工业CO2排放量增加导致的气候变化引起了全球性的关注.在CO2捕集技术中,利用钙基吸收剂循环反应捕集CO2技术以其经济性及良好的适应性而备受关注.主要评述了钙基吸收剂循环反应特性,分析和总结了该技术存在的问题以及改进方法,阐述了基于该技术的反应器的特性和研究现状,展望了未来钙基吸收剂循环吸收CO2技术的发展方向.
参考文献
[1] | 黄绍兰,童华,王京刚,戎丽.CO2捕集回收技术研究[J].环境污染与防治,2008(12):77-82. |
[2] | Anthony EJ .Solid looping cycles: A new technology for coal conversion[J].Industrial & Engineering Chemistry Research,2008(6):1747-1754. |
[3] | 李振山,蔡宁生,黄煜煜,韩海锦.CaO循环吸收CO2的实验研究[J].燃烧科学与技术,2005(04):379-383. |
[4] | 李振山,蔡宁生,黄煜煜,韩海锦.钙基二氧化碳吸收剂循环反应特性[J].工程热物理学报,2006(z2):215-218. |
[5] | 乔春珍,王宝利,肖云汉.不同钙基CO2吸收剂的循环特性研究[J].燃料化学学报,2010(04):478-482. |
[6] | Abanades J C;Alvarez D .Conversion limits in the reaction of CO2 with lime[J].Energy and Fuels,2003,17(02):308. |
[7] | Wang, JS;Anthony, EJ .On the decay behavior of the CO2 absorption capacity of CaO-based sorbents[J].Industrial & Engineering Chemistry Research,2005(3):627-629. |
[8] | Grasa GS;Abanades JC .CO2 capture capacity of CaO in long series of carbonation/calcination cycles[J].Industrial & Engineering Chemistry Research,2006(26):8846-8851. |
[9] | Ping Sun;C. Jim Lim;John R. Grace .Cyclic CO2 Capture by Limestone- Derived Sorbent During Prolonged Calcination/Carbonation Cycling[J].AIChE Journal,2008(6):1668-1677. |
[10] | Salvador C;Lu D;Anthony E J et al.Enhancement of CaO for CO2 capture in an FBC environment[J].Chemical Engineering Journal,2003,96(1-3):187. |
[11] | Aihara M;Nagai T;Matsushita J et al.Development of porous solid reactant for thermaal-energy storage and temperature upgrade using carbonation/decarbonation reaction[J].Applied Energy,2001,69(03):225. |
[12] | Roesch A;Reddy E P;Smirniotis P G .Parametric study of Cs/CaO sorbents withrespect to simulated flue gas at high temperatures[J].Industrial and Engineering Chemistry Research,2005,44:6485. |
[13] | Sun Rongyue;Li Yingjie;Liu Hongling et al.CO2 capture performance of calcium-based sorbent doped with manganese salts during calcium looping cycle[J].Applied Energy,2011,89(01):368. |
[14] | Cyclic CO_2 capture behavior of KMnO_4-doped CaO-based sorbent[J].Fuel,2010(3):642. |
[15] | Li Zhenshan;Cai Ningsheng;Huang Yuyu .Effect of preparation temperature on cyclic CO2 capture and multiple carbonatior-calcination cycles for a new Ca-based CO2 sorbent[J].Industrial and Engineering Chemistry Research,2006,45(06):1911. |
[16] | Sun P;Grace JR;Lim CJ;Anthony EJ .Investigation of attempts to improve cyclic CO2 capture by sorbent hydration and modification[J].Industrial & Engineering Chemistry Research,2008(6):2024-2032. |
[17] | R.Pacciani;C.R.Miiller;J.F.Davidson .How Does the Concentration of CO2 Affect Its Uptake by a Synthetic Ca-Based Solid Sorbent?[J].AIChE Journal,2008(12):3308-3311. |
[18] | Manovic V;Anthony E J .CaO-based pellets supported by calcium aluminate cements for high-temperature CO2 capture[J].Environmental Science and Technology,2009,43:7117. |
[19] | 李英杰,赵长遂,李庆钊,段伦博.作为新型C02吸收剂的乙酸钙循环碳酸化特性[J].中国电机工程学报,2008(08):65-70. |
[20] | Yingjie Li;Rongyue Sun;Hongling Liu .Cyclic CO2 Capture Behavior of Limestone Modified with Pyroligneous Acid (PA) during Calcium Looping Cycles[J].Industrial & Engineering Chemistry Research,2011(17):10222-10228. |
[21] | Manovic V;Lu D;Anthony E J .Steam hydration of sorbents from a dual fiuidized bed CO2 looping cycle reactor[J].Fuel,2008,87:3344. |
[22] | Robin W. Hughes;Dennis Lu;Edward J. Anthony;Yinghai Wu .Improved Long-Term Conversion of Limestone-Derived Sorbents for In Situ Capture of CO_2 in a Fluidized Bed Combustor[J].Industrial & Engineering Chemistry Research,2004(18):5529-5539. |
[23] | Frank Z .Effect of steam hydration on performance of lime sorbent for CO2 capture[J].Int J Greenhouse Gas Control,2008,2(02):203. |
