Citation: CHEN Hong-Li, ZHU Shu-Yan, HE Jian-Qin, WANG Yi-Meng. Synthesis of Micro-Sized MEL-Type Zeolite Aggregates[J]. Acta Physico-Chimica Sinica, ;2014, 30(9): 1727-1735. doi: 10.3866/PKU.WHXB201407081
-
Hierarchical micro-sized zeolite aggregates with the MEL structure were prepared hydrothermally froma tetrabutylammoniumhydroxide (TBAOH)-tetraethyl orthosilicate (TEOS)-H2O system. The obtained microsized silicalite-2 microspheres had sizes larger than 10 μm, high BET surface area (460 m2·g-1), and large pore volume (0.74 cm3·g-1). The formation of micro-sized spheres alleviates preparation and application difficulties. The presence of inter-crystalline mesopores originating from the spontaneous assembly of nano-sized primary particles during hydrothermal synthesis gives the advantages of nanoparticles, reducing diffusion limitations. The introduction of titanium does not strongly affect the morphology and textural properties of the MEL-type zeolite, which are quite similar to those of silicalite-2 aggregates. The micro-sized titanium silicalite-2 (TS-2) microspheres showed comparable catalytic activity in phenol hydroxylation to that of titanium silicalite-1 (TS-1) of size 100-200 nm, and were easily recovered by traditional filtration, simplifying the separation and recovery compared with nano-sized TS-1.
-
-
[1]
(1) Corma, A. Chem. Rev. 1995, 95, 559. doi: 10.1021/cr00035a006
-
[2]
(2) Rabo, J. A.; Schoonover, M.W. Appl. Catal. A: Gen. 2001, 222, 261. doi: 10.1016/S0926-860X(01)00840-7
-
[3]
(3) Kokotailo, G. T.; Lawton, S. L.; Olson, D. H.; Meier,W. M. Nature 1978, 272, 437. doi: 10.1038/272437a0
-
[4]
(4) Choi, M.; Na, K.; Kim, J.; Sakamoto, Y.; Terasaki, O.; Ryoo, R. Nature 2009, 461, 246.
-
[5]
(5) Yue, M. B.; Yang, N.;Wang, Y. M. Acta Phys. -Chim. Sin. 2012, 28, 2115. [岳明波, 杨娜, 王一萌. 物理化学学报, 2012, 28, 2115.] doi: 10.3866/PKU.WHXB201206141
-
[6]
(6) Kokotailo, G. T.; Chu, P.; Lawton, S. L.; Meier,W. M. Nature 1978, 275, 119. doi: 10.1038/275119a0
-
[7]
(7) Yu, Q. J.; Cui, C. Y.; Zhang, Q.; Chen, J.; Li, Y.; Sun, J. P.; Li, C. Y.; Cui, Q. K.; Yang, C. H.; Shan, H. H. J. Energy Chem. 2013, 22, 761. doi: 10.1016/S2095-4956(13)60101-1
-
[8]
(8) Chen, H. L.; Ding, J.;Wang, Y. M. New J. Chem. 2014, 38, 308. doi: 10.1039/c3nj00785e
-
[9]
(9) Babu, G. P.; Hegde, S. G.; Kulkarni, S. B.; Ratnasamy, P. J. Catal. 1983, 81, 471. doi: 10.1016/0021-9517(83)90185-9
-
[10]
(10) Kaeding,W.W.; Chu, C.; Young, L. B.; Butter, S. A. J. Catal. 1981, 69, 392.
-
[11]
(11) Young, L. B.; Butter, S. A.; Kaeding,W.W. J. Catal. 1982, 76, 418. doi: 10.1016/0021-9517(82)90271-8
-
[12]
(12) Ralph, M, D. J. Catal. 1982, 77, 304. doi: 10.1016/0021-9517(82)90173-7
-
[13]
(13) Védrine, J. C.; Auroux, A.; Dejaifve, P.; Ducarme, V.; Hoser, H.; Zhou, S. J. Catal. 1982, 73, 147. doi: 10.1016/0021-9517(82)90089-6
-
[14]
(14) Anderson, J. R.; Foger, K.; Mole, T.; Rajadhyaksha, R. A.; Sanders, J. V. J. Catal. 1979, 58, 114. doi: 10.1016/0021-9517(79)90250-1
-
[15]
(15) Chang, C. D.; Silvestri, A. J. J. Catal. 1977, 47, 249. doi: 10.1016/0021-9517(77)90172-5
-
[16]
(16) Meisel, S. L. Chem. Technol. 1976, 6, 86.
-
[17]
(17) Corma, A. Chem. Rev. 1997, 97, 2373. doi: 10.1021/cr960406n
-
[18]
(18) Tian, Y.; Li, Y. D. Journal of Chemical Industry and Engineering 2013, 64 (2), 393. [田野, 李永丹. 化工学报, 2013, 64 (2), 393.]
