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Auteur X. D. Peng |
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Analysis of the thermal efficiency limit of the steam methane reforming process / X. D. Peng in Industrial & engineering chemistry research, Vol. 51 N° 50 (Décembre 2012)
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Titre : Analysis of the thermal efficiency limit of the steam methane reforming process Type de document : texte imprimé Auteurs : X. D. Peng, Auteur Année de publication : 2013 Article en page(s) : pp. 16385–16392 Note générale : Industrial chemistry Langues : Anglais (eng) Mots-clés : Reforming process Résumé : The thermal efficiency limit of the steam methane reforming (SMR) process is analyzed on the basis of energy balance and pinch analysis. The composite heat exchange curves of the SMR process are characterized by internal pinches. These internal pinches determine the process efficiency limit. An analytical solution for the process efficiency limit is derived from energy balance across the composite heat exchange curves. The solution can be used to calculate the process efficiency limit for any given set of reaction and process conditions. ISSN : 0888-5885 En ligne : http://pubs.acs.org/doi/abs/10.1021/ie3002843
in Industrial & engineering chemistry research > Vol. 51 N° 50 (Décembre 2012) . - pp. 16385–16392[article] Analysis of the thermal efficiency limit of the steam methane reforming process [texte imprimé] / X. D. Peng, Auteur . - 2013 . - pp. 16385–16392.
Industrial chemistry
Langues : Anglais (eng)
in Industrial & engineering chemistry research > Vol. 51 N° 50 (Décembre 2012) . - pp. 16385–16392
Mots-clés : Reforming process Résumé : The thermal efficiency limit of the steam methane reforming (SMR) process is analyzed on the basis of energy balance and pinch analysis. The composite heat exchange curves of the SMR process are characterized by internal pinches. These internal pinches determine the process efficiency limit. An analytical solution for the process efficiency limit is derived from energy balance across the composite heat exchange curves. The solution can be used to calculate the process efficiency limit for any given set of reaction and process conditions. ISSN : 0888-5885 En ligne : http://pubs.acs.org/doi/abs/10.1021/ie3002843 Exemplaires
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