Conversion of carbon dioxide to valuable petrochemicals:An approach to clean development mechanism

被引:8
作者
Farnaz Tahriri Zangeneh [1 ]
Saeed Sahebdelfar [1 ]
Maryam Takht Ravanchi [1 ]
机构
[1] Catalyst Research Group, Petrochemical Research and Technology Company (NPC-RT), National Petrochemical Company
关键词
carbon dioxide utilization; C1; chemistry; clean development mechanism; catalysis; greenhouse effects;
D O I
暂无
中图分类号
TQ04 [化工原料、辅助物料];
学科分类号
0817 ;
摘要
The increase of atmospheric carbon dioxide and the global warming due to its greenhouse effect resulted in worldwide concerns. On the other hand, carbon dioxide might be considered as a valuable and renewable carbon source. One approach to reduce carbon dioxide emissions could be its capture and recycle via transformation into chemicals using the technologies in C1 chemistry. Despite its great interest, there are difficulties in CO2 separation on the one hand, and thermodynamic stability of carbon dioxide molecule rendering its chemical activity low on the other hand. Carbon dioxide has been already used in petrochemical industries for production of limited chemicals such as urea. The utilization of carbon dioxide does not necessarily involve development of new processes, and in certain processes such as methanol synthesis and methane steam reforming, addition of CO2 into the feed results in its utilization and increases carbon efficiency. In other cases, modifications in catalyst and/or processes, or even new catalysts and processes, are necessary. In either case, catalysis plays a crucial role in carbon dioxide conversion and effective catalysts are required for commercial realization of the related processes. Technologies for CO2 utilization are emerging after many years of research and development efforts.
引用
收藏
页码:219 / 231
页数:13
相关论文
共 8 条
[1]  
Effects of CO2 content on the activity and stability of nickel catalyst supported on mesoporous nanocrystalline zirconia[J]. M.Rezaei,S.M.Alavi,S.Sahebdelfar. Journal of Natural Gas Chemistry. 2008(03)
[2]   Syngas Production by Methane Reforming with Carbon Dioxide on Noble Metal Catalysts [J].
M.Rezaei ;
S.M.Alavi ;
S.Sahebdelfar ;
Zi-Feng Yan .
Journal of Natural Gas Chemistry, 2006, (04) :327-334
[3]  
Carbon dioxide: a renewable feedstock for the synthesis of fine and bulk chemicals[J] . Yogesh P. Patil,Pawan J. Tambade,Sachin R. Jagtap,Bhalchandra M. Bhanage. Frontiers of Chemical Engineering in China . 2010 (2)
[4]   Dehydrogenation of Ethylbenzene to Styrene in the Presence of CO2 over Calcined Hydrotalcite-Like Compounds as Catalysts [J].
Naoki Mimura ;
Isao Takahara ;
Masahiro Saito ;
Yoshiyuki Sasaki ;
Kazuhisa Murata .
Catalysis Letters, 2002, 78 :125-128
[5]  
Inui T. Catal R Soc Chem . 2002
[6]  
Development and integration of new process consuming carbon dioxide in multi-plant chemical production complexes .2 Sudheer Indala. Andhra University . 2004
[7]  
Song C S. Proceedings of the 16th Annual International Pittsburgh Coal Conference . 1999
[8]  
Song C S. Chem Innovat . 2001