E. Guillon and P. Leflaive, Traitement des essences aromatiques pour la pétrochimie, 2011.

, Zeolite molecular sieves: structure, chemistry and use

D. W. Breck and . Ed, , 1974.

D. S. Coombs, Recommended Nomenclature for Zeolite Minerals: Report of the Committee on zeolites of the international mineralogical association on new minerals and minerals names, vol.35, pp.1571-1606, 1997.

W. Lowenstein, The distribution of aluminum in the tetrahedra of silicates and aluminates, Am. Mineral, vol.39, pp.92-96, 1954.

V. J. Inglezakis, The concept of "capacity" in zeolite ion-exchange systems, Journal of Colloid and Interface Science, vol.281, pp.68-79, 2005.

M. Rasouli, N. Yaghobi, S. Chitsazan, and M. H. Sayyar, Adsorptive separation of meta-xylene from C8 aromatics, Chemical Engineering Research and Design, vol.90, pp.1407-1415, 2012.

J. M. Lee, S. M. Seo, J. M. Suh, and W. T. Lim, Synthesis and single-crystal structures of fully dehydrated fully Sr²+exchanged zeolite Y (FAU) and its benzene sorption complex, J. Porous Mater, vol.18, pp.523-534, 2011.

J. M. Thomas, Uniform Heterogeneous Catalysts: The Role of Solid-State Chemistry in their Development and Design, Angew. Chem. Int. Ed, vol.27, pp.1673-1691, 1988.

T. Frising and P. Leflaive, Extraframework cation distributions in X and Y faujasite zeolites: A review, Microporous and Mesoporous Materials, vol.114, pp.27-63, 2008.

, Principles of adsorption and adsorption processes

D. M. Ruthven and . Ed, , 1984.

J. Moïse, Equilibres de coadsorption du p-xylène et du m-xylène par les zéolithes X et Y. Effet du cation compensateur, de la température et du taux d'hydratation de la zéolithe sur la sélectivité d'adsorption, IFPEN, 1999.

J. Bellat, E. Pilverdier, M. Simonot-grange, and S. Jullian, Microporous volume and external surface of Y zeolites accessible to p-xylene and m-xylene, Microporous Materials, vol.9, pp.213-220, 1997.

K. Hadjiivanov, Identification and Characterization of Surface Hydroxyl Groups by Infrared Spectroscopy. Advances in Catalysis, vol.57, pp.99-318, 2014.

T. Kawai and K. Tsutsumi, A Study on the Surface Silanol Groups Developed by Hydrothermal and Acid Treatment of Faujasite Type Zeolites, Journal of Colloid and Interface Science, vol.212, pp.310-316, 1999.

, Zeolites and Clay Minerals as Sorbents and Molecular Sieves

R. M. Barrer and . Ed, , 1978.

C. Mellot, M. H. Simonot-grange, E. Pilverdier, J. P. Bellat, and D. Espinat, Adsorption of Gaseous p-or m-Xylene in BaX Zeolite: Correlation between Thermodynamic and Crystallographic Studies, Langmuir, vol.11, pp.1726-1730, 1995.

V. Lachet, Simulation moléculaire de l'adsorption sélective des isomères du xylène dans les faujasites, IFPEN, 1998.

C. Pichon, Etude Structural et énergétique de l'adsorption des isomères para-et meta-du xylene dans la zéolithe BaX préhydratée, 1999.

C. Pichon, A. Méthivier, M. Simonot-grange, and C. Baerlocher, Location of Water and Xylene Molecules Adsorbed on Prehydrated Zeolite BaX. A Low-Temperature Neutron Powder Diffraction Study, J. Phys. Chem. B, vol.103, pp.10197-10203, 1999.

A. Descours, Adsorption des isomères para-et méta -du xylene dans les zéolithes NaX et BaX: Etude des relations propriétés-structure, IFPEN, 1997.

