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Prediction of Thermochemical Properties of Long-Chain Alkanes Using Linear Regression: Application to Hydroisomerization.
Sharma, Shrinjay; Sleijfer, Josh J; Op de Beek, Jeroen; van der Zeeuw, Stach; Zorzos, Daniil; Lasala, Silvia; Rigutto, Marcello S; Zuidema, Erik; Agarwal, Umang; Baur, Richard; Calero, Sofia; Dubbeldam, David; Vlugt, Thijs J H.
Affiliation
  • Sharma S; Engineering Thermodynamics, Process & Energy Department, Faculty of Mechanical Engineering, Delft University of Technology, Leeghwaterstraat 39, 2628CB Delft, The Netherlands.
  • Sleijfer JJ; Delft Institute of Applied Mathematics, Faculty of Electrical Engineering, Mathematics and Computer Science, Delft University of Technology, Mekelweg 4, 2628CD Delft, The Netherlands.
  • Op de Beek J; Faculty of Applied Sciences, Delft University of Technology, Lorentzweg 1, 2628 CJ Delft, The Netherlands.
  • van der Zeeuw S; Delft Institute of Applied Mathematics, Faculty of Electrical Engineering, Mathematics and Computer Science, Delft University of Technology, Mekelweg 4, 2628CD Delft, The Netherlands.
  • Zorzos D; Faculty of Applied Sciences, Delft University of Technology, Lorentzweg 1, 2628 CJ Delft, The Netherlands.
  • Lasala S; Faculty of Aerospace Engineering, Delft University of Technology, Kluyverweg 1, 2629 HS Delft, The Netherlands.
  • Rigutto MS; Université de Lorraine, CNRS, LRGP, F-54000 Nancy, France.
  • Zuidema E; Shell Global Solutions International B.V., Grasweg 39, 1031HW Amsterdam, The Netherlands.
  • Agarwal U; Shell Global Solutions International B.V., Grasweg 39, 1031HW Amsterdam, The Netherlands.
  • Baur R; Shell Chemical LP, Monaca, Pennsylvania 15061, United States.
  • Calero S; Shell Global Solutions International B.V., Grasweg 39, 1031HW Amsterdam, The Netherlands.
  • Dubbeldam D; Department of Applied Physics, Eindhoven University of Technology, 5600MB Eindhoven, The Netherlands.
  • Vlugt TJH; Van't Hoff Institute of Molecular Sciences, University of Amsterdam, Science Park 904, 1098XH Amsterdam, The Netherlands.
J Phys Chem B ; 128(39): 9619-9629, 2024 Oct 03.
Article in En | MEDLINE | ID: mdl-39307994
ABSTRACT
Linear regression (LR) is used to predict thermochemical properties of alkanes at temperatures (0-1000) K to study chemical reaction equilibria inside zeolites. The thermochemical properties of C1 until C10 isomers reported by Scott are used as training data sets in the LR model which is used to predict these properties for alkanes longer than C10 isomers. Second-order groups are used as independent variables which account for the interactions between the neighboring groups of atoms. This model accurately predicts Gibbs free energies, enthalpies, Gibbs free energies of formation, and enthalpies of formation for alkanes which exceeds the chemical accuracy of 1 kcal/mol and outperforms the group contribution methods developed by Benson et al., Joback and Reid, and Constantinou and Gani. Predictions from our model are used to compute the reaction equilibrium distribution of hydroisomerization of C10 and C14 isomers in MTW-type zeolite. Calculation of reaction equilibrium distribution inside zeolites also requires Henry coefficients of the isomers which can be computed using classical force field-based molecular simulations using the RASPA2 software for which we created an automated workflow. The reaction equilibrium distribution for C10 isomers obtained using the LR model and the training data set for this model are in very good agreement. The tools developed in this study will enable the computational study of hydroisomerization of long-chain alkanes (>C10).

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: J Phys Chem B Year: 2024 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: J Phys Chem B Year: 2024 Document type: Article