[1] Hu H., Ying W., Fang D.J.J.o.N.G.C.,
Reaction and Deactivation Kinetics of Methanol-to-Olefins Process Based on a Special TGA Reactor, Journal of Natural Gas Chemistry, 19(4): 409-416 (2010).
[2] Sena, F.C., De Souza B.F., De Almeida N.C.,
Influence of Framework Composition Over SAPO-34 and MeAPSO-34 Acidity, Applied Catalysis A: General, 406(1-2): 59-62 (2011).
[4] Tan J., Liu Z., Bao X., Liu X., Han X., He C., Zhai R.,
Crystallization and Si Incorporation Mechanisms of SAPO-34, Microporous and Mesoporous Materials, 53(1-3): 97-108 (2002).
[7] Ghalbi-Ahangari M., R.Ranjbar P., Rashidi A.M., Teymuri M.,
Synthesis of Hierarchical SAPO-34 and Its Enhanced Catalytic Performance in Methanol to Propylene Conversion Process, Petroleum Science and Technology, 37(22): 2231-2237 (2019).
[8] Ghalbi-Ahangari M., R.Ranjbar P., Rashidi A.M., Teymuri M.,
The High Selectivity of Ce-Hierarchical SAPO-34 Nanocatalyst for the Methanol to Propylene Conversion Process, Reaction Kinetics, Mechanisms and Catalysis, 122(2): 1265-1279 (2017).
[9] Dubois D.R., Obrzut DL., Liu J., Thundimadathil J.,
Conversion of Methanol to Olefins Over Cobalt-Manganese-and Nickel-Incorporated SAPO-34 Molecular Sieves, Fuel Processing Technology, 83(1-3): 203-218 (2003).
[10] Ye L., Cao F., Ying W., Fang D., Sun Q.,
Effect of Different TEAOH/DEA Combinations on SAPO-34’s Synthesis and Catalytic Performance, Journal of Porous Materials, 18(2): 225-232 ( 2011).
[11] Zhang D., Zhang D., Wei Y., Xu L., Chang F., Liu Z., Meng S.,
MgAPSO-34 Molecular Sieves with Various Mg Stoichiometries: Synthesis, Characterization and Catalytic Behavior in the Direct Transformation of Chloromethane Into Light Olefins, J. Ind. Eng. Chem,
116(1-3): 684-692 (2008).
[12] Campelo J., Campelo J.M., Garcia A., Herencia J.F., Luna D.,
Conversion of Alcohols (α-Methylated Series) on AlPO4 Catalysts, J. Catalysis, 151(2): 307-314 (1995).
[18] Gandarillas A.E.M., Geem K.M.V., Reyniers M.F., Marin G.B.,
Coking Resistance of Specialized Coil Materials During Steam Cracking of Sulfur-Free Naphtha Ullmann›s
. Encyclopedia of Industrial Chemistry, 53(35): 13644-13655 (2014).
[20] Kang M.,
Methanol Conversion on Metal-Incorporated SAPO-34s (MeAPSO-34s), Journal of Molecular Catalysis A: Chemical, 160(2): 437-444 (2000).
[21] Wei Y., He Y., Zhang D., Xu L., Meng S., Liu Z., Sue B.L.,
Study of Mn Incorporation into SAPO Framework: Synthesis, Characterization and Catalysis in Chloromethane Conversion to Light Olefins, Microporous and Mesoporous Materials, 90(1): 188-197 (2006).