C. Mellot, M. H. Simonot-grange, E. Pilverdier, J. Bellat, and D. Espinat, Adsorption of Gaseous p-or m-Xylene in BaX Zeolite: Correlation between Thermodynamic and Crystallographic Studies, vol.11, pp.1726-1730, 1995.

D. P. Serrano, J. M. Escola, and P. Pizarro, Synthesis strategies in the search for hierarchical zeolites, Chem. Soc. Rev, vol.42, pp.4004-4035, 2013.

Z. Musilová, N. ?ilková, S. Park, and J. ?ejka, Aromatic Transformations Over Mesoporous ZSM-5: Advantages and Disadvantages, Top Catal, vol.53, pp.1457-1469, 2010.

L. Chen, X. Li, J. C. Rooke, Y. Zhang, X. Yang et al., Hierarchically structured zeolites: Synthesis, mass transport properties and applications, J. Mater. Chem, p.17381, 2012.

E. Koohsaryan and M. Anbia, Nanosized and hierarchical zeolites: A short review, Chinese Journal of Catalysis, vol.37, pp.447-467, 2016.

Z. Liu, Y. Hua, J. Wang, X. Dong, Q. Tian et al., Recent progress in the direct synthesis of hierarchical zeolites: Synthetic strategies and characterization methods, Mater. Chem. Front, vol.1, pp.2195-2212, 2017.

S. Mintova, J. Gilson, and V. Valtchev, Advances in nanosized zeolites, Nanoscale, vol.5, pp.6693-6703, 2013.
URL : https://hal.archives-ouvertes.fr/hal-02064798

V. P. Valtchev and K. N. Bozhilov, Transmission Electron Microscopy Study of the Formation of FAU-Type Zeolite at Room Temperature, J. Phys. Chem. B, vol.108, pp.15587-15598, 2004.

K. Wang, Agregates of small particles of synthetic faujasite zeolite

A. Inayat, I. Knoke, E. Spiecker, and W. Schwieger, Assemblies of Mesoporous FAU-Type Zeolite Nanosheets, Angew. Chem. Int. Ed, vol.51, pp.1962-1965, 2012.

M. Khaleel, A. J. Wagner, K. A. Mkhoyan, and M. Tsapatsis, On the Rotational Intergrowth of Hierarchical FAU/EMT Zeolites, Angew. Chem. Int. Ed, vol.53, pp.9456-9461, 2014.

F. Dougnier, J. Patarin, J. L. Guth, and D. Anglerot, Synthesis, characterization, and catalytic properties of silica-rich faujasite-type zeolite (FAU) and its hexagonal analog (EMT) prepared by using crown-ethers as templates, vol.12, pp.160-166, 1992.

A. Inayat, C. Schneider, and W. Schwieger, Organic-free synthesis of layer-like FAU-type zeolites, Chemical communications, vol.51, pp.279-281, 2015.

K. S. Sing, D. H. Everett, R. A. Haul, R. A. Perotti, J. Rouquerol et al., Reporting physisorption data for gas/solid systems: with Special Reference to the Determination of Surface Area and Porosity, Pure & App. Chem, vol.57, pp.603-619, 1985.

, Adsorption: By Powders & Porous Solids

F. Rouquerol, J. Rouquerol, K. Sing, and . Ed, , 1999.

N. D. Hutson and R. T. Yang, Theoretical basis for the Dubinin-Radushkevitch (D-R) adsorption isotherm equation, Adsorption, vol.3, pp.189-195, 1997.

M. M. Dubinin, The Potential Theory of Adsorption of Gases and Vapors for Adsorbents with Energetically Nonuniform Surfaces, Chem. Rev, pp.235-241, 1960.

