171. Dubbeldam D et al (2003) Understanding the window effect in zeolite catalysis. Angew Chem
Int Ed 42(31):3624–3626
172. Dubbeldam D et al (2006) Dynamically corrected transition state theory calculations of selfdiffusion in anisotropic nanoporous materials. J Phys Chem B 110(7):3164–3172
173. Dubbeldam D et al (2005) Molecular path control in zeolite membranes. Proc Natl Acad Sci U
S A 102(35):12317–12320
174. Tunca C, Ford DM (2002) Modeling cage-to-cage dynamics of adsorbates at arbitrary loadings
with dynamically corrected transition-state theory. J Phys Chem B 106(42):10982–10990
175. June RL, Bell AT, Theodorou DN (1991) Transition-state studies of xenon and SF6 diffusion
in silicalite. J Phys Chem 95(22):8866–8878
176. Dubbeldam D et al (2005) Molecular simulation of loading-dependent diffusion in nanoporous
materials using extended dynamically corrected transition state theory. J Chem Phys 122(22)
177. Myers AL, Prausnitz JM (1965) Thermodynamics of mixed-gas adsorption. AICHE J 11
(1):121
178. Walton KS, Sholl DS (2015) Predicting multicomponent adsorption: 50 years of the ideal
adsorbed solution theory. AICHE J 61(9):2757–2762
179. Langmuir I (1916) The constitution and fundamental properties of solids and liquids part I
solids. J Am Chem Soc 38:2221–2295
180. Sips R (1948) On the structure of a catalyst surface. J Chem Phys 16(5):490–495
181. Sips R (1950) On the structure of a catalyst SURFACE.2. J Chem Phys 18(8):1024–1026
182. Jovanovic DS (1969) Physical adsorption of gases. I. Isotherms for monolayer and multilayer
adsorption. Kolloid-Zeitschrift Zeitschrift Fur Pol 235(1):1203
183. Toth J (1971) State equations of solid-gas interface layers. Acta Chim Acad Sci Hungaricae 69
(3):311
184. Myers AL (1983) Activity-coefficients of mixtures adsorbed on heterogeneous surfaces.
AICHE J 29(4):691–693
185. Quinones I, Guiochon G (1996) Derivation and application of a Jovanovic-Freundlich isotherm model for single-component adsorption on heterogeneous surfaces. J Colloid Interface
Sci 183(1):57–67
186. Quinones I, Guiochon G (1998) Extension of a Jovanovic-Freundlich isotherm model to
multicomponent adsorption on heterogeneous surfaces. J Chromatogr A 796(1):15–40
187. Jensen CRC, Seaton NA (1996) An isotherm equation for adsorption to high pressures in
microporous adsorbents. Langmuir 12(11):2866–2867
188. Divekar S et al (2016) Adsorption equilibria of propylene and propane on zeolites and
Prediction of their binary adsorption with the ideal adsorbed solution theory. J Chem Eng
Data 61(7):2629–2637
189. Berg F et al (2018) Single and binary mixture adsorption behaviors of C-6-C-8 hydrocarbons
on silica-alumina gel. Ind Eng Chem Res 57(48):16451–16463
190. Avijegon G et al (2018) Binary and ternary adsorption equilibria for CO2/CH4/N-2 mixtures
on zeolite 13X beads from 273 to 333 K and pressures to 900 kPa. Adsorption J Int Adsorption
Soc 24(4):381–392
191. Bai P, Tsapatsis M, Siepmann JI (2012) Multicomponent adsorption of alcohols onto
Silicalite-1 from aqueous solution: isotherms, structural analysis, and assessment of ideal
adsorbed solution theory. Langmuir 28(44):15566–15576
192. Costa E et al (1981) Adsorption of binary and ternary hydrocarbon-gas mixtures on activated
carbon À experimental-determination and theoretical prediction of the ternary equilibrium
data. AICHE J 27(1):5–12
193. Calleja G et al (1994) Multicomponent adsorption equilibrium of ethylene, propane, propylene
and CO2 on 13X-zeolite. Gas Sep Purif 8(4):247–256
194. Zou Y et al (2007) Selective gas sorption property of an interdigitated 3-D metal-organic
framework with 1-D channels. Chem Commun 48:5182–5184
195. van Zandvoort I et al (2019) Highlighting non-idealities in C2H4/CO2 mixture adsorption in
5A zeolite. Sep Purif Technol 227
82
J. J. Gutiérrez-Sevillano and S. Calero
Précédent

- 89/233

Suivant