Molecular simulation studies of water physisorption in zeolites

被引:120
作者
Di Lella, Angela
Desbiens, Nicolas
Boutin, Anne
Demachy, Isabelle
Ungerer, Philippe
Bellat, Jean-Pierre
Fuchs, Alain H.
机构
[1] ENSCP, F-75231 Paris 05, France
[2] Univ Paris 06, F-75231 Paris 05, France
[3] Univ Bourgogne, CNRS, Lab Rech Reactiv Solides, UMR 5613, F-21078 Dijon, France
[4] IFP Energies Nouvelles, F-92852 Rueil Malmaison, France
[5] CNRS, Chim Phys Lab, UMR 8000, F-91405 Orsay, France
[6] Univ Paris 11, F-91405 Orsay, France
关键词
D O I
10.1039/b610621h
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We report a series of Grand Canonical Monte Carlo simulations of water adsorption in NaY and NaX faujasite, as well as in silicalite-1. Computed adsorption isotherms and heats of adsorption were in good agreement with the available experiments. The existence of cyclic water hexamers in NaX located in the 12-ring windows, recently disclosed by neutron diffraction experiments (Hunger et al., J. Phys. Chem. B, 2006, 110, 342-353) was reproduced in our simulations. Interestingly enough, such cyclic hexamer clusters were also observed in the case of NaY, in which no stabilizing cation is present in the 12-ring window. We also report cation redistribution upon water adsorption for sodium faujasite with varying cation contents (Si : Al ratio in the range 1.53-3). A simple and transferable forcefield was used, that enabled to reproduce the different aspects of water physisorption in stable zeolites. The high pressure water condensation in hydrophobic silicalite-1 was reproduced without any parameter readjustment. The method and forcefield used here should be useful for engineering oriented applications such as the prediction of multi-component mixture adsorptive separations in various stable zeolites. It allows to address the issue of the effect of the small amounts of water that are almost inevitably present in zeolite-based separation processes.
引用
收藏
页码:5396 / 5406
页数:11
相关论文
共 97 条
[61]   Modeling the effect of hydration in zeolite Na+-mordenite [J].
Maurin, G ;
Bell, RG ;
Devautour, S ;
Henn, F ;
Giuntini, JC .
JOURNAL OF PHYSICAL CHEMISTRY B, 2004, 108 (12) :3739-3745
[62]   Adsorption of chlorofluorocarbons in nanoporous solids;: a combined powder neutron diffraction and computational study of CFCl3 in NaY zeolite [J].
Mellot-Draznieks, C ;
Rodriguez-Carvajal, J ;
Cox, DE ;
Cheetham, AK .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2003, 5 (09) :1882-1887
[63]   Placement of cations in NaX faujasite-type zeolite using (N, V, T) Monte Carlo simulations [J].
Mellot-Draznieks, C ;
Buttefey, S ;
Boutin, A ;
Fuchs, AH .
CHEMICAL COMMUNICATIONS, 2001, (21) :2200-2201
[64]  
MEUNIER F, 2001, P 7 C FUND ADS ELS
[65]   Effect of preadsorbed water on the adsorption of p-xylene and m-xylene mixtures on BaX and BaY zeolites [J].
Moïse, JC ;
Bellat, JP .
JOURNAL OF PHYSICAL CHEMISTRY B, 2005, 109 (36) :17239-17244
[66]  
Moïse JC, 2001, MICROPOR MESOPOR MAT, V43, P91
[67]  
Nicholson D., 1982, COMPUTER SIMULATION
[68]   Cation migration in zeolites: An in situ powder diffraction and MAS NMR study of the structure of zeolite Cs(Na)-Y during dehydration [J].
Norby, P ;
Poshni, FI ;
Gualtieri, AF ;
Hanson, JC ;
Grey, CP .
JOURNAL OF PHYSICAL CHEMISTRY B, 1998, 102 (05) :839-856
[69]   Affinity transformation from hydrophilicity to hydrophobicity of water molecules on the basis of adsorption of water in graphitic nanopores [J].
Ohba, T ;
Kanoh, H ;
Kaneko, K .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2004, 126 (05) :1560-1562
[70]   CRYSTAL-STRUCTURE AND STRUCTURE-RELATED PROPERTIES OF ZSM-5 [J].
OLSON, DH ;
KOKOTAILO, GT ;
LAWTON, SL ;
MEIER, WM .
JOURNAL OF PHYSICAL CHEMISTRY, 1981, 85 (15) :2238-2243