, Adsorption, surface area and porosity

S. J. Gregg, K. S. Sing, and . Ed, , 1995.

A. L. Myers, Thermodynamics of adsorption in porous materials, AIChE J, vol.48, pp.145-160, 2002.

S. Bourrelly, B. Moulin, A. Rivera, G. Maurin, S. Devautour-vinot et al., Explanation of the adsorption of polar vapors in the highly flexible metal organic framework MIL-53(Cr), Journal of the American Chemical Society, vol.132, pp.9488-9498, 2010.
URL : https://hal.archives-ouvertes.fr/hal-01840524

, Diffusion in nanoporous materials

J. Kärger and D. M. Ruthven, , 2012.

D. M. Ruthven and M. F. Post, Diffusion in Zeolite Molecular Sieves: Studies in Surface Science and Catalysis, vol.137, pp.525-577, 2001.

, Diffusion in Zeolites and Other Microporous Solids. Karger, J, 1992.

L. Gueudré, E. Jolimaîte, N. Bats, and W. Dong, Diffusion in zeolites: Is surface resistance a critical parameter, Adsorption, vol.16, pp.17-27, 2010.

J. Wloch, Effect of surface etching of ZSM-5 zeolite crystals on the rate of n-hexane sorption, Microporous and Mesoporous Materials, vol.62, pp.81-86, 2003.

L. Gueudré, Diffusion du cyclohexane dans la silicalite-1: Origine et caractérisation de la résistance de surface, 2010.

J. Bellat and M. H. Simonot-grange, Adsorption of gaseous p-xylene and m-xylene on NaY, KY, and BaY zeolites. Part 2: Modeling. Enthalpies and entropies of adsorption, Zeolites, vol.15, pp.219-227, 1995.

J. Bellat, M. H. Simonot-grange, and S. Jullian, Adsorption of gaseous p-xylene andm-xylene on NaY, KY, and BaY zeolites: Part 1, Adsorption equilibria of pure xylenes, Zeolites, vol.15, pp.124-130, 1995.

V. Cottier, J. Bellat, M. Simonot-grange, and A. Méthivier, Adsorption of p-Xylene/ mXylene Gas Mixtures on BaY and NaY Zeolites. Coadsorption Equilibria and Selectivities, J. Phys. Chem. B, vol.101, pp.4798-4802, 1997.

C. Pichon, A. Méthivier, and M. Simonot-grange, Adsorption of m-Xylene on Prehydrated Zeolite BaX: Correlation between Temperature-Programmed Desorption and Low-Temperature Neutron Powder Diffraction Studies, Langmuir, vol.16, pp.1931-1936, 2000.

D. M. Ruthven and M. Goddard, Sorption and diffusion of C8 aromatic hydrocarbons in faujasite type zeolites. I. Equilibrium isotherms and separation factors, Zeolites, vol.6, pp.275-282, 1986.

M. Simonot-grange, O. Bertrand, E. Pilverdier, J. Bellat, and C. Paulin, Differential calorimetric enthalpies of adsorption of p-xylene and m-xylene on y faujasites at 25°C, Journal of Thermal Analysis, vol.48, pp.741-754, 1997.

H. Tournier, A. Barreau, B. Tavitian, D. Le-roux, J. Moïse et al., Adsorption Equilibrium of Xylene Isomers and p-Diethylbenzene on a Prehydrated BaX Zeolite, Ind. Eng. Chem. Res, vol.40, pp.5983-5990, 2001.

M. Goddard and D. M. Ruthven, Sorption and diffusion of C8 aromatic hydrocarbons in faujasite type zeolites. II. Sorption kinetics and intracrystalline diffusivities, Zeolites, vol.6, pp.283-289, 1986.

A. Germanus, J. Kärger, and H. Pfeifer, Intracrystalline self-diffusion of benzene, toluene and xylene isomers in zeolites Na-X. Zeolites, vol.5, pp.91-95, 1985.

L. Gueudré, M. Milina, S. Mitchell, and J. Pérez-ramírez, Superior Mass Transfer Properties of Technical Zeolite Bodies with Hierarchical Porosity, Adv. Funct. Mater, vol.24, pp.209-219, 2014.

