 30.70 | 4.72 | 0.21 | 0.52 | 0.89 | 0.66 | 1.40 |
ZSM-5(II) | 100 | 13.34 | 53.34 | 27.80 | 1.77 | 0.38 | 0.78 | 0.78 | 0.87 | 0.93 |
ZSM-5(III) | 100 | 14.20 | 52.48 | 23.82 | 1.57 | 0.62 | 0.97 | 1.30 | 2.68 | 2.36 |
ZSM-5(IV) | 100 | 17.00 | 52.12 | 22.97 | 1.54 | 0.58 | 1.11 | 1.04 | 1.65 | 1.99 |
ZSM-5(V) | 100 | 17.94 | 51.60 | 22.30 | 1.51 | 0.64 | 1.21 | 1.53 | 1.34 | 1.93 |
Sample | P/E | P/B | $\mathrm{C}_{3}^{=}$./$\mathrm{C}_{5}^{=}$ | a | b | c | 1-b-c |
---|---|---|---|---|---|---|---|
ZSM-5(I) | 7.29 | 1.79 | 11.66 | 0.98 | 0.19 | 0.17 | 0.64 |
ZSM-5(II) | 4.00 | 1.92 | 30.14 | 0.96 | 0.07 | 0.37 | 0.56 |
ZSM-5(III) | 3.70 | 2.20 | 33.43 | 0.97 | 0.06 | 0.45 | 0.49 |
ZSM-5(IV) | 3.07 | 2.27 | 33.84 | 0.94 | 0.06 | 0.45 | 0.49 |
ZSM-5(V) | 2.88 | 2.31 | 34.17 | 0.93 | 0.06 | 0.45 | 0.49 |
Sample | P/E | P/B | $\mathrm{C}_{3}^{=}$./$\mathrm{C}_{5}^{=}$ | a | b | c | 1-b-c |
---|---|---|---|---|---|---|---|
ZSM-5(I) | 7.29 | 1.79 | 11.66 | 0.98 | 0.19 | 0.17 | 0.64 |
ZSM-5(II) | 4.00 | 1.92 | 30.14 | 0.96 | 0.07 | 0.37 | 0.56 |
ZSM-5(III) | 3.70 | 2.20 | 33.43 | 0.97 | 0.06 | 0.45 | 0.49 |
ZSM-5(IV) | 3.07 | 2.27 | 33.84 | 0.94 | 0.06 | 0.45 | 0.49 |
ZSM-5(V) | 2.88 | 2.31 | 34.17 | 0.93 | 0.06 | 0.45 | 0.49 |
[1] |
Lavrenov, A. V.; Saifulina, L. F.; Buluchevskii, E. A.; Bogdanets, E. N. Catal. Ind. 2015, 7 175.
|
[2] |
Li, J.; Li, W.; Wang, C. Chin. J. Chromatogr. 2013, 31 1134 (in Chinese).
|
(李继文, 李薇, 王川, 色谱, 2013, 31 1134.)
|
|
[3] |
Alotibi, M. F.; Alshammari, B. A.; Alotaibi, M. H.; Alotaibi, F. M.; Alshihri, S.; Navarro, R. M.; Fierro, J. L. G. Catal. Surv. Asia 2020, 24 1.
|
[4] |
Yang, M.; Fan, D.; Wei, Y. X.; Tian, P.; Liu, Z. M. Adv. Mater. 2019, 31 1902181.
|
[5] |
Almuqati, N. S.; Aldawsari, A. M.; Alharbi, K. N.; González-Cortés, S.; Alotibi, M. F.; Alzaidi, F.; Dilworth, J. R.; Edwards, P. P. Fuel 2023, 366 131270.
|
[6] |
Jiao, F.; Bai, B.; Li, G.; Pan, X. L.; Ye, Y. H.; Qu, S. C.; Xu, C. Q.; Xiao, J. P.; Jia, Z. H.; Liu, W. Science 2023, 380 727.
|
[7] |
Zhang, Y.; Shen, K. X.; Teng, J. W. Chem. React. Eng. Technol. 2021, 37 181 (in Chinese).
|
(张燕, 沈凯旭, 滕加伟, 化学反应工程与工艺, 2021, 37 181.)
|
|
[8] |
Huang, X.; Aihemaitijiang, D.; Xiao, W. D. Chem. Eng. J. (Loughborough, Engl). 2015, 280 222.
|
[9] |
Lin, L. F.; Qiu, C. F.; Zhuo, Z. X.; Zhang, D. W.; Zhao, S. F.; Wu, H. H.; Liu, Y. M.; He, M. Y. J. Catal. 2014, 309 136.
|
[10] |
Lin, L. F.; Zhao, S. F.; Zhang, D. W.; Fan, H.; Liu, Y. M.; He, M. Y. ACS Catal. 2015, 5 4048.
|
[11] |
Sun, H. L.; Cao, L. Y.; Zhang, Y. H.; Zhao, L.; Gao, J. S.; Xu, C. M. Energy Fuels 2021, 35 3295.
