English

Windowed Carbon Nanotubes for Efficient CO2 Removal from Natural Gas

Materials Science 2012-12-10 v1 Chemical Physics

Abstract

We demonstrate from molecular dynamics simulations that windowed carbon nanotubes can efficiently separate CO2 from the CO2/CH4 mixture, resembling polymeric hollow fibers for gas separation. Three CO2/CH4 mixtures with 30%, 50% and 80% CO2 are investigated as a function of applied pressure from 80 to 180 bar. In all simulated conditions, only CO2 permeation is observed; CH4 is completely rejected by the nitrogen-functionalized windows or pores on the nanotube wall in the accessible timescale, while maintaining a fast diffusion rate along the tube. The estimated time-dependent CO2 permeance ranges from 107 to 105 GPU (gas permeation unit), compared with ~100 GPU for typical polymeric membranes. CO2/CH4 selectivity is estimated to be ~108 from the difference in free-energy barriers of permeation. This work suggests that a windowed carbon nanotube can be used as a highly efficient medium, configurable in hollow-fiber-like modules, for removing CO2 from natural gas.

Keywords

Cite

@article{arxiv.1212.1612,
  title  = {Windowed Carbon Nanotubes for Efficient CO2 Removal from Natural Gas},
  author = {Hongjun Liu and Valentino R. Cooper and Sheng Dai and De-en Jiang},
  journal= {arXiv preprint arXiv:1212.1612},
  year   = {2012}
}

Comments

18 pages, 7 figures