D. Mehlhorn, A. Inayat, W. Schwieger, R. Valiullin, and J. Karger, Probing mass transfer in mesoporous faujasite-type zeolite nanosheet assemblies, vol.15, pp.1681-1686, 2014.

A. Galarneau, F. Guenneau, A. Gedeon, D. Mereib, J. Rodriguez et al., Probing Interconnectivity in Hierarchical Microporous/Mesoporous Materials Using Adsorption and Nuclear Magnetic Resonance Diffusion, J. Phys. Chem. C, vol.120, pp.1562-1569, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01384395

R. M. Moore and J. R. Katzer, Counterdiffusion of liquid hydrocarbons in type Y zeolite: Effect of molecular size, molecular type, and direction of diffusion, AIChE J, vol.18, pp.816-824, 1972.

F. Awum, S. Narayan, and D. Ruthven, Measurement of intracrystalline diffusivities in NaX zeolite by liquid chromatography, Ind. Eng. Chem. Res, vol.28, pp.1510-1515, 1988.

M. Eic, M. Goddard, and D. M. Ruthven, Diffusion of benzene in NaX and natural faujasite, Zeolites, vol.8, pp.327-331, 1988.

V. Moya-korchi, Etude de la contre-diffusion des xylenes dans les adsorbants zéolitiques de type Y, 1995.

M. Minceva and A. E. Rodrigues, Adsorption of Xylenes on Faujasite-Type Zeolite, Chemical Engineering Research and Design, vol.82, pp.667-681, 2004.

, The mathematics of diffusion; Crank, 1975.

M. S. Silva, M. A. Moreira, A. F. Ferreira, J. C. Santos, V. M. Silva et al., Adsorbent Evaluation Based on Experimental Breakthrough Curves: Separation of p-Xylene from C8 Isomers, Chem. Eng. Technol, vol.35, pp.1777-1785, 2012.

M. S. Silva, J. P. Mota, and A. E. Rodrigues, Fixed-bed adsorption of aromatic C8 isomers: Breakthrough experiments, modeling and simulation, Separation and Purification Technology, vol.90, pp.246-256, 2012.

Y. Khabzina, C. Laroche, J. Perez-pellitero, and D. Farrusseng, Xylene separation on a diverse library of exchanged faujasite zeolites, Microporous and Mesoporous Materials, vol.247, pp.52-59, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01580218

Y. Khabzina, Influence des cations d'échange dans les zéolithes type faujasites sur la selectivité d'adsorption des isomères du xylène, 2015.

M. Eic and D. M. Ruthven, A new experimental technique for measurement of intracrystalline diffusivity, Zeolites, vol.8, pp.40-45, 1988.

D. M. Ruthven and P. Stapleton, Measurement of liquid phase counter-diffusion in zeolite crystals by the ZLC method, Chemical Engineering Science, vol.48, pp.89-98, 1993.

S. Brandani and D. M. Ruthven, Analysis of ZLC desorption curves for liquid systems, Chemical Engineering Science, vol.50, pp.2055-2059, 1995.

Q. Huang, M. Ei?, H. Xiao, and S. Kaliaguine, Characterization of the diffusion path in micro-and meso-porous materials from ZLC analysis, Adsorption, vol.16, pp.531-539, 2010.

V. Vattipalli, X. Qi, P. J. Dauenhauer, and W. Fan, Long Walks in Hierarchical Porous Materials due to Combined Surface and Configurational Diffusion, Chem. Mater, vol.28, pp.7852-7863, 2016.

F. D. Magalhães, R. L. Laurence, and W. C. Conner, Diffusion of Cyclohexane and Alkylcyclohexanes in Silicalite, J. Phys. Chem. B, vol.102, pp.2317-2324, 1998.

V. Hoang, Q. Huang, M. Ei?, T. Do, and S. Kaliaguine, Structure and diffusion characterization of SBA-15 materials, Langmuir: the ACS journal of surfaces and colloids, vol.21, pp.2051-2057, 2005.

