Hyppää sisältöön
    • Suomeksi
    • På svenska
    • In English
  • Suomeksi
  • In English
  • Kirjaudu
Näytä aineisto 
  •   Etusivu
  • LUTPub
  • Tieteelliset julkaisut
  • Näytä aineisto
  •   Etusivu
  • LUTPub
  • Tieteelliset julkaisut
  • Näytä aineisto
JavaScript is disabled for your browser. Some features of this site may not work without it.

Improving the estimation accuracy of confined vapor–liquid equilibria by fine-tuning the pure component parameter in the PC-SAFT equation of state

Roosta, Aliakbar; Zendehboudi, Sohrab; Rezaei, Nima (2024-04-08)

Katso/Avaa
roosta_et_al_improving_the_estimation_accuracy_publishers_version.pdf (1.654Mb)
Lataukset: 


Publishers version

Roosta, Aliakbar
Zendehboudi, Sohrab
Rezaei, Nima
08.04.2024

Physical Chemistry Chemical Physics

The Royal Society of Chemistry

School of Engineering Science

https://doi.org/10.1039/D3CP05979K
Näytä kaikki kuvailutiedot
Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi-fe2024042923473

Tiivistelmä

We propose a thermodynamic model that combines the Young–Laplace equation and perturbed chain statistical associating fluid theory (PC-SAFT) equation of state to estimate capillary condensation pressure in microporous and mesoporous sorbents. We adjust the PC-SAFT dispersion-energy parameter when the pore size becomes comparable to the molecular dimension. This modelling framework is applied to diverse systems containing associating and non-associating gases, various sorbents, and a wide range of temperatures. Our simulation results show that under extreme confinement, a higher value of the dispersion-energy parameter (e) is required. Furthermore, using the experimental saturation pressure data for 18 different associating and non-associating confined fluids, we find that the shift in the PC-SAFT dispersion energy correlates with the ratio of the sorbent mean pore size to the PC-SAFT segment size (rp/s). By fitting to the capillary condensation data, the relative deviation between the confined and bulk PC-SAFT dispersion energy parameter is only 0.1% at rp/s = 15; however, this deviation starts to increase exponentially as rp/s decreases. For a sorbent with large pores, when rp/s 4 15, the capillary condensation pressure results from our model are similar to the predictions from the Kelvin equation. Using a dataset containing 235 saturation pressure data points composed of 18 pure gases and 4 binary mixtures, the overall AARD% from our model is 12.26%, which verifies the good accuracy of our model. Because the mean sorbent pore radius (rp), the PC-SAFT energy parameter (e), and segment size (s) are known a priori, our model estimates the corrected energy parameter for small pores and, thus, extends its applicability.

Lähdeviite

Roosta, A., Zendehboudi, S., Rezaei, N. (2024). Improving the estimation accuracy of confined vapor–liquid equilibria by fine-tuning the pure component parameter in the PC-SAFT equation of state. Physical Chemistry Chemical Physics. DOI: 10.1039/D3CP05979K

Kokoelmat
  • Tieteelliset julkaisut [1707]
LUT-yliopisto
PL 20
53851 Lappeenranta
Ota yhteyttä | Tietosuoja | Saavutettavuusseloste
 

 

Tämä kokoelma

JulkaisuajatTekijätNimekkeetKoulutusohjelmaAvainsanatSyöttöajatYhteisöt ja kokoelmat

Omat tiedot

Kirjaudu sisäänRekisteröidy
LUT-yliopisto
PL 20
53851 Lappeenranta
Ota yhteyttä | Tietosuoja | Saavutettavuusseloste