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Original Articles

CO2 adsorption performance of polyethyleneimine-modified ion-exchange resin

, &
Pages 1628-1637 | Received 18 Sep 2017, Accepted 10 Nov 2017, Published online: 16 Jan 2018

References

  • Hofmann David, J.; Bulter James, H.; Tans Pieter, P. (2009) A new look at atmospheric carbon dioxide. Atmospheric Environment, 43 (12): 2084–2086.
  • Aaron, D.; Tsouris, C. (2005) Separation of CO2 from flue gas: A review. Separation Science and Technology, 40 (1–3): 321–348.
  • Wickramaratne, N.; Jaroniec, M. (2013) Activated carbon spheres for CO2 adsorption. ACS Applied Materials & Interfaces, 5 (5): 1849–1855.
  • Yan, W.; Tang, J.; Bian, Z.; Liu, H. (2012) Carbon dioxide capture by amine-impregnated mesocellular foam-containing template. Industrial & Engineering Chemistry Research, 51 (9): 3653–3662.
  • Samanta, A.; Zhao, A.; Shimizu, G.K.H.; Sarkar, P.; Gupta, R. (2012) Post-combustion CO2 capture using solid sorbents: A review. Industrial & Engineering Chemistry Research, 51 (4): 1438–1463.
  • Samanta, A.; Bandyopadhyay, S.S. (2009) Absorption of carbon dioxide into aqueous solutions of piperazine activated 2-amino-2-methyl-propanol. Chemical Engineering Science, 64 (6): 1185–1194.
  • Naim, R.; Ismail, A.F. (2013) Effect of fiber packing density on physical CO2 absorption performance in gas-liquid membrane contactor. Separation and Purification Technology, 115: 152–157.
  • Warmuzinski, K.; Tanczyk, M.; Jaschik, M. (2015) Experimental study on the capture of CO2 from flue gas using adsorption combined with membrane separation. International Journal of Greenhouse Gas Control, 37: 182–190.
  • Figueroa, J.D.; Fout, T.; Plasynski, S.; McIlvried, H.; Srivastava, R.D. (2008) Advances in CO2 capture technology-The U.S. department of energy’s carbon sequestration program: A review. International Journal of Greenhouse Gas Control, 2 (1): 9–20.
  • Kishor, R.; Ghosha, A.K. (2015) APTES grafted ordered mesoporous silica KIT-6 for CO2 adsorption. Chemical Engineering Journal, 262: 882–890.
  • Liu, J.-L.; Lin, R.-B. (2013) Structural properties and reactivities of amino-modified silica fume solid sorbents for low-temperature CO2 capture. Powder Technology, 241: 188–195.
  • Moioli, S.; Giuffrida, A.; Gamba, S.; Romano, M.C.; Pellegrini, L.; Lozza, G. (2014) Pre-combustion CO2 capture by MDEA process in IGCC based on air-blown gasification. Energy Procedia, 63: 2045–2053.
  • Wang, X.; Guo, Q.; Zhao, J.; Chen, L. (2015) Mixed amine-modified MCM-41 sorbents for CO2 capture. International Journal of Greenhouse Gas Control, 37: 90–98.
  • Himeno, S.; Komatsu, T.; Fujita, S. (2005) High-pressure adsorption equilibria of methane and carbon dioxide on everal activated carbons. Journal of Chemical & Engineering Data, 50 (2): 369–376.
  • Su, F.; Lu, C.; Cnen, W.; Bai, H.; Hwang, J.F. (2009) Capture of CO2 from flue gas via multiwalled carbon nanotubes. Science of the Total Environment, 407 (8): 3017–3023.
  • Klinthong, W.; Huang, C.-H.; Tan, C.-S. (2013) CO2 capture by mesoporous SBA-15 grafted with 3-aminopropyl triethoxysilane in supercritical propane. Energy Procedia, 37: 175–179.