C. Chang, A. R. Teixeira, C. Li, P. J. Dauenhauer, and W. Fan, Enhanced molecular transport in hierarchical silicalite-1, Langmuir : the ACS journal of surfaces and colloids, vol.29, pp.13943-13950, 2013.

A. Song, J. Ma, D. Xu, and R. Li, Adsorption and Diffusion of Xylene Isomers on Mesoporous Beta Zeolite, Catalysts, vol.5, pp.2098-2114, 2015.

H. S. Sherry, Ion-exchange properties of zeolites. IV. Alkaline earth ion exchange in the synthetic zeolites Linde X and Y, J. Phys. Chem, vol.72, pp.4086-4094, 1968.

, Introduction to X-ray powder diffractometry

R. Jenkins and R. L. Snyder, , p.138

E. Weiland, M. Springuel-huet, A. Nossov, F. Guenneau, A. Quoineaud et al., Transport properties of catalyst supports studied by pulsed field gradient (PFG) and 2D exchange (EXSY) NMR spectroscopy, New J. Chem, vol.40, pp.4447-4454, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01331111

M. Hunger and W. Wang, Solid State NMR spectroscopy, Handbook of Heterogeneous Catalysis, pp.912-932, 2008.

M. Hunger, NMR Spectroscopy for the Characterization of Surface Acidity and Basicity, Handbook of Heterogeneous Catalysis, pp.1163-1178, 2008.

J. Kärger and R. Valiullin, Mass transfer in mesoporous materials: The benefit of microscopic diffusion measurement, Chem. Soc. Rev, vol.42, p.4172, 2013.

A. Quoineaud, Rapport interne IFP: Etude de la diffusion d'hydrocarbures dans des solides poreux, 2005.

D. T. Ngoc, T. H. Pham, and K. D. Hong-nguyen, Synthesis, characterization and application of nanozeolite NaX from Vietnamese kaolin, Adv. Nat. Sci: Nanosci. Nanotechnol, 2013.

J. I. Langford and A. J. Wilson, Scherrer after Sixty Years: A Survey and Some New Results in the Determination of Crystallite Size, J. appl. Cryst, vol.11, pp.102-113, 1978.

A. Botan, F. Ulm, R. J. Pellenq, and B. .-m.;-coasne, Bottom-up model of adsorption and transport in multiscale porous media. Physical review. E, Statistical, nonlinear, and soft matter physics, vol.91, p.32133, 2015.
URL : https://hal.archives-ouvertes.fr/hal-02015074

P. S. Mendes, A. Taleb, A. Gay, A. Daudin, C. Bouchy et al., Nanoscale insights into Pt-impregnated mixtures of zeolites, J. Mater. Chem. A, vol.5, pp.16822-16833, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01587693

M. Weyland and P. A. Midgley, Electron tomography. Materials Today, vol.7, pp.32-40, 2004.

K. S. Sing, D. H. Everett, R. A. Haul, L. Moscou, R. A. Perotti et al., Reporting physisorption data for gas/solid systems, Pure & App. Chem, vol.57, pp.603-619, 1985.

T. Benamor, L. Vidal, B. Lebeau, and C. Marichal, Influence of synthesis parameters on the physico-chemical characteristics of SBA-15 type ordered mesoporous silica, Microporous and Mesoporous Materials, vol.153, pp.100-114, 2012.

J. Garcia-martinez, C. Xiao, K. A. Cychosz, K. Li, W. Wan et al., Evidence of Intracrystalline Mesostructured Porosity in Zeolites by Advanced Gas Sorption, Electron Tomography and Rotation Electron Diffraction, Chem. Cat. Chem, vol.6, pp.3110-3115, 2014.

M. Thommes, S. Mitchell, and J. Pérez-ramírez, Surface and Pore Structure Assessment of Hierarchical MFI Zeolites by Advanced Water and Argon Sorption Studies, J. Phys. Chem. C, vol.116, pp.18816-18823, 2012.

