Volume 38 Issue 02
Apr.  2010
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WEN Xia, Sun-Nan-Nan, Li-Bi, Li-Jun-Beng, Wang-Feng, Diao-Ning, Xiao-Fu-Kuai, Wei-Wei, Sun-Yu-Han, Lin-Ze-Hou, Guo-Jin-Gang, Wang-Zhi-Jie, Li-Qiang, Tun-Zhi-Bin. Dynamic adsorption study of CO2 adsorption by MgO/Al2O3 [J]. Journal of Fuel Chemistry and Technology, 2010, 38(02): 247-251.
Citation: WEN Xia, Sun-Nan-Nan, Li-Bi, Li-Jun-Beng, Wang-Feng, Diao-Ning, Xiao-Fu-Kuai, Wei-Wei, Sun-Yu-Han, Lin-Ze-Hou, Guo-Jin-Gang, Wang-Zhi-Jie, Li-Qiang, Tun-Zhi-Bin. Dynamic adsorption study of CO2 adsorption by MgO/Al2O3 [J]. Journal of Fuel Chemistry and Technology, 2010, 38(02): 247-251.

Dynamic adsorption study of CO2 adsorption by MgO/Al2O3

  • Received Date: 2009-08-19
  • Rev Recd Date: 2009-11-02
  • Publish Date: 2010-04-30
  • A MgO/Al2O3 adsorbent prepared with impregnation method was characterized by using N2-adsorption and XRD, and its CO2 kinetic sorption properties were studied by means of breakthrough analysis in a fixed bed flow adsorber. The effects of MgO loadings, adsorption temperatures and gas flow rates were investigated. The stability and regenerative abilities were studied by cyclic experiment. The results indicated that the optimal loading of MgO was 10%, the maximal adsorption capacities were achieved when the temperature was 50℃ and the gas flow rate was 45mL/min. The texture properties as well as the adsorption capacity were maintained in multiple cycles, thus the MgO/Al2O3 adsorbent could be considered as a potential CO2 adsorption in industrial application.
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