Exploiting the π-bonding for the separation of benzene and cyclohexane in zeolites

C. González-Galán, A. Luna-Triguero, J. M. Vicent-Luna (Corresponding author), A. P. Zaderenko, A. Sławek, R. Sánchez-de-Armas, Sofia Calero (Corresponding author)

Onderzoeksoutput: Bijdrage aan tijdschriftTijdschriftartikelAcademicpeer review

32 Citaten (Scopus)

Samenvatting

Separation of benzene and cyclohexane is one of the greatest challenges in industry. Their close boiling points and similar properties make them difficult compounds to separate. In this context, adsorption-based separation using zeolites or aluminosilicates is a promising technology. In the present work, we combine experimental measurements, density functional theory, and classical simulations to study the targeted separation. We analyse the effect of the sodium content in the adsorption of benzene and cyclohexane in three zeolites with FAU topology; high silica FAU, NaY and NaX. Quasi-equilibrated temperature adsorption and desorption measurements, first principles calculations, and classical simulations reveal the strong interaction between benzene molecules and sodium cations present in aluminosilicates and identify this fact as the key factor for the separation. We have developed a set of parameters to study the targeted separation by fitting to the experimental values and have run Monte Carlo simulations in the Grand-Canonical ensemble to obtain the adsorption isotherms and isobars. In addition, we have performed density functional theory calculations to analyse the specific interaction between benzene or cyclohexane and extra-framework sodium cations. Our results show that NaY and NaX zeolites are able to separate these compounds with extremely high efficiency.

Originele taal-2Engels
Artikelnummer125678
Aantal pagina's11
TijdschriftChemical Engineering Journal
Volume398
DOI's
StatusGepubliceerd - 15 okt. 2020

Financiering

This work was supported by the Spanish “ Ministerio de Educación, Cultura y Deporte ” with a predoctoral fellowship ( FPU16/04322 ) and by “ Ministerio de Ciencia, Innovación y Universidades ( CTQ2017-92173-EXP )”. The authors obtained financial resources as part of financing the doctoral scholarship from the National Science Center, Poland, grant no. 2018/28/T/ST5/00274. R. Sánchez-de-Armas thanks VPPI-US for the financial support. We thank C3UPO for the HPC support.

FinanciersFinanciernummer
Ministerio de Ciencia e InnovaciónCTQ2017-92173-EXP
Narodowe Centrum Nauki2018/28/T/ST5/00274

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