Molecular Simulation of SO2 Separation and Storage Using a Cryptophane-Based Porous Liquid

Author:

Collado Pablo1ORCID,Piñeiro Manuel M.1ORCID,Pérez-Rodríguez Martín2ORCID

Affiliation:

1. Departamento de Física Aplicada, Universidade de Vigo, E36310 Vigo, Spain

2. Instituto de Química Física Blas Cabrera, Consejo Superior de Investigaciones Científicas (CSIC), E28006 Madrid, Spain

Abstract

A theoretical molecular simulation study of the encapsulation of gaseous SO2 at different temperature conditions in a type II porous liquid is presented here. The system is composed of cage cryptophane-111 molecules that are dispersed in dichloromethane, and it is described using an atomistic modelling of molecular dynamics. Gaseous SO2 tended to almost fully occupy cryptophane-111 cavities throughout the simulation. Calculations were performed at 300 K and 283 K, and some insights into the different adsorption found in each case were obtained. Simulations with different system sizes were also studied. An experimental-like approach was also employed by inserting a SO2 bubble in the simulation box. Finally, an evaluation of the radial distribution function of cryptophane-111 and gaseous SO2 was also performed. From the results obtained, the feasibility of a renewable separation and storage method for SO2 using porous liquids is mentioned.

Publisher

MDPI AG

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