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Separation of mono- and dibranched hydrocarbons on silicalite

โœ Scribed by E. Jolimaitre; K. Ragil; M. Tayakout-Fayolle; C. Jallut


Book ID
101432258
Publisher
American Institute of Chemical Engineers
Year
2002
Tongue
English
Weight
316 KB
Volume
48
Category
Article
ISSN
0001-1541

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โœฆ Synopsis


Abstract

Breakthrough curves for mixtures of C5 and C6 hydrocarbons with different degrees of branching were obtained experimentally on a silicalite molecular sieve by fixedโ€bed experiments. The kinetic separation of diโ€ from monobranched hydrocarbons was feasible on this type of zeolite: dimethyl molecules enter silicalite crystals very slowly, whereas monomethyl molecules are quickly adsorbed. Experimental results were compared to a theoretical isothermal model, considering the variation of diffusivity with concentration according to the Maxwellโ€“Stefan theory. The parameters of the model (adsorption equilibria and diffusivities) were determined from singleโ€component breakthrough curves. Experimental curves were generally well represented by the model, but the variation of diffusivity with concentration, as predicted by the Maxwellโ€“Stefan theory, did not significantly improve the model prediction of experimental breakthrough curves by using a mean value of diffusivity.


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