Computation of partial molar properties using continuous fractional component Monte Carlo

Open Access
Authors
  • A. Rahbari
  • R. Hens
  • I.K. Nikolaidis
  • A. Poursaeidesfahani
Publication date 2018
Journal Molecular Physics
Volume | Issue number 116 | 21-22
Pages (from-to) 3331-3344
Number of pages 14
Organisations
  • Faculty of Science (FNWI) - Van 't Hoff Institute for Molecular Sciences (HIMS)
Abstract
An alternative method for calculating partial molar excess enthalpies and partial molar volumes of components in Monte Carlo (MC) simulations is developed. This method combines the original idea of Frenkel, Ciccotti, and co-workers with the recent continuous fractional component Monte Carlo (CFCMC) technique. The method is tested for a system of Lennard–Jones particles at different densities. As an example of a realistic system, partial molar properties of a [NH3, N2, H2] mixture at chemical equilibrium are computed at different pressures ranging from P = 10 to 80 MPa. Results obtained from MC simulations are compared to those obtained from the PC-SAFT Equation of State (EoS) and the Peng–Robinson EoS. Excellent agreement is found between the results obtained from MC simulations and PC-SAFT EoS, and significant differences were found for PR EoS modelling. We find that the reaction is much more exothermic at higher pressures.
Document type Article
Note With supplementary file
Language English
Published at https://doi.org/10.1080/00268976.2018.1451663
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00268976.2018 (Final published version)
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