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Progress in Chemistry 2008, Vol. 20 Issue (10): 1612-1620 Previous Articles   Next Articles

• Review •

A Novel Energy Conservation Process for Zero Emission of Carbon Dioxide:Chemical Looping Combustion

Wang Qi; Cheng Yi; Wu Changning; Jin Yong*   

  1. (Department of Chemical Engineering, Tsinghua University, Beijing 100084, China)
  • Received: Revised: Online: Published:
  • Contact: Jin Yong
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A new kind of energy conservation process for zero emission of carbon dioxide, chemical looping combustion process,is reviewed in this article. It covers several key issues such as thermodynamic analysis on the process, oxygen carrier and the reactor design. The development of the chemical looping combustion technique in the field of clean fuel combustion is further addressed. As a conceptual development of the chemical looping technique, the chemical looping reforming process is also introduced. The demand on the research and development of the chemical looping combustion is discussed.

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[ 1 ] 张仁健(Zhang R J ) , 王明星(Wang M X) . 气候与环境研究(Climatic and Environmental Research) , 2001 , 6(3) : 321 —327
[ 2 ] Ritcher H , Knoche K. ACS Symposium Series (ed. Gaggioli R A) . Washington D. C. , 1983. 71 —85
[ 3 ] Cao Y, Pan W P. Energy &Fuels , 2006 , 20(5) : 1836 —1844
[ 4 ] Cao Y, Casenas B , Pan W P. Energy & Fuels , 2006 , 20 (5) :1845 —1854
[ 5 ] Dennis J S , Scott S A , Hayhurst A N. Journal of the Energy Institute , 2006 , 79(3) : 187 —190
[ 6 ] Fan L S. APS March Meeting , 2007 , March 5 —9 , Abstract A2.00 002
[ 7 ] Ishida M, Zheng D , Akehata T. Energy , 1987 , 12(2) : 147 —154
[ 8 ] Ishida M, Jin H G. Energy , 1994 , 19(4) : 415 —422
[ 9 ] Jin H G, Ishida M. International Journal of Hydrogen Energy ,2000 , 25(12) : 1209 —1215
[10] Anheden M, Svedberg G. Energy Conversion and Management ,1998 , 39(16P18) : 1967 —1980
[11] Brandvoll a, Bolland O. Journal of Engineering for Gas Turbines and Power-Transactions of the ASME , 2004 , 126 (2) : 316 —321
[12] Cho P , Mattisson T , Lyngfelt A. Fuel , 2004 , 83 (9) : 1215 —1225
[13] Cho P , Mattisson T , Lyngfelt A. Ind. Eng. Chem. Res. , 2005 ,44(4) : 668 —676
[14] Adanez J , de Diego L F , Garcia-Labiano F , et al . Energy &Fuels , 2004 , 18(2) : 371 —377
[15] Ishida M, Jin H G. Journal of Chemical Engineering of Japan ,1994 , 27(3) : 296 —301
[16] Ishida M, Jin H G, Okamoto T. Energy &Fuels , 1996 , 10(4) :958 —963
[17] Ishida M, Jin H G, Okamoto T. Energy &Fuels , 1998 , 12(2) :223 —229
[18] Ishida M, Jin H. Energy Convers. Mgmt . , 1997 , 38 : S187 —S192
[19] Jin H G, Okamoto T , Ishida M. Ind. Eng. Chem. Res. , 1999 ,38(1) : 126 —132
[20] Johansson M, Mattisson T , Lyngfelt A. Ind. Eng. Chem. Res. ,2006 , 45(17) : 5911 —5919
[21] Jin H , Ishida M. AES (Am. Soc. Mech. Eng. ) , 2000 , 40 :547 —552
[22] Jin H G, Ishida M. International Journal of Hydrogen Energy ,2001 , 26(8) : 889 —894
