OALib Journal期刊
ISSN: 2333-9721
费用:99美元
|
|
|
SAPO-11分子筛晶化过程研究
DOI: 10.1016/S1872-2067(12)60542-7, PP. 593-603
Keywords: SAPO-11分子筛,表征,晶化过程,硅分布
Abstract:
?采用X射线衍射、X射线荧光光谱、扫描电镜和固体核磁等方法研究了SAPO-11分子筛的水热晶化过程.结果表明,晶化初期,SAPO-11和一种具有磷硅铝组成的未知晶相同时生成;随着晶化的进行,中间相溶解,SAPO-11的生成速率大大增加,呈现快速晶化的特征;至2.33h后,SAPO-11的结晶度接近100%,并保持至晶化结束.硅从晶化初期即参与了SAPO-11的形成,它在晶体中的含量随晶化时间的延长而逐渐增加.硅原子主要以硅岛的形式分布于SAPO-11分子筛骨架中,从而导致多种硅配位环境的存在.分析显示,SAPO-11分子筛呈现外表面富硅的特点,结合晶化过程的分析可推测,硅在SAPO-11分子筛晶体中的分布不均匀,其含量从内向外递增.
References
[1] | Borade R B, Clearfield A. J Mol Catal, 1994, 88: 249
|
[2] | Wang Sh F, Wang Y J, Gao Y, Zhao X Q. Chin J Catal (王淑芳, 王延吉, 高扬, 赵新强. 催化学报), 2010, 31: 637
|
[3] | Blasco T, Chica A, Corma A, Murphy W J, Agúndez-Rodriguez J, Pérez-Pariente J. J Catal, 2006, 242: 153
|
[4] | Barthomeuf D. J Phys Chem, 1993, 97: 10092
|
[5] | Shen W L, Li X, Wei Y X, Tian P, Deng F, Han X W, Bao X H. Microporous Mesoporous Mater, 2012, 158: 19
|
[6] | Kikhtyanin O V, Toktarev A V, Ayupov A B, Echevsky G V. Appl Catal A, 2010, 378: 96
|
[7] | Akolekar D B, Bhargava S K, Gorman J, Paterson P. Colloids Surf A, 1999, 146: 375
|
[8] | Lok B M, Messina C A, Patton R L, Gajek R T, Cannan T R, Flanigen E M. USPatent4440871. 1984
|
[9] | Zhang Sh Zh, Chen Sh L, Dong P, Yuan G M, Xu K Q. Appl Catal A, 2007, 332: 46
|
[10] | Luo H J, Wu H J, Wu H Y, Zhang Y Y, Wang Y J. Ind Catal (罗洪君,吴红姣,吴红玉,张莹莹,汪颖军. 工业催化), 2011, 19(1): 16
|
[11] | Wang Y J,Li X H,Liu Ch Sh, Jin L L.Ind Catal (汪颖军,李小辉,刘成双,靳丽丽. 工业催化),2010,18(3): 1
|
[12] | Tian Zh J, Liang D B, Lin L W. Chin J Catal (田志坚, 梁东白, 林励吾. 催化学报), 2009, 30: 705
|
[13] | Wang Zh M, Yan Z F. J Fuel Chem Technol (汪哲明, 阎子峰. 燃料化学学报), 2003, 31: 360
|
[14] | Liu Y M, Zhang F M, Shu X T. Acta Petrol Sin (Petrol Proc Sect) (刘月明, 张凤美, 舒兴田. 石油学报(石油加工)), 2002, 18(6): 26
|
[15] | Liu P, Ren J, Sun Y H. Acta Petrol Sin (Petrol Proc Sect) (刘平, 任杰, 孙予罕. 石油学报(石油加工)), 2008, 24(4): 388
|
[16] | Zhang Sh Zh, Chen Sh L, Dong P, Jing X J, Jiang K. Chin J Catal (张胜振, 陈胜利, 董鹏, 井秀娟, 姜凯. 催化学报), 2006, 27: 868
|
[17] | Gharibeh M, Tompsett G A, Conner W C. Top Catal, 2008, 49: 157
|
[18] | Sinha A K, Seelan S. Appl Catal A, 2004, 270: 245
|
[19] | Chen B H, Huang Y N. J Phys Chem C, 2007, 111: 15236
|
[20] | Song Ch M, Feng Y, Ma L L. Microporous Mesoporous Mater, 2012, 147: 205
|
[21] | Chen B H, Huang Y N. J Am Chem Soc, 2006, 128: 6437
|
[22] | Zhang B, Xu J, Fan F T, Guo Q, Tong X Q, Yan W F, Yu J H, Deng F, Li C, Xu R R. Microporous Mesoporous Maters, 2012, 147: 212
|
[23] | Cheng T, Xu J, Li X, Li Y, Zhang B, Yan W F, Yu J H, Sun H, Deng F, Xu R R. Microporous Mesoporous Mater, 2012, 152: 190
|
[24] | Liu G Y, Tian P, Zhang Y, Li J Zh, Xu L, Meng Sh H, Liu Zh M. Microporous Mesoporous Mater, 2008, 114: 416
|
[25] | Huang Y N, Richer R, Kirby C W. JPhys Chem B, 2003, 107: 1326
|
[26] | Zhang L, Bates J, Chen D H, Nie H Y, Huang Y N. J Phys Chem C, 2011, 115: 22309
|
[27] | Lutz W, Kurzhals R, Sauerbeck S, Toufar H, Buhl J Chr, Gesing T, Altenburg W, J?ger Chr. Microporous Mesoporous Mater, 2010, 132: 31
|
[28] | Yan Zh M, Chen B H, Huang Y N. Solid State Nucl Magn Reson, 2009, 35: 49
|
Full-Text
|
|
Contact Us
service@oalib.com QQ:3279437679 
WhatsApp +8615387084133
|
|