Issue
Korean Journal of Chemical Engineering,
Vol.29, No.2, 249-262, 2012
Adsorptive separation of carbon dioxide by polyethyleneimine modified adsorbents
Utilization of carbon dioxide (CO2) has become an important global issue due to significant and continuous rise in atmospheric CO2 concentrations. To find a potential solution, two types of mesoporous materials, MCM-41 and MCM-48, were synthesized and impregnated with 30, 50 and 70 wt% of polyethyleneimine (PEI) in methanol to evaluate the performance of the materials in terms of CO2 adsorption. The materials were characterized by XRD, TGA, FTIR,TEM, SEM, N2-physisorption and BET techniques. All the PEI-loaded materials exhibited substantially higher reversible CO2 adsorption-desorption behaviors with >99% recovery. The above study proved that MCM-48 is a better material as compared to MCM-41 for loading of PEI. The material with 50 wt% loading of PEI on MCM-48, showed maximum adsorption of 248 mg/g-PEI at 80℃ which is about 30 times higher than that of MCM-48 and about 2.3 times that of pure PEI.
[References]
  1. Song CS, Catal. Today, 115(1-4), 2, 2006
  2. Climate Change 2001: The scientific basis, Contribution of working group I to the third assessment report of the intergovernmental panel on climate change, Cambridge, United Kingdom and New York (NY, USA): Cambridge University Press, 2001
  3. Forster P, Ramaswamy V, Artaxo P, Berntsen T, Betts R, Fahey DW, Haywood J, Climate change 2007: The physical science basis, Intergovernmental Panel on Climate Change. Cambridge: Cambridge University Press, 2007
  4. Shekhawat D, Luebke DR, Pennline HW, A topical report: A review of carbon dioxide selective membranes, National Energy Technology Laboratory, United States Department of Energy, 2003
  5. Bernal MP, Coronas J, Menendez M, Santamaria J, AIChE J., 50(1), 127, 2004
  6. Lin H, Freeman BD, J. Mol. Struct., 739, 57, 2005
  7. Sakamoto Y, Nagata K, Yogo K, Yamada K, Micropor. Mesopor. Mater., 101, 303, 2007
  8. Kumar P, Kim S, Ida J, Guliants VV, Ind. Eng. Chem. Res., 47(1), 201, 2008
  9. Ho MT, Allinson GW, Wiley DE, Ind. Eng. Chem. Res., 47(5), 1562, 2008
  10. Park SW, Suh DS, Hwang KS, Kumazawa H, Korean J.Chem. Eng., 4, 285, 1997
  11. Zheng F, Tran DN, Busche BJ, Fryxell GE, Addleman RS, Zemanian TS, Aardahl CL, Ind. Eng. Chem. Res., 44(9), 3099, 2005
  12. Gray ML, Soong Y, Champagne KJ, Pennline H, Baltrus JP, Stevens RW, Khatri R, Chuang SSC, Filburn T, Fuel Process. Technol., 86(14-15), 1449, 2005
  13. Bounaceur R, Lape N, Roizard D, Vallieres C, Favre E, Energy, 31(14), 2556, 2006
  14. Franchi RS, Harlick PJE, Sayari A, Ind. Eng. Chem. Res., 44(21), 8007, 2005
  15. Knowles GP, Graham JV, Delaney SW, Chaffee AL, Fuel Process. Technol., 86(14-15), 1435, 2005
  16. Kim S, Ida J, Guliants VV, Lin JYS, J. Phys. Chem. B, 109(13), 6287, 2005
  17. Guliants VV, Carreon MA, Lin YS, J. Membr. Sci., 235(1-2), 53, 2004
  18. Knofel C, Descarpentries J, Benzaouia A, Zelenak V, Mornet S, Llewellyn PL, Hornebecq V, Micropor. Mesopor. Mater., 99, 79, 2007
  19. Hiyoshi N, Yogo K, Yashima T, Stud. Surf. Sci. Catal.,
  20. Knowles GP, Delaney SW, Chaffee AL, Stud. Surf. Sci.Catal., 156, 887, 2005
  21. Beck JS, Vartuli JC, Roth WJ, Leonowicz ME, Kresge CT, Schmitt KD, Chu CTW, Olson DH, Sheppard EW, McCullen SB, Higgins JB, Schlenker JL, J. Am. Chem. Soc., 114, 10834, 1992
  22. Schumacher K, Ravikovitch PI, Du Chesne A, Neimark AV, Unger KK, Langmuir, 16(10), 4648, 2000
  23. Hartmann M, Bischof C, J. Phys. Chem. B, 103(30), 6230, 1999
  24. Zhao XS, Lu GQ, Hu X, Colloids Surf. A., 179, 261, 2001
  25. Kawi S, Te M, Catal. Today, 44(1-4), 101, 1998
  26. Schumacher K, Grun M, Unger KK, Micropor. Mesopor.Mater., 27, 201, 1999
  27. Sayari A, J. Am. Chem. Soc., 122(27), 6504, 2000
  28. Tatsumi T, Koyano KA, Tanaka Y, Nakata S, J. Porous Mater., 6, 13, 1999
  29. Yoshitake H, Yokoi T, Tatsumi T, Chem. Mater., 14, 4603, 2002
  30. Fryxell GE, Liu J, Hauser TA, Nie Z, Ferris KP, Mattigod S, Gong M, Hallen RT, Chem. Mater., 11, 2148, 1999
  31. Lin X, Chuah GK, Jaenicke SJ, J. Mol. Catal. A: Chem., 150, 287, 1999
  32. Shen SC, Chen XY, Kawi S, Langmuir, 20(21), 9130, 2004
  33. Huang HY, Yang RT, Chinn D, Munson CL, Ind. Eng. Chem. Res., 42(12), 2427, 2003
  34. Chaffee AL, Delaney SW, Knowles GP, Abstr. Pap. Am.Chem. Soc., 223, 2002
  35. Xu XC, Song CS, Andresen JM, Miller BG, Scaroni AW, Energy Fuels, 16(6), 1463, 2002
  36. Xu X, Song C, Andresen JM, Miller BG, Scaroni AW, Micropor. Mesopor. Mater., 62, 29, 2003
  37. Xu XC, Song CS, Miller BG, Scaroni AW, Fuel Process. Technol., 86(14-15), 1457, 2005
  38. Wang X, Schwartz V, Clark JC, Ma X, Overbury SH, Xu X, Song C, J. Phys. Chem. C., 113, 7260, 2009
  39. Siriwardane RV, Shen MS, Fisher EP, Poston JA, Energy Fuels, 15(2), 279, 2001
  40. Berlier K, Frere M, J. Chem. Eng. Data, 42(3), 533, 1997
  41. van der Vaart R, Huiskes C, Bosch H, Reith T, Adsorption., 6, 311, 2000
  42. Dreisbach F, Staudt R, Keller JU, Adsorption., 5, 215, 1999
  43. Satyapal S, Filburn T, Trela J, Strange J, Energy Fuels, 15(2), 250, 2001