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Adsorption of propane,propylene and isobutane on a metal–organic framework : molecular simulation and experiment

Title
Adsorption of propane,propylene and isobutane on a metal–organic framework : molecular simulation and experiment
Type
Article in International Scientific Journal
Year
2009
Authors
Nabil Lamia
(Author)
FEUP
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Miguel Jorge
(Author)
FEUP
Miguel A. Granato
(Author)
FEUP
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Filipe A. Almeida Paz
(Author)
Other
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Hubert Chevreau
(Author)
FEUP
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Alírio E. Rodrigues
(Author)
FEUP
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Journal
Vol. 64 No. 14
Pages: 3246-3259
ISSN: 0009-2509
Publisher: Elsevier
Indexing
Publicação em ISI Web of Science ISI Web of Science
Publicação em Scopus Scopus
INSPEC
Scientific classification
FOS: Engineering and technology > Chemical engineering
CORDIS: Technological sciences > Engineering > Chemical engineering
Other information
Abstract (EN): The separation of propane/propylene mixtures is the most energy-intensive operation practiced in the petrochemical industry. Adsorptive processes are currently viewed as a promising alternative to cryogenic distillation for the separation of these mixtures. In this paper, we explore the possibility of using a new metal¿organic framework material, CuBTC, in adsorptive separation processes, particularly in a simulated moving bed (SMB) context using isobutane as a potential desorbent. A gravimetric method has been used to measure the adsorption equilibrium isotherms of propylene, propane and isobutane onto a commercial CuBTC powder over a temperature range from 323 to 423 K and pressures up to 100 kPa. These were complemented by a detailed experimental characterization of the structure of CuBTC using XRD and SEM techniques. Comparison of experimental isotherms with grand canonical Monte Carlo simulations in CuBTC showed that propane adsorption occurs preferentially in small octahedral pockets, while isobutane is excluded from these pockets due to its bulky structure. Propylene was seen to interact strongly with unsaturated metal sites, due to specific -Cu bonds. These interactions significantly enhance the affinity of this MOF for unsaturated hydrocarbons. Furthermore, in a range of temperatures and pressures, the affinity of CuBTC for isobutane is intermediate to that of propane and propylene. Our results suggest that CuBTC¿isobutane is a very promising adsorbent¿desorbent pair for use in SMB processes for propane/propylene separations.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 14
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