2020
DOI: 10.1016/j.energy.2019.116753
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How to express the adsorbed CO2 with the Gibbs’ thermodynamic graphical method: A preliminary study

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Cited by 4 publications
(5 citation statements)
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“…The adsorption of pure methane in shale can be regarded as an open system for the transfer of substances between the gas phase and the adsorbed phase; consequently, in this system, the complete expression of the internal energy in the adsorbed phase is , where U a represents the internal energy, kJ/kg, and μ a is the chemical potential in the adsorbed phase, kJ/mol. Under a constant adsorption amount, μ a= μ b is present, when the adsorbed phase and bulk phase are in equilibrium, where μ b represents the chemical potential in the bulk gas phase, kJ/mol, which can be obtained by REFPROP 9.0.…”
Section: Theoretical Frameworkmentioning
confidence: 99%
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“…The adsorption of pure methane in shale can be regarded as an open system for the transfer of substances between the gas phase and the adsorbed phase; consequently, in this system, the complete expression of the internal energy in the adsorbed phase is , where U a represents the internal energy, kJ/kg, and μ a is the chemical potential in the adsorbed phase, kJ/mol. Under a constant adsorption amount, μ a= μ b is present, when the adsorbed phase and bulk phase are in equilibrium, where μ b represents the chemical potential in the bulk gas phase, kJ/mol, which can be obtained by REFPROP 9.0.…”
Section: Theoretical Frameworkmentioning
confidence: 99%
“…The p d V a term disappears if the total volume in the adsorbed phase V a at a specific adsorption capacity is a constant. The total volume in the adsorbed phase can be expressed as …”
Section: Theoretical Frameworkmentioning
confidence: 99%
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