|
[12] |
Chen, C. J.; Rangarajan, S.; Hill, I. M.; Bhan, A. ACS Catal. 2014, 4 2319.
|
[13] |
Zhao, G. L.; Teng, J. W.; Xie, Z. K.; Jin, W. Q.; Yang, W. M.; Chen, Q. L.; Tang, Y. J. Catal. 2007, 248 29.
|
[14] |
Liu, Q.; Chen, Z. K.; Piao, Y.; Xiao, P.; Ge, Y. F.; Gong, Y. J. Chem. Ind. Eng. 2024, 75 120 (in Chinese).
|
(刘琦, 陈子康, 朴宇, 肖鹏, 葛亚粉, 巩雁军, 化工学报. 2024, 75 120.)
doi: 10.11949/0438-1157.20230845 |
|
[15] |
Jiang, L.; Yang, X. Y.; Huang, X. Y.; Wen, M. F. Refin. Chem. Ind. 2022, 33 22.
|
[16] |
Li, L.; Huang, X.; Zheng, Z. G.; Zhu, Y. F. CN 202111073921.7. 2021 (in Chinese).
|
(李丽, 黄鑫, 郑志刚, 朱豫飞, CN202111073921.7. 2021.)
|
|
[17] |
Abbot, J.; Wojciechowski, B. W. Can. J. Chem. Eng. 1985, 63 462.
|
[18] |
Buchanan, J. S.; Santiesteban, J. G.; Haag, W. O. J. Catal. 1996, 158 279.
|
[19] |
Wu, W. Z.; Guo, W. Y.; Xiao, W. D.; Luo, M. Chem. Eng. Sci. 2011, 66 4722.
|
[20] |
Ji, H.; Li, Z.; Hou, S.; Long, J. Acta Pet. Sin., Pet. Process Sect. 2009, 25 14.
|
[21] |
Zhou, W. Z.; Lin, D. C.; Zhong, Y.; Guo, J.; Wang, T.; Long, Y. C. Acta Chim. Sinica 2004, 62 833 (in Chinese).
|
(周伟正, 林德昌, 钟鹰, 郭娟, 王梯, 龙英才, 化学学报. 2004, 62 833.)
|
|
[22] |
Gong, J. H.; Yang, Y. N.; Xu, Y. H.; Zhang, J. S.; Long, J. Petrochem. Technol. 2006, 22 27 (in Chinese).
|
(龚剑洪, 杨轶男, 许友好, 张久顺, 龙军, 石油学报(石油加工), 2006, 22 27.)
|
|
[23] |
Li, J.; Li, T.; Ma, H.; Sun, Q.; Li, C.; Ying, W.; Fang, D. Chem. Eng. J. 2018, 346 397.
|
[24] |
Ying, L.; Zhu, J. J.; Cheng, Y. W.; Wang, L. J.; Li, X. J. Ind. Eng. Chem. 2016, 33 80.
|
[25] |
Zhu, X. X.; Liu, S. L.; Song, Y. Q.; Xu, L. Y. Appl. Catal., A 2005, 288 134.
|
[26] |
Sun, H.; Zhang, B.; Wei, C.; Cao, L.; Zhang, Y.; Zhao, L.; Gao, J.; Xu, C. Ind. Eng. Chem. Res. 2021, 60 17469.
|
[27] |
Palčić, A.; Valtchev, V. Appl. Catal., A 2020, 606 117795.
|
[28] |
Li, F.; Zhao, Q.; Yan, B. H.; Huang, X.; Ding, C. J.; Liu, Y. M.; He, M. Y. Microporous Mesoporous Mater. 2024, 373 113.
|
[29] |
Zhao, Q.; Li, F.; Wang, Y.; Liu, Y.; He, M. Fuel 2024, 371 132077.
|
[30] |
Bai, Y. E.; Zhang, B. R.; Liu, D. Y.; Zhao, L.; Gao, J. S.; Xu, C. M. Chem. Ind. Eng. 2023, 74 438 (in Chinese).
|
(白宇恩, 张彬瑞, 刘东阳, 赵亮, 高金森, 徐春明, 化工学报 2023, 74 438.)
doi: 10.11949/0438-1157.20221200 |
|
[31] |
Chen, Z. P.; Meng, Y. L.; Lu, J.; Zhou, W. W.; Yang, Z. Y.; Zhou, A. N. Acta Chim. Sinica 2023, 81 14 (in Chinese).
|
(陈治平, 孟永乐, 芦静, 周文武, 杨志远, 周安宁, 化学学报 2023, 81 14.)
doi: 10.6023/A22070329 |
|
[32] |
Yang, W. J.; Xu, Y. H.; Shu, X. T.; Wang, X.; Bai, X. H.; Zuo, Y. F.; Luo, Y. B.; Ouyang, Y. Appl. Energy. 2023, 349 121665.
|
[33] |
He, L.; Yao, Q. X.; Sun, M.; Ma, X. X. Acta Chim. Sinica 2022, 80 180 (in Chinese).
|
(何磊, 么秋香, 孙鸣, 马晓迅, 化学学报, 2022, 80 180.)
