Research Progress on Propylene Preparation by Propane Dehydrogenation

被引:29
作者
Zuo, Cheng [1 ]
Su, Qian [1 ]
机构
[1] Weifang Univ, Coll Chem & Chem & Environm Engn, Weifang 261000, Peoples R China
关键词
propylene; propane; oxygen carrier; chemical looping; oxidative dehydrogenation; OXIDATIVE DEHYDROGENATION; N-BUTANE; CATALYTIC DEHYDROGENATION; REDUCTION KINETICS; REDOX CATALYSTS; MIXED OXIDES; ETHANE; CO2; ETHYLENE; OLEFINS;
D O I
10.3390/molecules28083594
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
At present, the production of propylene falls short of the demand, and, as the global economy grows, the demand for propylene is anticipated to increase even further. As such, there is an urgent requirement to identify a novel method for producing propylene that is both practical and reliable. The primary approaches for preparing propylene are anaerobic and oxidative dehydrogenation, both of which present issues that are challenging to overcome. In contrast, chemical looping oxidative dehydrogenation circumvents the limitations of the aforementioned methods, and the performance of the oxygen carrier cycle in this method is superior and meets the criteria for industrialization. Consequently, there is considerable potential for the development of propylene production by means of chemical looping oxidative dehydrogenation. This paper provides a review of the catalysts and oxygen carriers employed in anaerobic dehydrogenation, oxidative dehydrogenation, and chemical looping oxidative dehydrogenation. Additionally, it outlines current directions and future opportunities for the advancement of oxygen carriers.
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页数:13
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共 89 条
[1]   Oxidative dehydrogenation of n-butane over bimetallic mesoporous and microporous zeolites with CO2 as mild oxidant [J].
Ajayi, B. P. ;
Jermy, B. Rabindran ;
Abussaud, B. A. ;
Al-Khattaf, S. .
JOURNAL OF POROUS MATERIALS, 2013, 20 (05) :1257-1270
[2]   Kinetic Modeling of Propane Oxidative Dehydrogenation over VOx/γ-Al2O3 Catalysts in the Chemical Reactor Engineering Center Riser Reactor Simulator [J].
Al-Ghamdi, S. ;
Moreira, J. ;
de Lasa, H. .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2014, 53 (40) :15317-15332
[3]   Ethanol oxidation on carbon supported (PtSn)alloy/SnO2 and (PtSnPd)alloy/SnO2 catalysts with a fixed Pt/SnO2 atomic ratio: Effect of the alloy phase characteristics [J].
Antolini, E. ;
Colmati, F. ;
Gonzalez, E. R. .
JOURNAL OF POWER SOURCES, 2009, 193 (02) :555-561
[4]   Heterogeneous Catalyst Deactivation and Regeneration: A Review [J].
Argyle, Morris D. ;
Bartholomew, Calvin H. .
CATALYSTS, 2015, 5 (01) :145-269
[5]   Oxidative dehydrogenation of propane to propylene with carbon dioxide [J].
Atanga, Marktus A. ;
Rezaei, Fateme ;
Jawad, Abbas ;
Fitch, Mark ;
Rownaghi, Ali A. .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2018, 220 :429-445
[6]   Studies on Heat and Mass Transfer Limitations in Oxidative Dehydrogenation of Ethane over Cr2O3/Al2O3 Catalyst [J].
Bai, P. Thirumal ;
Manokaran, V. ;
Saiprasad, P. S. ;
Srinath, S. .
INTERNATIONAL CONFERENCE ON COMPUTATIONAL HEAT AND MASS TRANSFER (ICCHMT) - 2015, 2015, 127 :1338-1345
[7]   Location and structure of coke generated over Pt-Sn/Al2O3 in propane dehydrogenation [J].
Bao Khanh Vu ;
Song, Myoung Bok ;
Ahn, In Young ;
Suh, Young-Woong ;
Suh, Dong Jin ;
Kim, Jae Sung ;
Shin, Eun Woo .
JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2011, 17 (01) :71-76
[8]   Redox kinetics of ceria-based mixed oxides in selective hydrogen combustion [J].
Blank, Jan Hendrik ;
Beckers, Jurriaan ;
Collignon, Paul F. ;
Rothenberg, Gadi .
CHEMPHYSCHEM, 2007, 8 (17) :2490-2497
[9]   Oxidative dehydrogenation of short chain alkanes on supported vanadium oxide catalysts [J].
Blasco, T ;
Nieto, JML .
APPLIED CATALYSIS A-GENERAL, 1997, 157 (1-2) :117-142
[10]   Characterization and catalytic behavior in the n-butane dehydrogenation of trimetallic InPtSn/MgAl2O4 catalysts [J].
Bocanegra, Sonia A. ;
Castro, Alberto A. ;
Scelza, Osvaldo A. ;
de Miguel, Sergio R. .
APPLIED CATALYSIS A-GENERAL, 2007, 333 (01) :49-56