Predictive method of hydrogen solubility in heavy petroleum fractions using EOS/GE and group contributions methods

Hydrogen solubility in heavy petroleum fractions was modelled with Peng-Robinson cubic equation of state combined with the UNIFAC solution model (EoS/GE) through a modified Huron-Vidal mixing rule (MHV1). As critical properties and molecular structure of heavy petroleum fractions are entering parame...

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Published inFuel (Guildford) Vol. 224; pp. 619 - 627
Main Authors Aguilar-Cisneros, Humberto, Carreón-Calderón, Bernardo, Uribe-Vargas, Verónica, Domínguez-Esquivel, José Manuel, Ramirez-de-Santiago, Mario
Format Journal Article
LanguageEnglish
Published Kidlington Elsevier Ltd 15.07.2018
Elsevier BV
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Abstract Hydrogen solubility in heavy petroleum fractions was modelled with Peng-Robinson cubic equation of state combined with the UNIFAC solution model (EoS/GE) through a modified Huron-Vidal mixing rule (MHV1). As critical properties and molecular structure of heavy petroleum fractions are entering parameters in this thermodynamic model, the thermodynamic characterization procedure by contribution of functional groups proposed by Carreón-Calderón et al. (2012) was taken as starting point in order to develop a predictive method for estimating hydrogen solubility in such fractions. The functional groups considered in the original work were reviewed and modified, improving predictions and avoiding adjustment of model parameters. Besides, a procedure of mass distribution for the hydrogen-carbon ratio (HCR) of the petroleum fraction is proposed so that the hydrogen solubility can be estimated when more than one heavy petroleum fraction is present. This approach was tested with twelve heavy petroleum fractions in a wide range of pressure and temperature. These fractions include coal liquids, refinery products and a bitumen from Athabasca. The total average deviation was about 15%.
AbstractList Hydrogen solubility in heavy petroleum fractions was modelled with Peng-Robinson cubic equation of state combined with the UNIFAC solution model (EoS/GE) through a modified Huron-Vidal mixing rule (MHV1). As critical properties and molecular structure of heavy petroleum fractions are entering parameters in this thermodynamic model, the thermodynamic characterization procedure by contribution of functional groups proposed by Carreón-Calderón et al. (2012) was taken as starting point in order to develop a predictive method for estimating hydrogen solubility in such fractions. The functional groups considered in the original work were reviewed and modified, improving predictions and avoiding adjustment of model parameters. Besides, a procedure of mass distribution for the hydrogen-carbon ratio (HCR) of the petroleum fraction is proposed so that the hydrogen solubility can be estimated when more than one heavy petroleum fraction is present. This approach was tested with twelve heavy petroleum fractions in a wide range of pressure and temperature. These fractions include coal liquids, refinery products and a bitumen from Athabasca. The total average deviation was about 15%.
Mexican Institute of Petroleum, Department of Reservoir Engineering, Eje Central Lázaro Cárdenas Norte 152, Col. San Bartolo Atepehuacan, Deleg. Gustavo A. Madero, C.P. 07730, Mexico
Author Domínguez-Esquivel, José Manuel
Carreón-Calderón, Bernardo
Uribe-Vargas, Verónica
Aguilar-Cisneros, Humberto
Ramirez-de-Santiago, Mario
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  surname: Carreón-Calderón
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  organization: Mexican Institute of Petroleum, Department of Reservoir Engineering, Eje Central Lázaro Cárdenas Norte 152, Col. San Bartolo Atepehuacan, Deleg. Gustavo A. Madero, C.P. 07730, Mexico
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  givenname: Verónica
  surname: Uribe-Vargas
  fullname: Uribe-Vargas, Verónica
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  givenname: José Manuel
  surname: Domínguez-Esquivel
  fullname: Domínguez-Esquivel, José Manuel
  email: jmdoming@imp.mx
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  givenname: Mario
  surname: Ramirez-de-Santiago
  fullname: Ramirez-de-Santiago, Mario
  email: msantiag@imp.mx
  organization: Mexican Institute of Petroleum, Department of Reservoir Engineering, Eje Central Lázaro Cárdenas Norte 152, Col. San Bartolo Atepehuacan, Deleg. Gustavo A. Madero, C.P. 07730, Mexico
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Hydrogen solubility
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Thermodynamic characterization
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SSID ssj0007854
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Snippet Hydrogen solubility in heavy petroleum fractions was modelled with Peng-Robinson cubic equation of state combined with the UNIFAC solution model (EoS/GE)...
Mexican Institute of Petroleum, Department of Reservoir Engineering, Eje Central Lázaro Cárdenas Norte 152, Col. San Bartolo Atepehuacan, Deleg. Gustavo A....
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elsevier
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StartPage 619
SubjectTerms Chemistry
Group contribution methods
Heavy oil
Heavy petroleum
Hydrogen
Hydrogen solubility
Hydrogen storage
Petroleum
Petroleum engineering
Reservoir engineering
Thermodynamic characterization
Thermodynamics
Title Predictive method of hydrogen solubility in heavy petroleum fractions using EOS/GE and group contributions methods
URI https://dx.doi.org/10.1016/j.fuel.2018.03.116
https://www.proquest.com/docview/2083807358/abstract/
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