doi: 10.6023/A21100489 |
|
[34] |
Zhao, G. L.; Teng, J. W.; Xie, Z. K.; Tang, Y.; Yang, W. M.; Chen, Q. L. Chin. J. Catal. 2005, 26 1083 (in Chinese).
|
(赵国良, 滕加伟, 谢在库, 唐颐, 杨为民, 陈庆龄, 催化学报, 2005, 26 1083.)
|
|
[35] |
Zhao, G. L.; Teng, J. W.; Jin, W. Q.; Yang, W. M.; Xie, Z. K.; Chen, Q. L. Chin. J. Catal. 2004, 25 3 (in Chinese).
|
(赵国良, 滕加伟, 金文清, 杨为民, 谢在库, 陈庆龄, 催化学报, 2004, 25 3.)
|
|
[36] |
Li, X. L.; Hou, S. M.; Duan, H. C.; Lu, R. L.; Zhang, Y. T. Pet. Process. Petrochem. 2023, 54 74 (in Chinese).
|
(李雪礼, 侯硕旻, 段宏昌, 路瑞玲, 张琰图, 石油炼制与化工, 2023, 54 74.)
|
|
[37] |
Li, H.; Li, X. G.; Xiao, W. D. Catal. Lett. 2021, 151 955.
|
[38] |
Reddy, J. K.; Motokura, K.; Koyama, T.; Miyaji, A.; Baba, T. J. Catal. 2012, 289 53.
|
[39] |
Al-Dughaither, A. S.; de Lasa, H. Ind. Eng. Chem. Res. 2014, 53 15303.
|
[40] |
Stach, H.; Jänchen, J. Zeolites 1992, 12 152.
|
[41] |
Li, B.; Long, J.; Hou, S. D. Comput. Appl. Chem. 2009, 26 129 (in Chinese).
|
(李博, 龙军, 侯栓弟, 计算机与应用化学, 2009, 26 129.)
|
|
[42] |
Zhu, X. X.; Liu, S. L.; Song, Y. Q.; Xu, L. Y. Catal. Lett. 2005, 103 201.
|
[43] |
Leydier, F.; Chizallet, C.; Costa, D.; Raybaud, P. J. Catal. 2015, 325 35.
|
[44] |
Wang, B.; Gao, Q.; Gao, J. D.; Ji, D.; Wang, X. L.; Suo, J. S. Appl. Catal., A 2004, 274 167.
|
[45] |
Bortnovsky, O.; Sazama, P.; Wichterlova, B. Appl. Catal., A 2005, 287 203.
|
[46] |
Liu, J. T.; Zhong, S. Q.; Xu, C. M.; Xie, Z. K.; Yang, W. M. Petrochem. Technol. 2005, 34 5 (in Chinese).
|
(刘俊涛, 钟思青, 徐春明, 谢在库, 杨为民, 石油化工, 2005, 34 5.)
|
|
[47] |
Potapenko, O. V.; Doronin, V. P.; Sorokina, T. P.; Likholobov, V. A. Fuel Process. Technol. 2014, 128 251.
|
[48] |
Schailmoser, S.; Haller, G. L.; Sanchez-Sanchez, M.; Lercher, J. A. J. Am. Chem. Soc. 2017, 139 8646.
|
[49] |
Corma, A.; Miguel, P. J.; Orchilles, A. V. J. Catal. 1994, 145 171.
|
[50] |
Corma, A.; Miguel, P. J.; Orchillés, A. V. J. Catal. 1997, 172 355.
|
[51] |
Liang, C. C.; Xu, R. F.; Chang, X. S.; Liu, G. D.; Liu, J. X.; Guo, H. C. J. Mol. Catal. 2011, 25 69 (in Chinese).
|
(梁翠翠, 徐瑞芳, 常旭升, 刘国东, 刘家旭, 郭洪臣, 分子催化, 2011, 25 69.)
|
|
[52] |
Rigby, A. M.; Kramer, G. J.; van Santen, R. A. J. Catal. 1997, 170 1.
|
[53] |
Arudra, P.; Bhuiyan, T. I.; Akhtar, M. N.; Aitani, A. M.; Al-Khattaf, S. S.; Hattori, H. ACS Catal. 2014, 4 4205.
|
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[13] | XI Jing-Yu, MA Xiao-Mei, CUI Meng-Zhong, TANG Xiao-Zhen*. PEO-LiClO4-ZSM5 Composite Polymer Electrolyte I. Electrochemical Study [J]. Acta Chimica Sinica, 2005, 63(5): 401-406. |
[14] | ZHANG Shu-Dong, XU Cheng-Hua, FENG Liang-Rong, QIU Fa-Li. Mechanism of TiCl4 Gas-solid Reaction with HZSM-5 in the Preparation of Ti-ZSM-5 [J]. Acta Chimica Sinica, 2004, 62(4): 381-385. |
[15] | BI Yu-Shui, LÜ Gong-Xuan. Influences of Transition Metal Additives on CO Oxidation over NaZSM-5 Supported Pd [J]. Acta Chimica Sinica, 2004, 62(20): 1981-1987. |
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