[1] |
IEA(International Energy Agency).CO2 Emissions from Fuel Combustion 2011-Highlights[M].Paris,France:IEA
|
[2] |
Zhou Shan(周姗).Effect of SO2 in flue gas on degradation of MEA and three other amine solvents in CO2 capture[D].Beijing:Tsinghua University,2012
|
[3] |
MacDowell N,Florin N,Buchard A,Hallett J,Galindo A,Jackson G,Adjiman C,Williams C,Shah N,Fennell P.An overview of CO2 capture technologies[J].Energy & Environmental Science,2010,3:1645-1669
|
[4] |
Rochelle G.Amine scrubbing for CO2 capture[J].Science,2009,325:1652-1654
|
[5] |
Damen K,Troost M,Faaij A.A comparison of electricity and hydrogen production systems with CO2 capture and storage(A):Review and selection of promising conversion and capture technologies[J].Progress in Energy and Combustion Science,2006,32:215-246
|
[6] |
Song H,Lee S,Park K,Lee J,Spah D,Park J,Filburn T.Simplified estimation of regeneration energy of 30wt% sodium glycinate solution for carbon dioxide absorption[J].Industrial & Engineering Chemistry Research,2008,47:9925-9930
|
[7] |
Ma'mun S,Nilsen R,Svendsen H.Solubility of carbon dioxide in 30%(mass)monoethanolamine and 50%(mass)methyldiethanolamine solutions[J].Journal of Chemical and Engineering Data,2005,50:630-634
|
[8] |
Du Min(杜敏),Zhang Li(张力),Feng Bo(冯波).Effect of adipic acid on absorption and desorption of CO2 with MEA solution[J].CIESC Journal(化工学报),2011,62(2):412-419
|
[9] |
Sakwattanapong R,Aroonwilas A,Veawab A.Behavior of reboiler heat duty for CO2 capture plants using regenerable single and blended alkanolamine[J].Industrial & Engineering Chemistry Research,2005,44:4465-4473
|
[10] |
Galindo P,Schäffer A,Brechtel K,Unterberger S,Scheffknecht G.Experimental research on the performance of CO2-loaded solutions of MEA and DEA at regeneration conditions[J].Fuel,2012,101:2-8
|
[11] |
Yokoyama T.Analysis of reboiler heat duty in MEA process for CO2 capture using equilibrium-staged model[J].Separation and Purification Technology,2012,94:97-103
|
[12] |
Jilvero H,Normann F,Andersson K,Johnsson F.Heat requirement for regeneration of aqueous ammonia on post-combustion carbon dioxide capture[J].International Journal of Greenhouse Gas Control,2012,11:205-216
|
[13] |
Zhou Shan(周姗),Wang Shujuan(王淑娟),Rochelle G,Chen Changhe(陈昌和).Experiment research on amine thermal degradation during CO2 capture[J].J.Tsinghua Univ.:Sci.and Tech.(清华大学学报),2012,52(1):81-86
|
[14] |
Oexmann J,Kather A.Minimising the regeneration heat duty of post-combustion CO2 capture by wet chemical absorption:the misguided focus on low heat of absorption solvents[J].International Journal of Greenhouse Gas Control,2010,4:36-43
|
[15] |
Kim I,Svendsen H.Heat of absorption of carbon dioxide(CO2)in monoethanolamine(MEA)and 2-(aminoethyl)-ethanolamine(AEEA)solutions[J].Industrial & Engineering Chemistry Research,2007,46:5803-5809
|
[16] |
Zhang Y,Chen H,Chen C,Plaza J,Dugas R,Rochelle G.Rate-based process modeling study of CO2 capture with aqueous monoethanolamine solution[J].Industrial & Engineering Chemistry Research,2009,48:9233-9246
|
[17] |
Lee J,Kim J,Lee I.Bench scale carbon dioxide recovery from the flue gas by monoethanolamine[J].Journal of Chemical Engineering of Japan,2010,43(8):720-726
|
[18] |
Jou F,Otto F,Mather A.Vapor-liquid equilibrium of carbon dioxide in aqueous mixtures of monoethanolamine and methyldiethanolamine[J].Industrial & Engineering Chemistry Research,1994,33:2002-2005
|
[19] |
Shen K,Li M.Solubility of carbon dioxide in aqueous mixtures of monoethanolamine with methyldiethanolamine[J].J.Chem.Eng.Data,1992,37:96-100
|
[20] |
Wagener D,Rochelle G.Stripper configurations for CO2 capture by aqueous monoethanolamine[J].Chemical Engineering Research and Design,2011,89:1639-1646
|
[21] |
Zhu Yingxin(朱迎新),Wang Shujuan(王淑娟),Zhao Bo(赵博),Chen Changhe(陈昌和).Simulation of a CO2 capture system using amine solutions for selection of absorbents[J].J.Tsinghua Univ.:Sci.and Tech.(清华大学学报),2009,49(11):1822-1825
|
[22] |
Li Sifang(黎四芳),Ren Zhengwei(任铮伟),Li Pansheng(李盘生),Lu Qionghua(路琼华).Absorption of CO2 by aqueous MDEA-MEA solution[J].Journal of Chemical Industry and Engineering(China)(化工学报),1994,45(6):698-703
|