Cargando…

Thermodynamic modeling of binary mixtures of ethylenediamine with water, methanol, ethanol, and 2-propanol by association theory

Association theories by statistical associating fluid theory (SAFT) and cubic plus association (CPA) equation of states (EoS) have effectively handled various thermodynamic purposes thus far; they consider hydrogen bonding effects in associating compounds (those with hydrogen bonds such as water and...

Descripción completa

Detalles Bibliográficos
Autores principales: Jalaei Salmani, Hossein, Karkhanechi, Hamed, Moradi, Mohammad Reza, Matsuyama, Hideto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9650626/
https://www.ncbi.nlm.nih.gov/pubmed/36425680
http://dx.doi.org/10.1039/d2ra03017a
_version_ 1784828062990336000
author Jalaei Salmani, Hossein
Karkhanechi, Hamed
Moradi, Mohammad Reza
Matsuyama, Hideto
author_facet Jalaei Salmani, Hossein
Karkhanechi, Hamed
Moradi, Mohammad Reza
Matsuyama, Hideto
author_sort Jalaei Salmani, Hossein
collection PubMed
description Association theories by statistical associating fluid theory (SAFT) and cubic plus association (CPA) equation of states (EoS) have effectively handled various thermodynamic purposes thus far; they consider hydrogen bonding effects in associating compounds (those with hydrogen bonds such as water and alcohols) in a proper way. The objective of this work is to thermodynamically undertake the study of ethylenediamine (EDA)–water, EDA–methanol, EDA–ethanol, and EDA–2-propanol binary mixtures in a manner to be useful for designing separation processes by CPA EoS. Accordingly, CPA EoS was applied to model vapor–liquid equilibrium (VLE) of several practical binary mixtures including EDA–water, EDA–methanol, EDA–ethanol, and EDA–2-propanol. It should be noted that the aforementioned mixtures are being studied by CPA EoS for the first time and necessary details are presented; two different association schemes (different situations for creating hydrogen bonds), 2B and 4C schemes, were considered for EDA. Water and studied alcohols were also modeled by 4C and 2B schemes, respectively. Moreover, the capability of two different combining rules (Elliot and CR-1) was evaluated. The azeotrope point available in the phase diagram of EDA–water system was correctly identified by CPA EoS. Furthermore, the liquid phase density of EDA–water was satisfactorily predicted by CPA EoS. It has also a high level of accuracy in VLE modeling of EDA–methanol, EDA–ethanol, and EDA–2-propanol mixtures. In the end, according to all provided results, it can be said that CPA EoS along with all required parameters obtained in this study is capable of describing thermodynamic behavior of studied mixtures.
format Online
Article
Text
id pubmed-9650626
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-96506262022-11-23 Thermodynamic modeling of binary mixtures of ethylenediamine with water, methanol, ethanol, and 2-propanol by association theory Jalaei Salmani, Hossein Karkhanechi, Hamed Moradi, Mohammad Reza Matsuyama, Hideto RSC Adv Chemistry Association theories by statistical associating fluid theory (SAFT) and cubic plus association (CPA) equation of states (EoS) have effectively handled various thermodynamic purposes thus far; they consider hydrogen bonding effects in associating compounds (those with hydrogen bonds such as water and alcohols) in a proper way. The objective of this work is to thermodynamically undertake the study of ethylenediamine (EDA)–water, EDA–methanol, EDA–ethanol, and EDA–2-propanol binary mixtures in a manner to be useful for designing separation processes by CPA EoS. Accordingly, CPA EoS was applied to model vapor–liquid equilibrium (VLE) of several practical binary mixtures including EDA–water, EDA–methanol, EDA–ethanol, and EDA–2-propanol. It should be noted that the aforementioned mixtures are being studied by CPA EoS for the first time and necessary details are presented; two different association schemes (different situations for creating hydrogen bonds), 2B and 4C schemes, were considered for EDA. Water and studied alcohols were also modeled by 4C and 2B schemes, respectively. Moreover, the capability of two different combining rules (Elliot and CR-1) was evaluated. The azeotrope point available in the phase diagram of EDA–water system was correctly identified by CPA EoS. Furthermore, the liquid phase density of EDA–water was satisfactorily predicted by CPA EoS. It has also a high level of accuracy in VLE modeling of EDA–methanol, EDA–ethanol, and EDA–2-propanol mixtures. In the end, according to all provided results, it can be said that CPA EoS along with all required parameters obtained in this study is capable of describing thermodynamic behavior of studied mixtures. The Royal Society of Chemistry 2022-11-11 /pmc/articles/PMC9650626/ /pubmed/36425680 http://dx.doi.org/10.1039/d2ra03017a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Jalaei Salmani, Hossein
Karkhanechi, Hamed
Moradi, Mohammad Reza
Matsuyama, Hideto
Thermodynamic modeling of binary mixtures of ethylenediamine with water, methanol, ethanol, and 2-propanol by association theory
title Thermodynamic modeling of binary mixtures of ethylenediamine with water, methanol, ethanol, and 2-propanol by association theory
title_full Thermodynamic modeling of binary mixtures of ethylenediamine with water, methanol, ethanol, and 2-propanol by association theory
title_fullStr Thermodynamic modeling of binary mixtures of ethylenediamine with water, methanol, ethanol, and 2-propanol by association theory
title_full_unstemmed Thermodynamic modeling of binary mixtures of ethylenediamine with water, methanol, ethanol, and 2-propanol by association theory
title_short Thermodynamic modeling of binary mixtures of ethylenediamine with water, methanol, ethanol, and 2-propanol by association theory
title_sort thermodynamic modeling of binary mixtures of ethylenediamine with water, methanol, ethanol, and 2-propanol by association theory
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9650626/
https://www.ncbi.nlm.nih.gov/pubmed/36425680
http://dx.doi.org/10.1039/d2ra03017a
work_keys_str_mv AT jalaeisalmanihossein thermodynamicmodelingofbinarymixturesofethylenediaminewithwatermethanolethanoland2propanolbyassociationtheory
AT karkhanechihamed thermodynamicmodelingofbinarymixturesofethylenediaminewithwatermethanolethanoland2propanolbyassociationtheory
AT moradimohammadreza thermodynamicmodelingofbinarymixturesofethylenediaminewithwatermethanolethanoland2propanolbyassociationtheory
AT matsuyamahideto thermodynamicmodelingofbinarymixturesofethylenediaminewithwatermethanolethanoland2propanolbyassociationtheory