A new and reliable method to obtain micropore volume in nanoporous solids by gas adsorption based on Dubinin works and the thickness of the adsorbed layer

Author:

Villarroel-Rocha Jhonny1,Arroyo-Gómez José J.2,Barrera Deicy1,Sapag Karim1

Affiliation:

1. Universidad Nacional de San Luis

2. Instituto Nacional de Tecnología Industrial (INTI)

Abstract

Abstract It is known that the use of the Dubinin-Radushkevich method in micro-mesoporous samples does not give adequate values of micropore volumes, unlike when the samples contain only microporous. Based on that, in this work, we propose an easy method to calculate a reliable micropore volume (VμP) of micro-mesoporous (nanopores) samples, separating the microporous region from the experimental isotherm. For this, the original isotherm is modified, estimating the thickness of the adsorbed layer (t) as a function of relative pressure and changing the external surface area (Sext) to obtain a Type I adsorption isotherm in the microporous region; then, the DR method can be applied to the modified isotherm. This proposal, named the DR_t method, allows the calculation of a reliable VμP of any nanoporous material using different adsorbates. Using this method, we analyzed adsorbents of distinct nature (i.e., carbons and silicas) with different adsorbates as N2 and O2 at 77 K, Ar at 87 K, and CO2 at 273 K. We used this method to calculate VμP in different samples and compare them with those obtained with the traditional DR method, highlighting that unlike the latter the DR_t method showed similar and consistent results with the different adsorbates. Therefore, the values of micropore volume calculated using the DR_t method demonstrate consistency across various adsorbates, not only for N2 but especially for CO2, which is suggested to analyze narrow micropore volumes.

Publisher

Research Square Platform LLC

Reference31 articles.

1. M. Thommes, K. Kaneko, A.V. Neimark, J.P. Olivier, F. Rodriguez-Reinoso, J. Rouquerol, K.S.W. Sing, Physisorption of gases, with special reference to the evaluation of surface area and pore size distribution (IUPAC Technical Report), Pure Appl. Chem. 87 (2015) 1051–1069

2. Hierarchical nanostructured carbons as CO2 adsorbents;Montiel-Centeno KY;Adsorption,2019

3. Rodríguez-Castellón, Kaolinite-based zeolites synthesis and their application in CO2 capture processes;Cecilia JA;Fuel,2022

4. Comparative study of the adsorption equilibrium of CO2 on microporous commercial materials at low pressures;Garcés SI;Ind. Eng. Chem. Res.,2013

5. CMK-3 nanostructured carbon: Effect of temperature and time carbonization on textural properties and H2 storage;Montiel-Centeno KY;Chem. Eng. Commun.,2019

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