TY - JOUR
T1 - Adsorption of N-Butane/I-Butane in Zeolites
T2 - Simulation and Theory Study
AU - Lu, Linghong
AU - Zhu, Yudan
AU - Wu, Ximing
AU - Wang, Shanshan
AU - Cao, Wei
AU - Lu, Xiaohua
PY - 2014/5
Y1 - 2014/5
N2 - Zeolite adsorption is one of the best available technologies for gas separation. We use molecular simulation to produce the data of adsorption of n-butane and i-butane and their mixture at different temperatures and pressures in different zeolites. In BEA, MOR, CFI, ISV, and BOG the amount of adsorption of i-butane is higher than n-butane, but the case is just the contrary in MFI, MEL, TER, and TON. The heats of adsorption decrease with temperature increasing for all investigated cases except for i-butane in MFI and MEL. The IAST (ideal adsorbed solution theory) is used to predict the n-butane/i-butane mixture adsorption. For the systems of BEA, MOR, CFI, and ISV, IAST theory provides predictions that are in good agreement with simulation. We propose SACIAST (surface area corrected IAST) by introducing a correcting parameter Cr into IAST to predict the adsorption of mixture in MFI, MEL, TER, TON, and BOG since the original IAST failed to predict the mixture data in these zeolites because of the pore structure of these zeolites. The SACIAST we proposed is a new modified theory based on IAST which has never been reported in the literature before, and it predicts the mixture adsorption very well
AB - Zeolite adsorption is one of the best available technologies for gas separation. We use molecular simulation to produce the data of adsorption of n-butane and i-butane and their mixture at different temperatures and pressures in different zeolites. In BEA, MOR, CFI, ISV, and BOG the amount of adsorption of i-butane is higher than n-butane, but the case is just the contrary in MFI, MEL, TER, and TON. The heats of adsorption decrease with temperature increasing for all investigated cases except for i-butane in MFI and MEL. The IAST (ideal adsorbed solution theory) is used to predict the n-butane/i-butane mixture adsorption. For the systems of BEA, MOR, CFI, and ISV, IAST theory provides predictions that are in good agreement with simulation. We propose SACIAST (surface area corrected IAST) by introducing a correcting parameter Cr into IAST to predict the adsorption of mixture in MFI, MEL, TER, TON, and BOG since the original IAST failed to predict the mixture data in these zeolites because of the pore structure of these zeolites. The SACIAST we proposed is a new modified theory based on IAST which has never been reported in the literature before, and it predicts the mixture adsorption very well
KW - adsorption
KW - simulation
KW - theory
KW - zeolite
UR - http://www.scopus.com/inward/record.url?scp=84900845414&partnerID=8YFLogxK
U2 - 10.1080/01496395.2013.878848
DO - 10.1080/01496395.2013.878848
M3 - 文章
AN - SCOPUS:84900845414
SN - 0149-6395
VL - 49
SP - 1215
EP - 1226
JO - Separation Science and Technology
JF - Separation Science and Technology
IS - 8
ER -