Sastre German, Lewis Dewi W, Catlow C Richard A.Modeling of silicon substitution in SAPO-5 and SAPO-34 molecular sieves[J].Journal of Physical Chemistry B, 1997, 101(27):5249-5262.
[5]
Barthomeuf D.Zeolite acidity dependence on structure and chemical environment.Correlations with catalysis[J].Materials Chemistry and Physics, 1987, 17(1-2):49-71.
[6]
Prakash A M, Unnikrishnan S.Synthesis of SAPO-34:High silicon incorporation in the presence of morpholine as template[J].Journal of the Chemical Society:Faraday Transactions, 1994, 90(15):2291-2296.
[7]
Xu Lei, Du Aiping, Wei Yingxu, et al.Synthesis of SAPO-34 with only Si(4Al) species:Effect of Si contents on Si incorporation mechanism and Si coordination environment of SAPO-34[J].Microporous and Mesoporous Materials, 2008, 115(3):332-337.
Chae Hojeong, Park Injung, Song Youngha, et al.Physicochemical characteristics of SAPO-34 molecular sieves synthesized with mixed templates as MTO catalysts[J].Journal of Nanoscience and Nanotechnology, 2010, 10(1):195-202.
[11]
Liu Guangyu, Tian Peng, Liu Zhongmin.Synthesis of SAPO-34 molecular sieves templated with diethylamine and their properties compared with other templates[J].Chinese Journal of Catalysis, 2012, 33(1):174-182.
[12]
Salmasi M, Fatemi S, Hashemi S J.MTO reaction over SAPO-34 catalysts synthesized by combination of TEAOH and morpholine templates and different silica sources[J].Scientia Iranica, 2012, 19(6):1632-1637.
Popova M, Minchev Ch, Kanazirev V.Methanol conversion to light alkenes over SAPO-34 molecular sieves synthesized using various sources of silicon and aluminium[J].Applied Catalysis A:General, 1998, 169:227-235.
Brent M Lok, Celeste A Messina, Robert L Patton, et al.Crystalline silicoaluminophosphates:US, 4440871[P].1984-04-03.
[17]
Nasim Najafi, Sima Askari, Rouein Halladj.Hydrothermal synthesis of nanosized SAPO-34 molecular sieves by different combinations of multi templates[J].Powder Technology, 2014, 254:324-330.
Lee Yun Jo, Baek Seung Chan, Jun Ki Won.Methanol conversion on SAPO-34 catalysts prepared by mixed template method[J].Applied Catalysis A:General, 2007, 329:130-136.
[21]
Park Jong Hwa, Heo Hyeon Su, Park Young Kwon, et al.Catalytic degradation of high-density polyethylene over SAPO-34 synthesized with various templates[J].Korean Journal of Chemical Engineering, 2010, 27(6):1768-1772.
Schmidt Franz, Paasch Silvia, Brunner Eike, et al.Carbon templated SAPO-34 with improved adsorption kinetics and catalytic performance in the MTO-reaction[J].Microporous and Mesoporous Materials, 2012, 164:214-221.
[25]
Vistad O B, Hansen E W, Akporiaye D E, et al.Multinuclear NMR analysis of SAPO-34 gels in the presence and absence of HF:The initial gel[J].The Journal of Physical Chemistry A, 1999, 103(15):2540-2552.
Abbad B, Attou M, Kessler H.Synthesis of the silicoaluminophosphate molecular sieve SAPO-31 in the presence of fluoride ions and its characterization[J].Microporous and Mesoporous Materials, 1998, 21(1):13-18.
Zhang Dazhi, Wei Yingxu, Xu Lei, et al.MgAPSO-34 molecular sieves with various Mg stoichiometries:Synthesis, characterization and catalytic behavior in the direct transformation of chloromethane into light olefins[J].Microporous and Mesoporous Materials, 2008, 116(1-3):684-692.
[34]
Sun Hsiang-Ning, Vaughn Stephen Neil.Use of alkaline earth metal containing small pore non-zeolitic molecular sieve catalysts in oxygenate conversion:US, 6040264[P].2000-05-21.
[35]
Maede Salmasi, Shohreh Fatemi, Ali Taheri Najafabadi.Improvement of light olefins selectivity and catalyst lifetime in MTO reaction;Using Ni and Mg-modified SAPO-34 synthesized by combination of two templates[J].Journal of Industrial and Engineering Chemistry, 2011, 17(4):755-761.
[36]
Kang Misook.Methanol conversion on metal-incorporated SAPO-34s(MeAPSO-34s)[J].Journal of Molecular Catalysis A, 2000, 160(2):437-444.
[37]
Dubois Delphine R, Obrzut Daniel L, Jing Liu, et al.Conversion of methanol to olefins over cobalt-, manganese-, and nickel-incorporated SAPO-34 molecular sieves[J].Fuel Processing Technology, 2003, 83(1):203-218.
Kang Misook, Inui Tomoyuki.Effects of decrease in number of acid sites located on the external surface of Ni-SAPO-34 crystalline catalyst by the mechanochemical method[J].Catalysis Letters, 1998, 53(3-4):171-176.
[40]
Tian Shuxun, Ji Shengfu, Lü Dandan, et al.Preparation of modified Ce-SAPO-34 catalysts and their catalytic performances of methanol to olefins[J].Journal of Energy Chemistry, 2013, 22(4):605-609.
[41]
Obrzut Daniel L, Adekkanattu Prakash M, Thundimadathil Jyothi, et al.Reducing methane formation in methanol to olefins reaction on metal impregnated SAPO-34 molecular sieve[J].Reaction Kinetics and Catalysis Letters, 2003, 80(1):113-121.
[42]
Shun Chong Fung, Doron Levin, Jose Santiesteban, et al.Conversion of oxygenates to olefins:US, 7166757B2[P].2007-01-23.
Shalmani Fariba Marzpour, Halladj Rouein, Askari Sima.Effect of contributing factors on microwave-assisted hydrothermal synthesis of nanosized SAPO-34 molecular sieves[J].Powder Technology, 2012, 221:395-402.
[47]
Wu Lei, Liu Ziyu, Qiu Minghuang, et al.Morphology control of SAPO-34 by microwave synthesis and their performance in the methanol to olefins reaction[J].Reaction Kinetics Mechanisms and Catalysis, 2014, 111(1):319-334.
[48]
Wang Tizhuang, Lu Xuchen, Yan Yan.Synthesis of SAPO-34 from metakaolin:Crystallization mechanism of SAPO-34 and transformation processes of metakaolin[J].Microporous and Mesoporous Materials, 2013, 168:155-163.