  • Liu, Y.; Shi, J.; Chen, J.; Ye, Q.; Pan, H.; Shao, Z.; Shi, Y. (2010) Dynamic performance of CO2 adsorption with tetraethylenepentamine-loaded KIT-6. Microporous and Mesoporous Materials, 134: 16–21.
  • Khatri, R.A.; Chuang, S.S.C.; Soong, Y.; Gray, M. (2006) Thermal and chemical stability of regenerable solid amine sorbent for CO2 capture. Energy & Fuels, 20 (4): 1514–1520.
  • Hiyoshi, N.; Yogo, K.; Yashima, T. (2005) Adsorption characteristics of carbon dioxide on organically functionalized SBA-15. Microporous and Mesoporous Materials, 84 (1): 357–365.
  • Zhilin, L.; Yang, T.; Kai, Z.; Yan, C.; Weiping, P. (2013) The CO2 adsorption and thermal stability of MCM-41 modified by different organic amines. Journal of Fuel Chemistry and Technology, 41 (4): 469–476.
  • Beibei, Z.; Jitong, W.; Mei, W. (2014) Ambient temperature sorption of low-concentration carbon dioxide on resin-based solid amine sorbents. Acta Scientiae Circumstantiae, 34 (11): 2892–2898.
  • Chang, D.R.; Harden, S.; Loverro, N. (1986) Protonation of polyethylenimine. Journal of Macromolecular Science: Part A-Chemistry, 23 (6): 801–804.
  • Koper, G.; Van Duijvenbode, R.C.; Stan, D.D.P.W.; Borkovec, M. (2003) Synthesis and protonation behavior of comblike polyethyleneimine. Macromolecules, 36 (7): 2500–2507.
  • Xia, W.; Qingjie, G.; Tongtong, K. (2015) Tetraethylenepentamine-modified MCM-41/silica gel with hierarchical mesoporous structure for CO2 capture. Chemical Engineering Journal, 273 (3): 472–480.
  • Xue-Shi, Z.; Xin-Min, L. (2015) Preparation and performance of modified molecular sieve for carbon dioxide capture. Chinese Journal of Environmental Engineering, 9 (10): 4995–4999.
  • Jin-Xing, H.; Guo-Cheng, W.; Tao, J. (2012) Preparation and performance of sulphonated polystyrene. Colloid and Polymer, 30 (1): 36–38.
  • Xia, W.; Linlin, C.; Qingjie, G. (2015) Development of hybrid amine-functionalized MCM-41 sorbents for CO2 capture. Chemical Engineering Journal, 260: 573–581.
  • Linlin, C.; Xia, W.; Qingjie, G. (2015) Study on CO2 adsorption properties of tetraethylenepentamine modified mesoporous silica gel. Journal of Fuel Chemistry Technology, 43 (1): 108–115.
  • Serna-Guerrero, R.; Sayari, A. (2010) Modeling adsorption of CO2 on amine-functionalized mesoporous silica. 2: kinetics and breakthrough curves. Chemical Engineering Journal, 161: 182–190.
  • Loganathan, S.; Tikmani, M.; Edubilli, S.; Mishra, A.; Ghoshal, A.K. (2014) CO2 adsorption kinetics on mesoporous silica under wide range of pressure and temperature. Chemical Engineering Journal, 256: 1–8.
  • Heydari-Gorji, A.; Sayari, A. (2011) CO2 capture on polyethylenimine-impregnated hydrophobic mesoporous silica: Experimental and kinetic modeling. Chemical Engineering Journal, 173 (1): 72–79.
  • Zhangliang, L.; Jianhui, H. (2016) Adsorption of nitrobenzene on biochar adsorbent prepared from peanut shell. Chinese Journal of Environmental Engineering, 10 (9): 4719–4725.
  • Qadeer, R. (2007) Adsorption behavior of ruthenium on activated charcoal from nirtic acid medium. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 293 (1/2/3): 217–223.
  • Hu, Z.; Chen, H.; Ji, F.; Yuan, S. (2010) Removal of Congo Red from aqueous solution by cattail root. Journal of Hazardous Materials, 173 (1/2/3): 292–297.

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