Paschalidis, LeandrosLeandrosPaschalidis2026-05-122026-05-122026-05-12https://hdl.handle.net/11420/63034The Python scripts accompannying the publication: The steam barrier as a design constraint in carbon capture: pathways to low-temperature regeneration, submitted to Chemical Engineering and Processing - Process Intensification is presented here. The following scripts are included: Davies.py - it calculates the chemical and gas-liquid equilibrium using the semi-empirical Davies activity coefficient model. Debye_Hückel.py - it calculates the chemical and gas-liquid equilibrium using the Debye Hückel activity coefficient model. Ideal.py - it calculates the chemical and gas-liquid equilibrium assuming an ideal liquid phase. contour_creation.py - iterates accross different parameter values to create the contour plots of Figure 4 in the main article. water_exergy_vs_T_vs_p.py - performs the exergy calculations.enhttps://opensource.org/licenses/GPL-3.0carbon capturepH-swingcarbonic anhydraselow-temperature desorptionNatural Sciences and Mathematics::572: BiochemistryThe steam barrier as a design constraint in carbon capture: pathways to low-temperature regeneration - Python codeSoftwarehttps://doi.org/10.15480/882.1709310.15480/882.17093Paschalidis, LeandrosLeandrosPaschalidis