Abstract:
In order to explore the in uence of modification sites of functional groups on landfill gas (CO
2/CH
4) separation performance of metal-organic frameworks (MOFs), six types of organic linkers and three types of functional groups (i.
e. -F, -NH
2, -CH
3) were used to construct 36 MOFs of pcu topology based on copper paddlewheel. Grand canonical Monte Carlo simulations were performed in this work to evaluate the separation performance of MOFs at low (vacuum swing adsorption) and high (pressure swing adsorption) pressures, respectively. Simulation results demonstrated that CO
2 working capacity of the unfunctionalized MOFs generally exhibits pore-size dependence at 1 bar, which increases with the decrease in pore sizes. It was also found that -NH
2 functionalized MOFs exhibit the highest CO
2 uptake due to the enhanced Coulombic interactions between the polar -NH
2 groups and the quadrupole moment of CO
2 molecules, which is followed by -CH
3 and -F functionalized ones. Moreover, positioning the functional groups -NH
2 and -CH
3 at sites far from the metal node (site b) exhibits more significant enhancement on CO
2/CH
4 separation performance compared to that adjacent to the metal node (site a).