[24] | Manovic V;Anthony E J .Steam reactivation of spent CaO-based sorbent for multiple CO2 capture cycles[J].Environmental Science and Technology,2007,41(05):1420. |
[25] | Blamey J;Paterson N P M;Dugwell D R et al.Mechanism of particle breakage during reactivation of CaO-based sorbents for CO2 capture[J].Energy and Fuels,2010,24:4605. |
[26] | Bhatia S K;Perlmutter D .Effect of product layer on the kinetics of the CO2-lime reaction[J].AICHE Journal,1983,29(01):79. |
[27] | Derek Mess;Adel F. Sarofim;John P. Longwell .Product Layer Diffusion during the Reaction of Calcium Oxide with Carbon Dioxide[J].Energy & Fuels,1999(5):999-1005. |
[28] | 李英杰,赵长遂.钙基吸收剂循环锻烧/碳酸化反应过程特性研究[J].中国电机工程学报,2008(02):55-60. |
[29] | Shimizu T.;Hosoda H.;Kitano K.;Inagaki M.;Tejima K.;Hirama T. .Twin fluid-bed reactor for removal of CO_2 from combustion processes[J].Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers,1999(1):62-68. |
[30] | Manovic V;Anthony E J .Screening of binders for pelletization of CaO-based sorbents for CO2 capture[J].Energy and Fuels,2009,23(10):4797. |
[31] | Vasilye Manovic;Edward J. Anthony .Long-Term Behavior of CaO-Based Pellets Supported by Calcium Aluminate Cements in a Long Series of CO2 Capture Cycles[J].Industrial & Engineering Chemistry Research,2009(19):8906-8912. |
[32] | Dennis Y.Lu;Robin W.Hughes;Edward J.Anthony .Ca-based sorbent looping combustion for CO2 capture in pilot-scale dual fluidized beds[J].Fuel Processing Technology,2008(12):1386-1395. |
[33] | Hughes R W;Lu D Y;Anthony E J et al.Design process simulation and construction of an atmospheric dual fluidized bed combustion system for in situ CO2 capture using hightemperature sorbents[J].Fuel Process Techn,2005,86(14-15):1523. |
[34] | MacKenzie A;Granatstein D L et al.Economics of CO2 capture using the calcium cycle with a pressurized fluidized bed combustor[J].Energy and Fuels,2007,21(02):920. |
[35] | Fang Fan;Li Zhenshan;Cai Ningsheng .Experiment and modeling of CO2 capture from flue gases at high temperature in fluidized bed reactor with Ca-based sorbents[J].Energy and Fuels,2009,23(01):207. |
[36] | Fang Fan;Li Zhenshan;Cai Ningsheng .Continuous CO2 capture from flue gases using a dual fluidized bed reactor with ca-based sorbent[J].Industrial and Engineering Chemistry Research,2009,48(24):11140. |
[37] | Fang Fan;Li Zhenshan;Cai Ningsheng .CO2 capture from flue gases in a fluidized bed using limestone[J].Korean Journal of Chemical Engineering,2009,26(05):1414. |
[38] | J. CARLOS ABANADES;G. GRASA;M. ALONSO .Cost Structure of a Postcombustion CO2 Capture System Using CaO[J].Environmental Science & Technology: ES&T,2007(15):5523-5527. |
[39] | Charitos A;Hawthorne C;Bidwe A R.Parametric study on the CO2 capure efficiency of the carbonate looping process in a 10 kW dual fluidized bed[A].北京,2009:583. |
[40] | L. Jia;R. Hughes;D. Lu .Attrition of Calcining Limestones in Circulating Fluidized-Bed Systems[J].Industrial & Engineering Chemistry Research,2007(15):5199-5209. |
[41] | Guo Mingnu;Zhang Li;Yang Zhongqing et al.Removal of CO2 by CaO/MgO and CaO/Ca9A16 O13 in the psresence of SO2[J].Energy and Fuels,2011,25(11):5514. |
[42] | Sun P;Grace JR;Lim CJ;Anthony EJ .Determination of intrinsic rate constants of the CaO-CO2 reaction[J].Chemical Engineering Science,2008(1):47-56. |
[43] | Sun P;Grace J R;Lim C J et al.Removal of CO2 by calciumbased sorbents in the presence of SO2[J].Energy and Fuels,2007,21(01):163. |
[44] | González B;Alonso M;Abanades J C .Sorbent attrition in a carbonation/calcination pilot plant for capturing CO2 from flue gas[J].Fuel,2010,89:2918. |
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