Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
9617552 | Microporous and Mesoporous Materials | 2005 | 10 Pages |
Abstract
n-Hexane and 1-hexene adsorption on mesoporous silicas from the vapour phase has been studied in the temperature range 260Â K up to 350Â K. Classical models for the textural characterization of MCM-41 have been employed and converged with nitrogen adsorption results. These systems were found to weakly interact with silica surface, especially in the case of n-hexane, which is demonstrated both by low CBET values and extrapolation at zero coverage of isosteric enthalpies of adsorption which do not depend on pore size. Values ranging between â37 and â43Â kJÂ molâ1 for n-hexane and â47 up to â55Â kJÂ molâ1 for 1-hexene were found. On the other hand, latent enthalpies of condensation in the mesopores were found strongly pore size dependent suggesting that liquid fluids in small mesopores undergo confinement effects. Large enthalpic excesses were observed (up to 12Â kJ per mole of condensing adsorbate) and a macroscopic model based on scaling effects has been employed to explain those results.
Related Topics
Physical Sciences and Engineering
Chemical Engineering
Catalysis
Authors
Philippe Trens, Nathalie Tanchoux, Pierre-Marie Papineschi, Daniel Maldonado, Francesco di Renzo, François Fajula,