4.4 Article

Isosteric heat of adsorption from thermodynamic Langmuir isotherm

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SPRINGER
DOI: 10.1007/s10450-020-00296-3

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Adsorption isotherm; Isosteric heat of adsorption; Pure component adsorption; Thermodynamic Langmuir isotherm

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  1. U. S. Department of Energy [DE-EE0007888]
  2. Jack Maddox Distinguished Engineering Chair Professorship in Sustainable Energy - J.F Maddox Foundation

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The thermodynamic Langmuir isotherm model is effectively utilized to estimate the isosteric heat of adsorption for pure component adsorption, demonstrating accurate results in correlating surface loading and isosteric heat.
The recently developed thermodynamic Langmuir isotherm model is used to estimate the isosteric heat of adsorption for pure component adsorption. Specifically, pure component adsorption isotherms at different temperatures are first correlated with the thermodynamic Langmuir isotherm model. Then the pure component isosteric heat of adsorption is calculated with the Clausius-Clapeyron equation. We show the thermodynamic Langmuir isotherm model correctly estimates the isosteric heat of adsorption as a function of surface loading for pure component adsorption.

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