A. Galarneau, H. Cambon, F. Di-renzo, and F. Fajula, True Microporosity and Surface Area of Mesoporous SBA-15 Silicas as a Function of Synthesis Temperature, Langmuir, vol.17, pp.8328-8335, 2001.
URL : https://hal.archives-ouvertes.fr/hal-00172395

P. I. Ravikovitch and A. V. Neimark, Characterization of Micro-and Mesoporosity in SBA-15

, Materials from Adsorption Data by the NLDFT Method, J. Phys. Chem. B, vol.105, pp.6817-6823, 2001.

M. Thommes, Physical Adsorption Characterization of Nanoporous Materials, Chemie Ingenieur Technik, vol.82, pp.1059-1073, 2010.

K. A. Cychosz, R. Guillet-nicolas, J. García-martínez, and M. Thommes, Recent advances in the textural characterization of hierarchically structured nanoporous materials, Chemical Society reviews, vol.46, pp.389-414, 2017.

B. Coasne, A. Galarneau, C. Gerardin, F. Fajula, and F. Villemot, Molecular Simulation of Adsorption and Transport in Hierarchical Porous Materials, Langmuir, vol.29, pp.7864-7875, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00880766

P. A. Monson, Understanding adsorption/desorption hysteresis for fluids in mesoporous materials using simple molecular models and classical density functional theory, Microporous and Mesoporous Materials, vol.160, pp.47-66, 2012.

B. Coasne, Multiscale adsorption and transport in hierarchical porous materials, New J. Chem, vol.40, pp.4078-4094, 2016.
URL : https://hal.archives-ouvertes.fr/hal-02015077

W. D. Harkins and G. Jura, An Absolute Method for the Determination of the Area of a Finely Divided Crystalline Solid, J. Am. Chem. Soc, vol.66, pp.1366-1368, 1944.

A. Galarneau, F. Villemot, J. Rodriguez, F. Fajula, and B. Coasne, Validity of the t-plot Method to Assess Microporosity in Hierarchical Micro/Mesoporous Materials, Langmuir, vol.30, pp.13266-13274, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01079841

M. J. Remy and G. Poncelet, A New Approach to the Determination of the External Surface and Micropore Volume of Zeolites from the Nitrogen Adsorption Isotherm at 77 K, J. Phys. Chem, vol.99, pp.773-779, 1995.

M. M. Dubinin, The Potential Theory of Adsorption of Gases and Vapors for Adsorbents with Energetically Nonuniform Surfaces, Chemical Society reviews, vol.60, pp.235-241, 1960.

J. Kenvin, J. Jagiello, S. Mitchell, and J. Pérez-ramírez, Unified method for the total pore volume and pore size distribution of hierarchical zeolites from argon adsorption and mercury intrusion, Langmuir : the ACS journal of surfaces and colloids, vol.31, pp.1242-1247, 2015.

E. P. Barrett, G. Leslie, L. G. Joyner, and P. P. Halenda, The Determination of Pore Volume and Area Distributions in Porous Substances. I. Computations from Nitrogen Isotherms, J. Am. Chem. Soc, vol.73, pp.373-380, 1951.

J. C. Groen, L. A. Peffer, and J. Pérez-ramírez, Incorporation of appropriate contact angles in textural characterization by mercury porosimetry, Studies in Surface Science and Catalysis, vol.144, pp.91-98, 2002.

J. C. Groen, L. A. Peffer, and J. Pérez-ram??ez, Pore size determination in modified micro-and mesoporous materials. Pitfalls and limitations in gas adsorption data analysis, Microporous and Mesoporous Materials, vol.60, pp.1-17, 2003.

J. Ze?evi?, C. J. Gommes, H. Friedrich, P. E. De-jongh, and K. P. Jong, Mesoporosity of zeolite Y: quantitative three-dimensional study by image analysis of electron tomograms, Angewandte Chemie, vol.51, pp.4213-4217, 2012.