-
[19]
(19) Song,W.; Justice, R. E.; Jones, C. A.; Grassian, V. H.; Larsen, S. C. Langmuir 2004, 20, 8301. doi: 10.1021/la049516c
-
[20]
(20) Tosheva, L.; Valtchev, V. P. Chem. Mater. 2005, 17, 2494. doi: 10.1021/cm047908z
-
[21]
(21) Tokay, B.; Somer, M.; Erdem-Senatalar, A.; Schuth, F.; Thompson, R.W. Microporous Mesoporous Mat. 2009, 118, 143. doi: 10.1016/j.micromeso.2008.08.034
-
[22]
(22) Cundy, C. S.; Forrest, J. O.; Plaisted, R. J. Microporous Mesoporous Mat. 2003, 66, 143. doi: 10.1016/j.micromeso.2003.08.021
-
[23]
(23) Cundy, C. S.; Forrest, J. O. Microporous Mesoporous Mat. 2004, 72, 67. doi: 10.1016/j.micromeso.2004.04.006
-
[24]
(24) Mintova, S.; Gilson, J. P.; Valtchev, V. Nanoscale 2013, 15, 6693.
-
[25]
(25) Davis, T. M.; Drews, T. O.; Ramanan, H.; He, C.; Dong, J.; Schnablegger, H.; Katsoulakis, M. A.; Kokkoli, E.; McCormick, A. V.; Penn, R. L.; Tsapatsis, M. Nature Mater. 2006, 5, 400. doi: 10.1038/nmat1636
-
[26]
(26) Fang, Y. M.; Hu, H. Q.; Chen, G. H. Chem. Mater. 2008, 20, 1670. doi: 10.1021/cm703265q
-
[27]
(27) Liu, S. P.; Yue, M. B.;Wang, Y. M. Acta Phys. -Chim. Sin. 2010, 26, 2224. [刘树萍, 岳明波, 王一萌. 物理化学学报, 2010, 26, 2224.] doi: 10.3866/PKU.WHXB20100806
-
[28]
(28) Zhang, X. Y.; Liu, D. X.; Xu, D. D.; Asahina, S.; Cychosz, K. A.; Agrawal, K. V.; AlWahedi, Y.; Bhan, A.; Al Hashimi, S.; Terasaki, O.; Thommes, M.; Tsapatsis, M. Science 2012, 336, 1684. doi: 10.1126/science.1221111
-
[29]
(29) Dong, J. P.; Zou, J.; Long, Y. C. Microporous Mesoporous Mat. 2003, 57, 9. doi: 10.1016/S1387-1811(02)00530-9
-
[30]
(30) Uzcategui, D.; nzalez, G. Catal. Today 2005, 107-108, 901.
-
[31]
(31) CiZmek, A.; Subotica, B.; Kralj, D.; Babic-Ivancic, V.; Tonejc, A. Microporous Mater. 1997, 12, 267. doi: 10.1016/S0927-6513(97)00075-8
-
[32]
(32) Mintova , S.; Petkov, N.; Karaghiosoff, K.; Bein, T. Microporous Mesoporous Mat. 2003, 50, 121.
-
[33]
(33) Jansen, J. C.; van der Gaag, F. J.; van Bekkum, H. Zeolites 1984, 4, 369. doi: 10.1016/0144-2449(84)90013-7
-
[34]
(34) Coudurier, G.; Naccache, C.; Vedrine, J. C. J. Chem. Soc. Chem. Commun. 1982, 1413.
-
[35]
(35) Scarano, D.; Zecchina, A.; Bordiga, S.; Geobaldo, F.; Spoto, G.; Petrini, G.; Leofanti, G.; Padovan, M.; Tozzola, G. J. Chem. Soc. Faraday Trans. 1993, 89, 4123. doi: 10.1039/ft9938904123
-
[36]
(36) Zecchina, A.; Bordiga, S.; Spoto, G.; Marchese, L.; Petrini, G.; Leofanti, G.; Padovan, M. J. Phys. Chem. 1992, 96, 4985. doi: 10.1021/j100191a047
-
[37]
(37) Soulard, M.; Bilger, S.; Kessler, H.; Guth, J. L. Zeolites 1987, 7, 463. doi: 10.1016/0144-2449(87)90016-9
-
[38]
(38) Parker, L. M.; Bibby, D. M.; Patterson, J. E. Zeolites 1984, 4, 168. doi: 10.1016/0144-2449(84)90056-3
-
[39]
(39) Boxhoorn, G.; Kortbeek, A. G. T. G.; Hays, G. R.; Alma, N. C. M. Zeolites 1984, 4, 15. doi: 10.1016/0144-2449(84)90066-6
-
[40]
(40) Chezeau, J. M.; Delmotte, L.; Guth, J. L.; Gabelica, Z. Zeolites 1991, 11, 598. doi: 10.1016/S0144-2449(05)80011-9
-
[41]
(41) Nagy, J. B.; Gabelica, Z.; Derouane, E. G. Chem. Lett. 1982, 11, 1105.
