TY - JOUR
T1 - Influence of regeneration conditions on the cyclic performance of amine-grafted mesoporous silica for CO2 capture
T2 - An experimental and statistical study
AU - Serna-Guerrero, Rodrigo
AU - Belmabkhout, Youssef
AU - Sayari, Abdelhamid
PY - 2010/7/15
Y1 - 2010/7/15
N2 - This work deals with the behavior of amine-grafted mesoporous silica (referred to as TRI-PE-MCM-41) throughout adsorption-desorption cycles in the presence of 5% CO2/N2 using various regeneration conditions in batch experiments. The criteria proposed to determine the optimum regeneration conditions are the working adsorption capacity, the rate of desorption and the change of adsorption capacity between consecutive cycles. Using a 23 factorial design of experiments, the impact on the performance of the adsorbent of different levels of temperature, pressure, and flow rate of purge gas during desorption was determined. It was found that all the parameters under study have a statistically significant influence on the working adsorption capacity, but only temperature is influential with respect to desorption rate. Regeneration using temperature swing was found to be attractive, as the highest CO2 adsorption capacity (1.95 mmol g-1) and the fastest desorption rate (9.82×10-4 mmol g-1 s-1) occurred when desorption was carried out at 150 °C. However, if vacuum is applied, regeneration can be achieved at a temperature as low as 70 °C with only a 13% penalty in terms of working adsorption capacity. It was also demonstrated that under the proper regeneration conditions, TRI-PE-MCM-41 is stable over 100 adsorption-desorption cycles.
AB - This work deals with the behavior of amine-grafted mesoporous silica (referred to as TRI-PE-MCM-41) throughout adsorption-desorption cycles in the presence of 5% CO2/N2 using various regeneration conditions in batch experiments. The criteria proposed to determine the optimum regeneration conditions are the working adsorption capacity, the rate of desorption and the change of adsorption capacity between consecutive cycles. Using a 23 factorial design of experiments, the impact on the performance of the adsorbent of different levels of temperature, pressure, and flow rate of purge gas during desorption was determined. It was found that all the parameters under study have a statistically significant influence on the working adsorption capacity, but only temperature is influential with respect to desorption rate. Regeneration using temperature swing was found to be attractive, as the highest CO2 adsorption capacity (1.95 mmol g-1) and the fastest desorption rate (9.82×10-4 mmol g-1 s-1) occurred when desorption was carried out at 150 °C. However, if vacuum is applied, regeneration can be achieved at a temperature as low as 70 °C with only a 13% penalty in terms of working adsorption capacity. It was also demonstrated that under the proper regeneration conditions, TRI-PE-MCM-41 is stable over 100 adsorption-desorption cycles.
KW - Adsorbent regeneration
KW - Aminosilane grafting
KW - CO adsorption
KW - Desorption rate
KW - MCM-41
UR - http://www.scopus.com/inward/record.url?scp=77953127638&partnerID=8YFLogxK
U2 - 10.1016/j.ces.2010.04.029
DO - 10.1016/j.ces.2010.04.029
M3 - Article
AN - SCOPUS:77953127638
SN - 0009-2509
VL - 65
SP - 4166
EP - 4172
JO - Chemical Engineering Science
JF - Chemical Engineering Science
IS - 14
ER -