M. Milina, S. Mitchell, P. Crivelli, D. Cooke, and J. Pérez-ramírez, Mesopore quality determines the lifetime of hierarchically structured zeolite catalysts, Nat Commun, vol.5, p.17, 2014.

S. Mitchell, A. B. Pinar, J. Kenvin, P. Crivelli, J. Kärger et al., Structural analysis of hierarchically organized zeolites, Nature communications, vol.6, p.8633, 2015.

G. A. Tompsett, L. Krogh, D. W. Griffin, and W. C. Conner, Hysteresis and scanning behavior of mesoporous molecular sieves, Langmuir: the ACS journal of surfaces and colloids, vol.21, pp.8214-8225, 2005.

B. Coasne, A. Galarneau, R. J. Pellenq, and F. Di-renzo, Adsorption, intrusion and freezing in porous silica: the view from the nanoscale, Chemical Society reviews, vol.42, pp.4141-4171, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00790061

B. Coasne, K. E. Gubbins, and R. J. Pellenq, Domain theory for capillary condensation hysteresis, Phys. Rev. B, p.1726, 2005.
URL : https://hal.archives-ouvertes.fr/hal-00381741

, Characterization of Porous Solids and Powders: surface area, pore size and density

S. Lowell, J. E. Shields, and M. A. Thomas,

J. Kenvin, S. Mitchell, M. Sterling, R. Warringham, T. C. Keller et al., Quantifying the Complex Pore Architecture of Hierarchical Faujasite Zeolites and the Impact on Diffusion, Adv. Funct. Mater, vol.26, pp.5621-5630, 2016.

C. J. Rasmussen, A. Vishnyakov, M. Thommes, B. M. Smarsly, F. Kleitz et al., Cavitation in metastable liquid nitrogen confined to nanoscale pores, Langmuir : the ACS journal of surfaces and colloids, vol.26, pp.10147-10157, 2010.

E. Lippmaa, M. Magi, A. Samoson, M. Tarmak, and G. Engelbardt, Investigation of the Structure of Zeolites by Solid-state High-Resolution 29Si NMR Spectroscopy, J. Am. Chem. Soc, vol.103, pp.4992-4996, 1981.

T. I. Korányi, Distribution of Aluminum in the Periodical Building Units of Faujasites, J. Phys. Chem. C, vol.111, pp.2520-2524, 2007.

Z. Yan, D. Ma, J. Zhuang, X. Liu, X. Han et al., On the aciddealumination of USY zeolite: a solid state NMR investigation, Journal of Molecular Catalysis A: Chemical, vol.194, pp.153-167, 2003.

T. Kawai and K. Tsutsumi, A Study on the Surface Silanol Groups Developed by Hydrothermal and Acid Treatment of Faujasite Type Zeolites, Journal of Colloid and Interface Science, vol.212, pp.310-316, 1999.

A. Jentys, H. Tanaka, and J. A. Lercher, Surface Processes during Sorption of Aromatic Molecules on Medium Pore Zeolites, J. Phys. Chem. B, vol.109, pp.2254-2261, 2005.

H. G. Karge, Characterization by infrared spectroscopy, Microporous and Mesoporous Materials, vol.22, pp.547-549, 1998.

P. Fritz, The effect of sodium poisoning on dealuminated Y-type zeolites, Journal of Catalysis, vol.118, pp.85-98, 1989.

S. Khabtou, T. Chevreau, and J. C. Lavalley, Quantitative infrared study of the distinct acidic hydroxyl groups contained in modified Y zeolites, Microporous Materials, vol.3, pp.133-148, 1994.

C. M. Mfoumou, S. Mignard, and T. Belin, The preferential adsorption sites of H2O on adsorption sites of CO2 at low temperature onto NaX and BaX zeolites, Adsorption Science & Technology, vol.36, pp.1246-1259, 2018.

