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Featured researches published by Burger Aj.


Separation Science and Technology | 2009

Xylene Vapor Mixture Separation in Nanocomposite MFI-Alumina Tubular Membranes: Influence of Operating Variables

Michael O. Daramola; Burger Aj; Marc Pera-Titus; Anne Giroir-Fendler; L. Lorenzen; J.-A. Dalmon

In this study, we present the results of a preliminary investigation on the influence of operating variables (temperature, sweep gas flow rate, and total feed vapor pressure) on xylene vapor mixture separation using tubular nanocomposite MFI-alumina zeolite membrane prepared by the pore-plugging synthesis technique. Within the detection limit of our analytical system, neither m- nor o-xylene was detected in the permeate stream, the membranes displaying therefore “infinite” p-xylene selectivity. The mixtures p-xylene flux displayed a maximum value of ca. 3.5 µmol·m−2·s−1, corresponding to a mixture permeance of 11 nmol·m−2·s−1·Pa−1, at 473 K and for a feed composition 0.63 kPa p-xylene/0.27 kPa m-xylene/0.32 kPa o-xylene, being almost unchanged for sweep gas flow rates (N2) higher than 20 mL(STP)/min and increasing with the total xylene vapor pressure at 1 : 1 : 1–3 p/m/o-xylene composition. The experimental p-xylene fluxes can be well predicted by a Maxwell-Stefan model, as expected for a mass transfer process driven by competitive adsorption / surface diffusion. Unlike film-like MFI membranes, the membranes presented here preserved their selectivity to p-xylene for total xylene pressures as high as 150 kPa. This behavior is attributed to the intimate contact between the alumina confining pores and MFI nanoparticles, reducing long-term stresses and thus preventing distortion of the MFI framework during p-xylene adsorption. These results open up potential applications of nanocomposite MFI-alumina for selective p-xylene separations at high loadings, for instance in pervaporation, where the use of film-like MFI membranes is discouraged.


Journal of Membrane Science | 2009

Nanocomposite MFI–ceramic hollow fibre membranes via pore-plugging synthesis: Prospects for xylene isomer separation

Michael O. Daramola; Burger Aj; Marc Pera-Titus; Anne Giroir-Fendler; Miachon S; L. Lorenzen; J.-A. Dalmon


Asia-Pacific Journal of Chemical Engineering | 2010

Separation and isomerization of xylenes using zeolite membranes: a short overview

Michael O. Daramola; Burger Aj; M. Pera-Titus; A. Giroir-Fendler; Sylvain Miachon; J.-A. Dalmon; L. Lorenzen


Journal of Membrane Science | 2010

Nanocomposite MFI-alumina hollow fibre membranes prepared via pore-plugging synthesis: Influence of the porous structure of hollow fibres on the gas/vapour separation performance

Zhiyong Deng; C.-H. Nicolas; Michael O. Daramola; J. Sublet; Th. Schiestel; Burger Aj; Yanglong Guo; A. Giroir-Fendler; Marc Pera-Titus


Catalysis Today | 2010

Nanocomposite MFI–alumina membranes prepared via pore-pugging synthesis: Application as packed-bed membrane reactors for m-xylene isomerization over a Pt-HZSM-5 catalyst

Michael O. Daramola; Zhiyong Deng; Marc Pera-Titus; A. Giroir-Fendler; Sylvain Miachon; Burger Aj; L. Lorenzen; Yanglong Guo


Applied Catalysis A-general | 2010

Extractor-type catalytic membrane reactor with nanocomposite MFI-alumina membrane tube as separation unit: Prospect for ultra-pure para-Xylene production from m-Xylene isomerization over Pt-HZSM-5 catalyst

Michael O. Daramola; Burger Aj; Anne Giroir-Fendler; Sylvain Miachon; L. Lorenzen


Chemical Engineering Journal | 2011

Modelling and sensitivity analysis of a nanocomposite MFI-alumina based extractor-type zeolite catalytic membrane reactor for m-Xylene isomerization over Pt-HZSM-5 catalyst

Michael O. Daramola; Burger Aj; A. Giroir-Fendler


Archive | 2009

Nanocomposite MFI-Alumina membranes: Influence of operating parameters on Xylene Vapour Mixture Separation.

Michael O. Daramola; Burger Aj; Anne Giroir-Fendler; Miachon S


Archive | 2013

Nanocomposite MFI-Type Zeolite Catalytic Membrane Reactors for Isomerization of m-Xylene to p-Xylene

Michael O. Daramola; Burger Aj; Anne Giroir-Fendler


Archive | 2013

Nanocomposite MFI-Type Zeolite membrane for Separating Xylene Isomers

Michael O. Daramola; Zhiyong Deng; Burger Aj; Anne Giroir-Fendler

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Michael O. Daramola

University of the Witwatersrand

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L. Lorenzen

Stellenbosch University

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Zhiyong Deng

Chinese Academy of Sciences

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Yanglong Guo

East China University of Science and Technology

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