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Molecular Simulation

Volume 32, Issue 1, 2006

Molecular dynamics simulation of Henry's constant of argon, nitrogen, methane and oxygen in ethylene oxide

Molecular dynamics simulation of Henry's constant of argon, nitrogen, methane and oxygen in ethylene oxide

DOI:
10.1080/08927020500474318
M. Krishnamurthya, S. Murada* & J. D. Olsonb

pages 11-16

Available online: 20 Nov 2006

Abstract

Molecular dynamics simulations have been carried out to estimate the Henry's constants and solubilities of a range of small nonpolar molecules in ethylene oxide using a scheme that closely mimics experiments. Our results show that the method is reliable for polar–nonpolar sytems, which are generally notoriously difficult to investigate using classical methods. By validating the results for several gases for which experimental results are available, we have been able to estimate the solubility of oxygen, for which experiments have yet to be carried out because of flammability concerns. Our studies have also allowed us to develop a simple correlation for predicting the dependence of Henry's constant on binary interaction parameters. Finally, we also observe that for gas solubilities, small diatomics can effectively be approximated by central Lennard–Jones potential models. This can simplify such simulations considerably.

Keywords

 

Details

  • Citation information:
  • Available online: 20 Nov 2006

Author affiliations

  • a University of Illinois at Chicago, Chemical Engineering Department, Chicago, IL, 60607, USA
  • b The Dow Chemical Company, South Charleston, WV, 25303, USA

Journal news

  • 2010 Impact Factor: 1.215 (2011 Thomson Reuters, Journal Citation Reports)

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