[23] Ryu HJ , Bae D H , Han K H , et al . Korean Journal of Chemical Engineering , 2001 , 18(6) : 831 —837
[24] Abad A , Mattisson T , Lyngfelt A. Fuel , 2007 , 86 : 1021 —1035
[25] Johansson M, Mattisson T , Lyngfelt A. Ind. Eng. Chem. Res. ,2004 , 43(22) : 6978 —6987
[26] Zafar Q , Mattisson T , Gevert B. Energy &Fuels , 2006 , 20(1) :34 —44
[27] Corbella B M, Palacios J M. Fuel , 2007 , 86(1P2) : 113 —122
[28] De Diego L F , Gayan P , Garcia-Labiano F , et al . Energy &Fuels , 2005 , 19(5) : 1850 —1856
[29] Adanez J , Garcia-Labiano F , de Diego L F. Ind. Eng. Chem.Res. , 2006 , 45(8) : 2617 —2625
[30] Adanez J , Gayan P , Celaya J , et al . Ind. Eng. Chem. Res. ,2006 , 45(17) : 6075 —6080
[31] Corbella B M, de Diego L F , Garcia-Labiano F , et al . Energy &Fuels , 2005 , 19(2) : 433 —441
[32] Corbella B M, de Diego L F , Garcia-Labiano F , et al . Energy &Fuels , 2006 , 20(1) : 148 —154
[33] Jin H G, Okamoto T , Ishida M. Energy &Fuels , 1998 , 12(6) :1272 —1277
[34] Mattisson T, Lyngfelt A , Cho P. Fuel , 2001 , 80(13) : 1953 —1962
[35] De Diego L F , Garcia-Labiano F , Adanez J , et al . Fuel , 2004 ,83 : 1749 —1757
[36] Ishida M, Yamamoto M, Ohba T. Energy Conversion and Management , 2002 , 43(9P12) : 1469 —1478
[37] Lyngfelt A , Leckner B , Mattisson T. Chemical Engineering Science , 2001 , 56(10) : 3101 —3113
[38] Johansson E , Mattisson T , Lyngfelt A , et al . Fuel , 2006 , 85(10/11) : 1428 —1438
[39] Kronberger B , Lyngfelt A , Loffler G, et al . Ind. Eng. Chem.Res. , 2005 , 44(3) : 546 —556
[40] De Diego L F , Garcia-Labiano F , Pilar G, et al . Fuel , 2007 ,86 : 1036 —1045
[41] Cho P , Mattisson T , Lyngfelt A. Ind. Eng. Chem. Res. , 2006 ,45(3) : 968 —977
[42] Fan L S , Lyer M. The Chemical Engineering , 2006 , 784 : 36 —38
[43] Looij F V. Doctoral Dissertation , Utrecht University , 1994
[44] Stobbe E R , Boer B A , Geus J W. Catalysis Today , 1999 , 47 :161 —167
[45] Bjorgum M F E , Viig T , Rokstad O A. Catalysis Today , 2000 ,63 : 489 —497
[46] Ryden M, Lyngfelt A , Mattisson T. Fuel , 2006 , 85 ( 12/13) :1631 —1641
[47] Sturzenegger M, D’Souza L , Struis R P WJ , et al . Fuel , 2006 ,85(10/11) : 1599 —1602
[48] Zafar Q , Mattisson T , Gevert B. Ind. Eng. Chem. Res. , 2005 ,44(10) : 3485 —3496
[49] 程易(Cheng Y) , 王琦(Wang Q) , 丁石(Ding S) 等. CN 101 054 161
[50] [2008-08-20 ] . http://aiche.confex.com/aciche/2006/techprogram/P66921. htm
[51] [2007-10 ] . http://www.physorg.com/news6381. html , 2005
[52] Steinfeld A. Solar Energy , 2005 , 78(5) : 603 —615
[53] Wegner K, Ly H C , Weiss R J , et al . International Journal of Hydrogen Energy , 2006 , 31(1) : 55 —61
[54] Funk J E. International Journal of Hydrogen Energy , 2001 , 26(3) : 185 —190
[55] Besenbruch G E , Brown L C , Fund J F , et al . OECDPNEA Information Exchange Meeting on Nuclear Production of Hydrogen.France , 2000
[56] Mathias P M, Brown L C. The 68th Annual Meeting of the Society of Chemical Engineering. Japan , 2003

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