Activation energy for the decapsulation of small molecules from A-type zeolites

Authors
Kim, JSHwang, KJHong, SBNo, KT
Issue Date
1997-03-20
Publisher
WILEY-V C H VERLAG GMBH
Citation
BULLETIN OF THE KOREAN CHEMICAL SOCIETY, v.18, no.3, pp.280 - 286
Abstract
Potential energy function sets for some ion-exchanged A-type zeolites, K-A and Rb11Na1-A, were determined by introducing the X-ray crystal structures as constraints. The potential functions reproduced well the X-ray crystal structures of the monovalent ion-exchanged zeolites. The activation energies for the en- or decapsulation of small molecules (H-2, O-2, N-2, and CH4) and inert gases from the alpha-cage of model zeolites (Na-A, K-A, Rb11Na1-A, and Cs3Na9-A) were obtained by the molecular mechanical calculations. The calculated activation energies agreed well with experimental results.
Keywords
TEMPERATURE-PROGRAMMED DIFFUSION; LATTICE VIBRATIONAL CALCULATION; MONTE-CARLO CALCULATIONS; SODIUM Y-ZEOLITE; CRYSTAL-STRUCTURES; COMPUTER-SIMULATIONS; HYDROGEN ENCAPSULATION; DYNAMICS SIMULATION; GAS-ADSORPTION; NAA ZEOLITE; TEMPERATURE-PROGRAMMED DIFFUSION; LATTICE VIBRATIONAL CALCULATION; MONTE-CARLO CALCULATIONS; SODIUM Y-ZEOLITE; CRYSTAL-STRUCTURES; COMPUTER-SIMULATIONS; HYDROGEN ENCAPSULATION; DYNAMICS SIMULATION; GAS-ADSORPTION; NAA ZEOLITE; activation energy
ISSN
0253-2964
URI
https://pubs.kist.re.kr/handle/201004/143890
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