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Détail de l'auteur
Auteur Seungmoon Lee
Documents disponibles écrits par cet auteur
Affiner la rechercheScreening test of solid amine sorbents for CO2 capture / Seungmoon Lee in Industrial & engineering chemistry research, Vol. 47 N°19 (Octobre 2008)
[article]
in Industrial & engineering chemistry research > Vol. 47 N°19 (Octobre 2008) . - p. 7419–7423
Titre : Screening test of solid amine sorbents for CO2 capture Type de document : texte imprimé Auteurs : Seungmoon Lee, Auteur ; Thomas P. Filburn, Auteur ; Mac Gray, Auteur Année de publication : 2008 Article en page(s) : p. 7419–7423 Note générale : Chemical engineering Langues : Anglais (eng) Mots-clés : CO2--absorption Absorption/desorption rate Cyclic capacity Cycle decay effect Résumé : In this study, the absorption properties of CO2 in seven different solid amine absorbents were measured. The specific characteristics, such as absorption capacity, absorption/desorption rate, cyclic capacity, cycle decay effect, temperature of reaction in the absorber, and optimal conditions for the CO2 absorption process were measured. This absorption process occurred at two temperatures—either 296.15 or 313.15 K—while the desorption process temperature was raised to 348.15 K. The solid amines (TEPAN and E-100AN) demonstrated higher cyclic capacity than others under these conditions. Our testing showed high reproducibility for the CO2 capture of TEPAN and E-100AN in measuring their cyclic capacity. Diminished cyclic capacities were noted for the MEA and 194B materials, with measured drops at the third cycle of about 16.17% and 15.79% lower than those in the first cycle, respectively. En ligne : http://pubs.acs.org/doi/abs/10.1021/ie8006984 [article] Screening test of solid amine sorbents for CO2 capture [texte imprimé] / Seungmoon Lee, Auteur ; Thomas P. Filburn, Auteur ; Mac Gray, Auteur . - 2008 . - p. 7419–7423.
Chemical engineering
Langues : Anglais (eng)
in Industrial & engineering chemistry research > Vol. 47 N°19 (Octobre 2008) . - p. 7419–7423
Mots-clés : CO2--absorption Absorption/desorption rate Cyclic capacity Cycle decay effect Résumé : In this study, the absorption properties of CO2 in seven different solid amine absorbents were measured. The specific characteristics, such as absorption capacity, absorption/desorption rate, cyclic capacity, cycle decay effect, temperature of reaction in the absorber, and optimal conditions for the CO2 absorption process were measured. This absorption process occurred at two temperatures—either 296.15 or 313.15 K—while the desorption process temperature was raised to 348.15 K. The solid amines (TEPAN and E-100AN) demonstrated higher cyclic capacity than others under these conditions. Our testing showed high reproducibility for the CO2 capture of TEPAN and E-100AN in measuring their cyclic capacity. Diminished cyclic capacities were noted for the MEA and 194B materials, with measured drops at the third cycle of about 16.17% and 15.79% lower than those in the first cycle, respectively. En ligne : http://pubs.acs.org/doi/abs/10.1021/ie8006984 Simplified estimation of regeneration energy of 30 wt % sodium glycinate solution for carbon dioxide absorption / Ho-Jun Song ; Seungmoon Lee ; Kwinam Park in Industrial & engineering chemistry research, Vol. 47 n°24 (Décembre 2008)
[article]
in Industrial & engineering chemistry research > Vol. 47 n°24 (Décembre 2008) . - p. 9925–9930
Titre : Simplified estimation of regeneration energy of 30 wt % sodium glycinate solution for carbon dioxide absorption Type de document : texte imprimé Auteurs : Ho-Jun Song, Auteur ; Seungmoon Lee, Auteur ; Kwinam Park, Auteur Année de publication : 2009 Article en page(s) : p. 9925–9930 Note générale : Industrial chemistry Langues : Anglais (eng) Mots-clés : Sodium glycinate Carbon dioxide Résumé : A simple method for estimating the regeneration energy of CO2 absorption was devised. The regeneration energy of a 30 wt % sodium glycinate (SG) solution was calculated by the summation of the enthalpy of reaction, the sensible heat and the heat of vaporization. Each form of heat energy was determined experimentally. Solubilities of carbon dioxide in the SG solution was determined by gas chromatography (GC) analysis for the gas phase with the help of a virial equation for the liquid phase in the temperature range of 40−120 °C. Heat capacity of the solution was measured by a differential scanning calorimeter (DSC) and was used to calculate sensible heat. The heat of vaporization was evaluated by applying the Clausius−Clapeyron equation to 20 data points of vapor pressure. All of the experiments were carried out with either a 30 wt % aqueous solution of SG or the same concentration of monoethanolamine (MEA). Regeneration energy of the SG solution was found to be higher than that of the MEA solution by about 1000 kJ/kg of CO2. From the CO2 solubility data it was observed that SG had a higher capacity to absorb carbon dioxide than MEA even at the regeneration temperature (120 °C). In addition, the 30 wt % basis SG demonstrated a reduction in cyclic capacity at this regeneration temperature. So, our main effort is to establish a reasonable method for estimating CO2 absorbent regeneration energy along with the regeneration energy of 30 wt % aqueous solutions of SG. En ligne : http://pubs.acs.org/doi/abs/10.1021/ie8007117 [article] Simplified estimation of regeneration energy of 30 wt % sodium glycinate solution for carbon dioxide absorption [texte imprimé] / Ho-Jun Song, Auteur ; Seungmoon Lee, Auteur ; Kwinam Park, Auteur . - 2009 . - p. 9925–9930.
Industrial chemistry
Langues : Anglais (eng)
in Industrial & engineering chemistry research > Vol. 47 n°24 (Décembre 2008) . - p. 9925–9930
Mots-clés : Sodium glycinate Carbon dioxide Résumé : A simple method for estimating the regeneration energy of CO2 absorption was devised. The regeneration energy of a 30 wt % sodium glycinate (SG) solution was calculated by the summation of the enthalpy of reaction, the sensible heat and the heat of vaporization. Each form of heat energy was determined experimentally. Solubilities of carbon dioxide in the SG solution was determined by gas chromatography (GC) analysis for the gas phase with the help of a virial equation for the liquid phase in the temperature range of 40−120 °C. Heat capacity of the solution was measured by a differential scanning calorimeter (DSC) and was used to calculate sensible heat. The heat of vaporization was evaluated by applying the Clausius−Clapeyron equation to 20 data points of vapor pressure. All of the experiments were carried out with either a 30 wt % aqueous solution of SG or the same concentration of monoethanolamine (MEA). Regeneration energy of the SG solution was found to be higher than that of the MEA solution by about 1000 kJ/kg of CO2. From the CO2 solubility data it was observed that SG had a higher capacity to absorb carbon dioxide than MEA even at the regeneration temperature (120 °C). In addition, the 30 wt % basis SG demonstrated a reduction in cyclic capacity at this regeneration temperature. So, our main effort is to establish a reasonable method for estimating CO2 absorbent regeneration energy along with the regeneration energy of 30 wt % aqueous solutions of SG. En ligne : http://pubs.acs.org/doi/abs/10.1021/ie8007117