Multicomponent Distillation Modeling of An Essential Oil by the SRK and PSRK State Equations

The equation of state Soave-Redlich-Kwong (SRK) and its modification (predictive SRK or PSRK) are applied to simulate multicomponet distillation, which separate main component of spearmint essential oil. The simulation model is based on bubble point method, and the Wang-Henke algorithm. Spearmint es...

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Main Author: Saeid Asadi
Format: Article
Language:English
Published: Iranian Institute of Research and Development in Chemical Industries (IRDCI)-ACECR 2014-09-01
Series:Iranian Journal of Chemistry & Chemical Engineering
Subjects:
Online Access:http://www.ijcce.ac.ir/article_11333_4b231419c23059031283095129bc7902.pdf
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author Saeid Asadi
author_facet Saeid Asadi
author_sort Saeid Asadi
collection DOAJ
description The equation of state Soave-Redlich-Kwong (SRK) and its modification (predictive SRK or PSRK) are applied to simulate multicomponet distillation, which separate main component of spearmint essential oil. The simulation model is based on bubble point method, and the Wang-Henke algorithm. Spearmint essential oil is considered in the study and the original experimental data were obtained from pilot plant. The models were validated by continuous distillation column with trays of one to five numbers. The work allows concluding on the advantages, disadvantages and expected accuracy of SRK and PSRK equations of state for multicomponent distillation data in the system as those studied..
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spelling doaj.art-dc73cebba0dc4ea9a0e388f7638e21082022-12-22T01:47:33ZengIranian Institute of Research and Development in Chemical Industries (IRDCI)-ACECRIranian Journal of Chemistry & Chemical Engineering1021-99861021-99862014-09-01333778211333Multicomponent Distillation Modeling of An Essential Oil by the SRK and PSRK State EquationsSaeid Asadi0Department of Mechanical Engineering, Payame Noor University (PNU), P.O. BOX 19395-3697 Tehran, I.R. IRANThe equation of state Soave-Redlich-Kwong (SRK) and its modification (predictive SRK or PSRK) are applied to simulate multicomponet distillation, which separate main component of spearmint essential oil. The simulation model is based on bubble point method, and the Wang-Henke algorithm. Spearmint essential oil is considered in the study and the original experimental data were obtained from pilot plant. The models were validated by continuous distillation column with trays of one to five numbers. The work allows concluding on the advantages, disadvantages and expected accuracy of SRK and PSRK equations of state for multicomponent distillation data in the system as those studied..http://www.ijcce.ac.ir/article_11333_4b231419c23059031283095129bc7902.pdfspearmint essential oilsimulationmulticomponent distillationpsrksrk
spellingShingle Saeid Asadi
Multicomponent Distillation Modeling of An Essential Oil by the SRK and PSRK State Equations
Iranian Journal of Chemistry & Chemical Engineering
spearmint essential oil
simulation
multicomponent distillation
psrk
srk
title Multicomponent Distillation Modeling of An Essential Oil by the SRK and PSRK State Equations
title_full Multicomponent Distillation Modeling of An Essential Oil by the SRK and PSRK State Equations
title_fullStr Multicomponent Distillation Modeling of An Essential Oil by the SRK and PSRK State Equations
title_full_unstemmed Multicomponent Distillation Modeling of An Essential Oil by the SRK and PSRK State Equations
title_short Multicomponent Distillation Modeling of An Essential Oil by the SRK and PSRK State Equations
title_sort multicomponent distillation modeling of an essential oil by the srk and psrk state equations
topic spearmint essential oil
simulation
multicomponent distillation
psrk
srk
url http://www.ijcce.ac.ir/article_11333_4b231419c23059031283095129bc7902.pdf
work_keys_str_mv AT saeidasadi multicomponentdistillationmodelingofanessentialoilbythesrkandpsrkstateequations