Discrete Modeling as a Basis of Excess Gibbs-Energy Models for Chemical Engineering Applications

Research output: Contribution to conferencePaperResearch

Original languageEnglish
Publication statusPublished - 13 Feb 2018
Event44. Tieftemperatur-Thermodynamik-Kolloquium - Heiligenblut, Heiligenblut, Austria
Duration: 10 Feb 201817 Feb 2018

Conference

Conference44. Tieftemperatur-Thermodynamik-Kolloquium
Abbreviated titleTTTK
CountryAustria
CityHeiligenblut
Period10/02/1817/02/18

Keywords

  • discrete modeling
  • thermodynamics
  • activity coefficient

ASJC Scopus subject areas

  • Chemical Engineering (miscellaneous)

Fields of Expertise

  • Mobility & Production

Cite this

Mayer, C., & Wallek, T. (2018). Discrete Modeling as a Basis of Excess Gibbs-Energy Models for Chemical Engineering Applications. Paper presented at 44. Tieftemperatur-Thermodynamik-Kolloquium, Heiligenblut, Austria.

Discrete Modeling as a Basis of Excess Gibbs-Energy Models for Chemical Engineering Applications. / Mayer, Christoph; Wallek, Thomas.

2018. Paper presented at 44. Tieftemperatur-Thermodynamik-Kolloquium, Heiligenblut, Austria.

Research output: Contribution to conferencePaperResearch

Mayer, C & Wallek, T 2018, 'Discrete Modeling as a Basis of Excess Gibbs-Energy Models for Chemical Engineering Applications' Paper presented at 44. Tieftemperatur-Thermodynamik-Kolloquium, Heiligenblut, Austria, 10/02/18 - 17/02/18, .
Mayer C, Wallek T. Discrete Modeling as a Basis of Excess Gibbs-Energy Models for Chemical Engineering Applications. 2018. Paper presented at 44. Tieftemperatur-Thermodynamik-Kolloquium, Heiligenblut, Austria.
Mayer, Christoph ; Wallek, Thomas. / Discrete Modeling as a Basis of Excess Gibbs-Energy Models for Chemical Engineering Applications. Paper presented at 44. Tieftemperatur-Thermodynamik-Kolloquium, Heiligenblut, Austria.
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note = "44. Tieftemperatur-Thermodynamik-Kolloquium, TTTK ; Conference date: 10-02-2018 Through 17-02-2018",

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AU - Mayer, Christoph

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KW - discrete modeling

KW - thermodynamics

KW - activity coefficient

M3 - Paper

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