48. Rege SU, Yang RT (2000) Corrected Horváth-Kawazoe equations for pore-size distribution.
AIChE J 46:734–750
49. Saito A, Foley HC (1991) Curvature and parametric sensitivity in models for adsorption in
micropores. AIChE J 37:429–436
50. Cheng LS, Yang RT (1994) Improved Horváth-Kawazoe equations including spherical pore
models for calculating micropore size distribution. Chem Eng Sci 49:2599–2609
51. Maglara E, Pullen A, Sullivan D, Conner WC (1994) Characterization of microporous solids by
adsorption: measurement of high-resolution adsorption isotherms. Langmuir 10:4167–4173
52. Orsikowsky-Sanchez A, Plantier F, Miqueu C (2020) Coupled gravimetric, manometric and
calorimetric study of CO 2 , N 2 and CH 4 adsorption on zeolites for the assessment of classical
equilibrium models. Adsorption. https://doi.org/10.1007/s10450-020-00206-7
53. Thommes M (2004) Physical adsorption characterization of ordered and amorphous
mesoporous materials. In: Lu GQ, Zhao XS (eds) Nanoporous material: science and engineering. Imperial College Press, London, pp 317–364
54. Villarroel-Rocha J, Barrera D, Sapag K (2014) Introducing a self-consistent test and the
corresponding modification in the Barrett, Joyner and Halenda method for the pore-size
determination. Micropor Mesopor Mat 200:68–78
55. Ravikovitch PI, Wei D, Chueh WT, Haller GL, Neimark AV (1997) Evaluation of pore
structure parameters of MCM-41 catalyst supports and catalysts by means of nitrogen and
argon adsorption. J Phys Chem B 101:3671–3679
Critical Overview of Textural Characterization of Zeolites by Gas Adsorption
55
AIChE J 46:734–750
49. Saito A, Foley HC (1991) Curvature and parametric sensitivity in models for adsorption in
micropores. AIChE J 37:429–436
50. Cheng LS, Yang RT (1994) Improved Horváth-Kawazoe equations including spherical pore
models for calculating micropore size distribution. Chem Eng Sci 49:2599–2609
51. Maglara E, Pullen A, Sullivan D, Conner WC (1994) Characterization of microporous solids by
adsorption: measurement of high-resolution adsorption isotherms. Langmuir 10:4167–4173
52. Orsikowsky-Sanchez A, Plantier F, Miqueu C (2020) Coupled gravimetric, manometric and
calorimetric study of CO 2 , N 2 and CH 4 adsorption on zeolites for the assessment of classical
equilibrium models. Adsorption. https://doi.org/10.1007/s10450-020-00206-7
53. Thommes M (2004) Physical adsorption characterization of ordered and amorphous
mesoporous materials. In: Lu GQ, Zhao XS (eds) Nanoporous material: science and engineering. Imperial College Press, London, pp 317–364
54. Villarroel-Rocha J, Barrera D, Sapag K (2014) Introducing a self-consistent test and the
corresponding modification in the Barrett, Joyner and Halenda method for the pore-size
determination. Micropor Mesopor Mat 200:68–78
55. Ravikovitch PI, Wei D, Chueh WT, Haller GL, Neimark AV (1997) Evaluation of pore
structure parameters of MCM-41 catalyst supports and catalysts by means of nitrogen and
argon adsorption. J Phys Chem B 101:3671–3679
Critical Overview of Textural Characterization of Zeolites by Gas Adsorption
55