-
[42]
(42) Nagy, J. B.; Gabelica, Z.; Derouane, E. G. Zeolites 1983, 3, 43. doi: 10.1016/0144-2449(83)90084-2
-
[43]
(43) Ricchiardi, G.; Damin, A.; Bordiga, S.; Lamberti, C.; Spanò, G.; Rivetti, F.; Zecchina, A. J. Am. Chem. Soc. 2001, 123, 11409. doi: 10.1021/ja010607v
-
[44]
(44) Wu, P.; Tatsumi, T.; Komatsu, T.; Yashima, T. J. Phys. Chem. B 2001, 105, 2897.
-
[45]
(45) Thangaraj, A.; Kumar, R.; Mirajkar, S. P.; Ratnasamy, P. J. Catal. 1991, 130, 1. doi: 10.1016/0021-9517(91)90086-J
-
[46]
(46) Thangaraj, A.; Kumar, R.; Ratnasamy, P. J. Catal. 1991, 131, 294. doi: 10.1016/0021-9517(91)90347-7
-
[47]
(47) Romano, U.; Esposito, A.; Maspero, F.; Neri, C.; Clerici, M. G. Stud. Surf. Sci. Catal. 1990, 55, 33. doi: 10.1016/S0167-2991(08)60131-7
-
[48]
(48) Tuel, A.; Taarit, Y. B. Appl. Catal. A: Gen. 1993, 102, 69. doi: 10.1016/0926-860X(93)85155-I
-
[49]
(49) van der Pol, A. J. H. P.; Verduyn, A. J.; van Hooff, J. H. C. Appl. Catal. A: Gen. 1992, 92, 113. doi: 10.1016/0926-860X(92)80310-9
-
[1]
-
-
[1]
Zijian Jiang , Yuang Liu , Yijian Zong , Yong Fan , Wanchun Zhu , Yupeng Guo . Preparation of Nano Zinc Oxide by Microemulsion Method and Study on Its Photocatalytic Activity. University Chemistry, 2024, 39(5): 266-273. doi: 10.3866/PKU.DXHX202311101
-
[2]
Yongming Guo , Jie Li , Chaoyong Liu . Green Improvement and Educational Design in the Synthesis and Characterization of Silver Nanoparticles. University Chemistry, 2024, 39(3): 258-265. doi: 10.3866/PKU.DXHX202309057
-
[3]
Lina Liu , Xiaolan Wei , Jianqiang Hu . Exploration of Subject-Oriented Undergraduate Comprehensive Chemistry Experimental Teaching Based on the “STS Concept”: Taking the Experiment of Gold Nanoparticles as an Example. University Chemistry, 2024, 39(10): 337-343. doi: 10.12461/PKU.DXHX202405112
-
[4]
Zhengli Hu , Jia Wang , Yi-Lun Ying , Shaochuang Liu , Hui Ma , Wenwei Zhang , Jianrong Zhang , Yi-Tao Long . Exploration of Ideological and Political Elements in the Development History of Nanopore Electrochemistry. University Chemistry, 2024, 39(8): 344-350. doi: 10.3866/PKU.DXHX202401072
-
[5]
Yinyin Qian , Rui Xu . Utilizing VESTA Software in the Context of Material Chemistry: Analyzing Twin Crystal Nanostructures in Indium Antimonide. University Chemistry, 2024, 39(3): 103-107. doi: 10.3866/PKU.DXHX202307051
-
[6]
Qiangqiang SUN , Pengcheng ZHAO , Ruoyu WU , Baoyue CAO . Multistage microporous bifunctional catalyst constructed by P-doped nickel-based sulfide ultra-thin nanosheets for energy-efficient hydrogen production from water electrolysis. Chinese Journal of Inorganic Chemistry, 2024, 40(6): 1151-1161. doi: 10.11862/CJIC.20230454
-
[7]
Jingke LIU , Jia CHEN , Yingchao HAN . Nano hydroxyapatite stable suspension system: Preparation and cobalt adsorption performance. Chinese Journal of Inorganic Chemistry, 2024, 40(9): 1763-1774. doi: 10.11862/CJIC.20240060
-
[8]
Wenyan Dan , Weijie Li , Xiaogang Wang . The Technical Analysis of Visual Software ShelXle for Refinement of Small Molecular Crystal Structure. University Chemistry, 2024, 39(3): 63-69. doi: 10.3866/PKU.DXHX202302060
-
[9]
Yanxin Wang , Hongjuan Wang , Yuren Shi , Yunxia Yang . Application of Python for Visualizing in Structural Chemistry Teaching. University Chemistry, 2024, 39(3): 108-117. doi: 10.3866/PKU.DXHX202306005
