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AuthorBen Torkia, Yosra
AuthorBouaziz, Nadia
AuthorAl-Muhtaseb, Shaheen A.
AuthorBen Lamine, Abdelmottaleb
Available date2022-11-28T08:18:27Z
Publication Date2014
Publication NameAdsorption Science and Technology
ResourceScopus
Resource2-s2.0-84928348888
URIhttp://dx.doi.org/10.1260/0263-6174.32.7.571
URIhttp://hdl.handle.net/10576/36737
AbstractAn integral equation derived using a statistical physics treatment by considering the adsorption energy distribution (AED) was used to model the adsorption of ethylene and ethane on resorcinol-formaldehyde-based activated carbon xerogels. Hill's model was taken as a local adsorption isotherm. This model was based on a grand canonical ensemble. Then a relationship between the energetic and the structural heterogeneities is used to determine the pore-size distribution (PSD) function. The AED and PSD obtained illustrate the greater affinity of activated carbon for adsorption of ethylene compared to ethane. In addition, this method was applied to determine the PSD of the British Drug House (BDH) activated carbon. The behaviour of the obtained PSDs at different temperatures was examined and related to the adsorption capacity of BDH activated carbon towards ethane, methane and nitrogen.
Languageen
PublisherMulti-Science Publishing Co. Ltd
SubjectActivated carbon
Adsorption
Ethane
Ethylene
Integral equations
Size distribution
Statistical Physics
Adsorption capacities
Adsorption energies
Adsorption energy distribution
Grand canonical ensemble
Hill's model
Resorcinol formaldehydes
Structural heterogeneity
Pore size
TitleAdsorption energy and pore-size distributions of activated carbons calculated using Hill's model
TypeArticle
Pagination571-590
Issue Number7
Volume Number32


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