D. K. Murray, Differentiating and characterizing geminal silanols in silicas by 29Si NMR spectroscopy, Journal of Colloid and Interface Science, vol.352, pp.163-170, 2010.

X. Yan, S. Komarneni, and Z. Yan, CO2 adsorption on Santa Barbara Amorphous-15 (SBA-15) and amine-modified Santa Barbara Amorphous-15 (SBA-15) with and without controlled microporosity, Journal of Colloid and Interface Science, vol.390, pp.217-224, 2013.

M. Polanyi, Theories of the adsorption of gases. A general survey and some additional remarks, Trans. Faraday Soc, vol.28, pp.316-333, 1932.

H. Jeong, Y. Kim, Y. Lee, and M. Kang, Control of acidity on the external surface of zeolite Y for m-xylene isomerization using a mechanochemical neutralization method, Korean J. Chem. Eng, vol.26, pp.371-376, 2009.

C. Mellot, Caracterisation structurale de l'adsorption des isomeres para-et meta-du xylene dans des zeolithes de type X, 1993.

S. Tanaka, K. Fujita, Y. Miyake, M. Miyamoto, Y. Hasegawa et al., Adsorption and Diffusion Phenomena in Crystal Size Engineered ZIF-8 MOF, J. Phys. Chem. C, vol.119, pp.28430-28439, 2015.

E. Bourasseau, P. Ungerer, and A. Boutin, Prediction of Equilibrium Properties of Cyclic Alkanes by Monte Carlo SimulationNew Anisotropic United Atoms Intermolecular PotentialNew Transfer Bias Method, J. Phys. Chem. B, pp.5483-5491

, Dassault Systèmes. Materials Studio; Dassault Systèmes BIOVIA

C. Nieto-draghi, P. Bonnaud, and P. Ungerer, Anisotropic United Atom Model Including the Electrostatic Interactions of Methylbenzenes. I. Thermodynamic and Structural Properties, J. Phys. Chem. C, vol.111, pp.15686-15699, 2007.

D. Peralta, K. Barthelet, J. Pérez-pellitero, C. Chizallet, G. Chaplais et al., Adsorption and Separation of Xylene Isomers: CPO-27-Ni vs HKUST-1 vs NaY, J. Phys. Chem. C, vol.116, pp.21844-21855, 2012.

P. Pascual, P. Ungerer, B. Tavitian, P. Pernot, and A. Boutin, Development of a transferable guest-host force field for adsorption of hydrocarbons in zeolites: I. Reinvestigation of alkane adsorption in silicalite by grand canonical Monte Carlo simulation, Phys. Chem. Chem. Phys, vol.5, pp.3684-3693, 2003.

D. E. Smith and L. X. Dang, Computer simulations of NaCl association in polarizable water, The Journal of Chemical Physics, vol.100, pp.3757-3766, 1994.

G. Maurin, P. Llewellyn, T. Poyet, and B. Kuchta, Influence of extra-framework cations on the adsorption properties of X-faujasite systems: Microcalorimetry and molecular simulations. The journal of physical chemistry, vol.109, pp.125-129, 2005.

J. C. Crabtree, M. Molinari, S. C. Parker, and J. A. Purton, Simulation of the Adsorption and Transport of CO2 on Faujasite Surfaces, J. Phys. Chem. C, vol.117, pp.21778-21787, 2013.

J. A. Purton, J. C. Crabtree, and S. C. Parker, DL_MONTE: A general purpose program for parallel Monte Carlo simulation, Molecular Simulation, vol.39, pp.1240-1252, 2013.

A. K. Rappe, C. J. Casewit, K. S. Colwell, W. A. Goddard, and W. M. Skiff, UFF, a full periodic table force field for molecular mechanics and molecular dynamics simulations, J. Am. Chem. Soc, vol.114, pp.10024-10035, 1992.

, The deconvoluted peaks are represented in green and the sum of the contributions in red that fits well the experimental curve (black). The deconvolution was done by using Indigo software « plug im! » an open access and customizable software for signal and image processing