-
[10]
Yuqiao Zhou , Weidi Cao , Shunxi Dong , Lili Lin , Xiaohua Liu . Study on the Teaching Reformation of Practical X-ray Crystallography. University Chemistry, 2024, 39(3): 23-28. doi: 10.3866/PKU.DXHX202303003
-
[11]
Peng ZHOU , Xiao CAI , Qingxiang MA , Xu LIU . Effects of Cu doping on the structure and optical properties of Au11(dppf)4Cl2 nanocluster. Chinese Journal of Inorganic Chemistry, 2024, 40(7): 1254-1260. doi: 10.11862/CJIC.20240047
-
[12]
Qi Li , Pingan Li , Zetong Liu , Jiahui Zhang , Hao Zhang , Weilai Yu , Xianluo Hu . Fabricating Micro/Nanostructured Separators and Electrode Materials by Coaxial Electrospinning for Lithium-Ion Batteries: From Fundamentals to Applications. Acta Physico-Chimica Sinica, 2024, 40(10): 2311030-. doi: 10.3866/PKU.WHXB202311030
-
[13]
Qiying Xia , Guokui Liu , Yunzhi Li , Yaoyao Wei , Xia Leng , Guangli Zhou , Aixiang Wang , Congcong Mi , Dengxue Ma . Construction and Practice of “Teaching-Learning-Assessment Integration” Model Based on Outcome Orientation: Taking “Structural Chemistry” as an Example. University Chemistry, 2024, 39(10): 361-368. doi: 10.3866/PKU.DXHX202311007
-
[14]
Liang MA , Honghua ZHANG , Weilu ZHENG , Aoqi YOU , Zhiyong OUYANG , Junjiang CAO . Construction of highly ordered ZIF-8/Au nanocomposite structure arrays and application of surface-enhanced Raman spectroscopy. Chinese Journal of Inorganic Chemistry, 2024, 40(9): 1743-1754. doi: 10.11862/CJIC.20240075
-
[15]
Guangming YIN , Huaiyao WANG , Jianhua ZHENG , Xinyue DONG , Jian LI , Yi'nan SUN , Yiming GAO , Bingbing WANG . Preparation and photocatalytic degradation performance of Ag/protonated g-C3N4 nanorod materials. Chinese Journal of Inorganic Chemistry, 2024, 40(8): 1491-1500. doi: 10.11862/CJIC.20240086
-
[16]
Xingyang LI , Tianju LIU , Yang GAO , Dandan ZHANG , Yong ZHOU , Meng PAN . A superior methanol-to-propylene catalyst: Construction via synergistic regulation of pore structure and acidic property of high-silica ZSM-5 zeolite. Chinese Journal of Inorganic Chemistry, 2024, 40(7): 1279-1289. doi: 10.11862/CJIC.20240026
-
[17]
Yufang GAO , Nan HOU , Yaning LIANG , Ning LI , Yanting ZHANG , Zelong LI , Xiaofeng LI . Nano-thin layer MCM-22 zeolite: Synthesis and catalytic properties of trimethylbenzene isomerization reaction. Chinese Journal of Inorganic Chemistry, 2024, 40(6): 1079-1087. doi: 10.11862/CJIC.20240036
-
[18]
Min WANG , Dehua XIN , Yaning SHI , Wenyao ZHU , Yuanqun ZHANG , Wei ZHANG . Construction and full-spectrum catalytic performance of multilevel Ag/Bi/nitrogen vacancy g-C3N4/Ti3C2Tx Schottky junction. Chinese Journal of Inorganic Chemistry, 2024, 40(6): 1123-1134. doi: 10.11862/CJIC.20230477
-
[19]
Lihui Jiang , Wanrong Dong , Hua Yang , Yongqing Xia , Hongjian Peng , Jun Yuan , Xiaoqian Hu , Zihan Zeng , Yingping Zou , Yiming Luo . Study on Extraction of p-Hydroxyacetophenone. University Chemistry, 2024, 39(11): 259-268. doi: 10.12461/PKU.DXHX202402056
-
[20]
Jingyu Cai , Xiaoyu Miao , Yulai Zhao , Longqiang Xiao . Exploratory Teaching Experiment Design of FeOOH-RGO Aerogel for Photocatalytic Benzene to Phenol. University Chemistry, 2024, 39(4): 169-177. doi: 10.3866/PKU.DXHX202311028
-
[1]
Metrics
- PDF Downloads(385)
- Abstract views(597)
- HTML views(7)