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dc.contributor.authorZhang, J.
dc.contributor.authorPiana, Stefano
dc.contributor.authorFreij-Ayoub. R.
dc.contributor.authorRivero, M.
dc.contributor.authorChoi, S.
dc.date.accessioned2017-01-30T13:39:57Z
dc.date.available2017-01-30T13:39:57Z
dc.date.created2008-11-12T23:32:21Z
dc.date.issued2006
dc.identifier.citationZhang, Junfang and Piana, Stefano and Freij-Ayoub, R and Rivero, M and Choi, S. 2006. Molecular dynamics study of methane in water: diffusion and structure. Molecular Simulation 32 (15): 1279-1286.
dc.identifier.urihttp://hdl.handle.net/20.500.11937/33880
dc.description.abstract

We present molecular dynamics simulation results for the diffusion coefficients and structure of water-methane mixtures in constant NPT ensembles, at T 270, 300K and P 8.104 107 Pa. The systems we have studied consist of one, four and eight CH4 molecules and varying H2O molecules per unit cell, which correspond to methane concentration of 0.081, 0.324 and 0.643 mol/l, respectively. The intermolecular potentials used in all the simulations were the four-site TIP4P model of water [1] and the fitted Lennard-Jones 12-6 potential for CH4ZH2O [2]. Our results show that the methane concentration has little impact on the structure of water and the formation of hydrogen bonds (H-bonds) between water molecules. The H-bond numbers, H-bond length and the H-bond angle are independent of the methane concentration at the temperatures and densities examined in this study. We also find that the number of H-bonds and angles are sensitive to the temperature. The rise of temperature produces a decrease in the number and an increase in the angle of the H-bonds. Enhanced structuring of the hydration-shell water molecules is indicated by an increase of the first and second peak in the water oxygen-oxygen radial distribution function as temperature is decreased. The self-diffusion coefficient of water is sensitive to the methane concentration and temperature.

dc.publisherTaylor & Francis Ltd
dc.relation.urihttp://www.informaworld.com/openurl?genre=article&id=doi:10.1080/08927020601039598
dc.subjectHydrogen bond
dc.subjectMethane concentration
dc.subjectMethane hydrate
dc.subjectMolecular dynamics simulation
dc.titleMolecular dynamics study of methane in water: diffusion and structure
dc.typeJournal Article
dcterms.source.volume32
dcterms.source.number15
dcterms.source.startPage1279
dcterms.source.endPage1286
dcterms.source.titleMolecular Simulation
curtin.note

This is an electronic version of an article published in Zhang, Junfang and Piana, Stefano and Freij-Ayoub, R and Rivero, M and Choi, S (2006) Molecular dynamics study of methane in water: diffusion and structure, Molecular Simulation 32(15):1279-1286.

curtin.note

Molecular Simulation is available online at:

curtin.note

<a href="http://www.informaworld.com/openurl?genre=article&id=doi">http://www.informaworld.com/openurl?genre=article&id=doi</a>: 10.1080/08927020601039598

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pending correct version

curtin.identifierEPR-1284
curtin.accessStatusFulltext not available
curtin.facultyDepartment of Applied Chemistry
curtin.facultyDivision of Engineering, Science and Computing
curtin.facultyFaculty of Science


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