A new approach to separate hydrogen from carbon dioxide using graphdiyne-like membrane
arXiv:2004.01769
Abstract
In order to separate a mixture of hydrogen () and carbon dioxide () gases, we have proposed a new approach employing the graphdiyne-like membrane (GDY-H) using density functional theory (DFT) calculations and molecular dynamics (MD) simulations. GDY-H is constructed by removing one-third diacetylenic (CCCC) bonds linkages and replacing with hydrogen atoms in graphdiyne structure. Our DFT calculations exhibit poor selectivity and good permeances for / gases passing through this membrane. To improve the performance of the GDY-H membrane for / separation, we have placed two layers of GDY-H adjacent to each other which the distance between them is 2 nm. Then, we have inserted 1,3,5-triaminobenzene between two layers. In this approach, the selectivity of / is increased from 5.65 to completely purified gas. Furthermore, GDY-H membrane represents excellent permeance, about gas permeation unit (GPU), for molecule at temperatures above 20 K. The permeance is much higher than the value of the usual industrial limits. Moreover, our proposed approach shows a good balance between the selectivity and permeance parameters for the gas separation which is an essential factor for purification and capture processes in the industry.