Understanding the Effects of Binders in Gas Sorption and Acidity of Aluminium Fumarate Extrudates

Publication date

2022-01-24

Authors

Rivera Torrente, MiguelISNI 0000000507301372
Kroon, D
Coulet, M V
Marquez, C
Nikolopoulos, NikolaosISNI 0000000492915004
Hardian, R
Bourrelly, S
De Vos, D
Whiting, G.T.ISNI 0000000427335898
Weckhuysen, B.M.ORCID 0000-0001-5245-1426ISNI 0000000110540180

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Document Type

Article
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Abstract

Understanding the impact of shaping processes on solid adsorbents is critical for the implementation of MOFs in industrial separation processes or as catalytic materials. Production of MOF-containing shaped particles is typically associated with loss of porosity and modification of acid sites, two phenomena that affect their performance. Herein, we report a detailed study on how extrusion affects the crystallinity, porosity, and acidity of the aluminium fumarate MOF with clays or SiO2 gel binders. Thorough characterization showed that the clay binders confer the extrudates a good mechanical robustness at the expense of porosity, while silica gel shows an opposite trend. The CO2 selectivity towards CH4, of interest for natural gas separation processes, is maintained upon the extrusion process. Moreover, probe FTIR spectroscopy revealed no major changes in the types of acid sites. This study highlights that these abundant and inexpensive clay materials may be used for scaling MOFs as active adsorbents.

Keywords

CO /CH, acidity, aluminium fumarate, metal-organic frameworks (MOFs), solids extrusion, Catalysis, Organic Chemistry

Citation

Rivera-Torrente, M, Kroon, D, Coulet, M V, Marquez, C, Nikolopoulos, N, Hardian, R, Bourrelly, S, De Vos, D, Whiting, G & Weckhuysen, B M 2022, 'Understanding the Effects of Binders in Gas Sorption and Acidity of Aluminium Fumarate Extrudates', Chemistry-A European Journal, vol. 28, no. 5, e202103420, pp. 1-11. https://doi.org/10.1002/chem.202103420