Title
Transport properties of the binary mixtures of the three organic liquids toluene, methanol, and cyclohexanexmlui.dri2xhtml.METS-1.0.item-contributorOtherinstitution
https://ror.org/0234wmv40https://ror.org/01r9htc13
Version
http://purl.org/coar/version/c_ab4af688f83e57aa
Rights
© 2017 Author(s)Access
http://purl.org/coar/access_right/c_abf2Publisher’s version
https://doi.org/10.1063/1.4977078Published at
The Journal of Chemical Physics Vol. 146. Nº 9, 2017Publisher
AIP PublishingKeywords
diffusionThermodiffusion
Soret effect
spinodal
Abstract
We report on the measurements of diffusion (D), thermodiffusion (DT), and Soret (ST) coefficients in binary pairs of the ternary system toluene-methanol-cyclohexane using different instrumental techni ... [+]
We report on the measurements of diffusion (D), thermodiffusion (DT), and Soret (ST) coefficients in binary pairs of the ternary system toluene-methanol-cyclohexane using different instrumental techniques: microgravity measurements (SODI/DCMIX2) on the International Space Station, thermogravitational column in combination with sliding symmetric tubes, optical beam deflection, optical digital interferometry, and counter flow cell. The binary systems have large regions where the mixtures are either not miscible or the Soret coefficient is negative. All the coefficients have been measured over a wide composition range with the exception of a miscibility gap. Results from different instruments and literature data are in favorable agreement over a broad composition range. Additionally, we have carefully measured the physical properties and the optical contrast factors (dn/dc) p, T and (dn/dT)p,c. The latter ones were also calculated using the Looyenga equation. The measurements in methanol-cyclohexane mixture revealed a decay of the diffusion coefficient when approaching the miscibility gap. We have interpreted this in the spirit of the pseudospinodal concept. [-]
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info:eu-repo/grantAgreement/GV/Elkartek 2016/KK-2016-00030/CAPV/Microtecnologías como motor de desarrollo de sistemas ciber-físicos avanzados involucrados en la fábrica inteligente/MICRO4FABCollections
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