AN INTERIM THERMODYNAMIC PROPERTY FORMULATION FOR SUPERCRITICAL n-HEXANE

Accurate information on the thermodynamic properties of supercritical fluids is highly sought for the chemical technology, especially, supercritical extraction technology. The thermodynamic properties of fluids near the critical region are strongly affected by the presence of fluctuations and theref...

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Main Authors: Azzedine Abbaci, Anissa Acidi, Aicha Rizi, Salaheddine Azzouz
Format: Article
Language:English
Published: Alma Mater Publishing House "Vasile Alecsandri" University of Bacau 2010-07-01
Series:Scientific Study & Research: Chemistry & Chemical Engineering, Biotechnology, Food Industry
Subjects:
Online Access:http://pubs.ub.ro/dwnl.php?id=CSCC6201011V02S01A0001
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author Azzedine Abbaci
Anissa Acidi
Aicha Rizi
Salaheddine Azzouz
author_facet Azzedine Abbaci
Anissa Acidi
Aicha Rizi
Salaheddine Azzouz
author_sort Azzedine Abbaci
collection DOAJ
description Accurate information on the thermodynamic properties of supercritical fluids is highly sought for the chemical technology, especially, supercritical extraction technology. The thermodynamic properties of fluids near the critical region are strongly affected by the presence of fluctuations and therefore, can not be described by conventional equation. We have investigated an interim formulation for the behavior of the thermodynamic properties of n-hexane in the vicinity of the critical region. For this reason we have used the so-called “crossover model” to describe the thermodynamic properties of n-hexane in a wide range of temperatures and densities around the critical point.
format Article
id doaj-art-9a170f50bce5465889e1287c74e2b0f8
institution OA Journals
issn 1582-540X
language English
publishDate 2010-07-01
publisher Alma Mater Publishing House "Vasile Alecsandri" University of Bacau
record_format Article
series Scientific Study & Research: Chemistry & Chemical Engineering, Biotechnology, Food Industry
spelling doaj-art-9a170f50bce5465889e1287c74e2b0f82025-08-20T02:00:38ZengAlma Mater Publishing House "Vasile Alecsandri" University of BacauScientific Study & Research: Chemistry & Chemical Engineering, Biotechnology, Food Industry1582-540X2010-07-01112235241AN INTERIM THERMODYNAMIC PROPERTY FORMULATION FOR SUPERCRITICAL n-HEXANEAzzedine AbbaciAnissa AcidiAicha RiziSalaheddine AzzouzAccurate information on the thermodynamic properties of supercritical fluids is highly sought for the chemical technology, especially, supercritical extraction technology. The thermodynamic properties of fluids near the critical region are strongly affected by the presence of fluctuations and therefore, can not be described by conventional equation. We have investigated an interim formulation for the behavior of the thermodynamic properties of n-hexane in the vicinity of the critical region. For this reason we have used the so-called “crossover model” to describe the thermodynamic properties of n-hexane in a wide range of temperatures and densities around the critical point.http://pubs.ub.ro/dwnl.php?id=CSCC6201011V02S01A0001crossoverFluctuationsn-Hexanesupercriticalthermodynamic properties
spellingShingle Azzedine Abbaci
Anissa Acidi
Aicha Rizi
Salaheddine Azzouz
AN INTERIM THERMODYNAMIC PROPERTY FORMULATION FOR SUPERCRITICAL n-HEXANE
Scientific Study & Research: Chemistry & Chemical Engineering, Biotechnology, Food Industry
crossover
Fluctuations
n-Hexane
supercritical
thermodynamic properties
title AN INTERIM THERMODYNAMIC PROPERTY FORMULATION FOR SUPERCRITICAL n-HEXANE
title_full AN INTERIM THERMODYNAMIC PROPERTY FORMULATION FOR SUPERCRITICAL n-HEXANE
title_fullStr AN INTERIM THERMODYNAMIC PROPERTY FORMULATION FOR SUPERCRITICAL n-HEXANE
title_full_unstemmed AN INTERIM THERMODYNAMIC PROPERTY FORMULATION FOR SUPERCRITICAL n-HEXANE
title_short AN INTERIM THERMODYNAMIC PROPERTY FORMULATION FOR SUPERCRITICAL n-HEXANE
title_sort interim thermodynamic property formulation for supercritical n hexane
topic crossover
Fluctuations
n-Hexane
supercritical
thermodynamic properties
url http://pubs.ub.ro/dwnl.php?id=CSCC6201011V02S01A0001
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