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Thermodynamics of mixed‐gas adsorption

AIChE Journal · 1965 · Vol. 11(1) · pp. 121–127
Alan L. MyersJohn M. Prausnitz

Abstract

Abstract A simple technique is described for calculating the adsorption equilibria for components in a gaseous mixture, using only data for the pure‐component adsorption equilibria at the same temperature and on the same adsorbent. The proposed technique is based on the concept of an ideal adsorbed solution and, using classical surface thermodynamics, an expression analogous to Raoult's law is obtained. The essential idea of the calculation lies in the recognition that in an ideal solution the partial pressure of an adsorbed component is given by the product of its mole fraction in the adsorbed phase and the pressure which it would exert as a pure adsorbed component at the same temperature and spreading pressure as those of the mixture. Predicted isotherms give excellent agreement with experimental data for methane‐ethane and ethylene‐carbon dioxide on activated carbon and for carbon monoxide‐oxygen and propane‐propylene on silica gel. The simplicity of the calculation, which requires no data for the mixture, makes it especially useful for engineering applications.

Carbon Dioxide Capture TechnologiesPhase Equilibria and ThermodynamicsCatalysis and Oxidation ReactionsAdsorptionChemistryThermodynamicsCarbon monoxideMethanePropaneMole fractionComponent (thermodynamics)Activated carbonPhase (matter)

Funding

  • National Science Foundation
  • American Chemical Society Petroleum Research Fund
Citations
3,688
FWCI
9.31
field-weighted impact
References
9
Percentile
98%
vs. same field & year
Citations per year
References
Physical adsorption of gases
Journal of Physics and Chemistry of Solids · 1963 · 786 citations
The Dynamical Character of Adsorption
Soil Science · 1953 · 815 citations
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