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Preparation and characterization of multilayer mesoporous γ-alumina membrane obtained via sol-gel using new precursors Cover

Preparation and characterization of multilayer mesoporous γ-alumina membrane obtained via sol-gel using new precursors

Open Access
|Jan 2016

Abstract

In this paper, a mesoporous γ-alumina membrane coated on a macroporous α-alumina support via sol-gel method has been reported. A crack-free γ-alumina membrane was obtained by adding PVA to the alumina solution and optimum parameters of roughness, temperature and porosity were achieved. The support was dip-coated in different solutions using two new different solvents with different particle size distributions. Using these two solvents led to the uniform distribution of pore size in the final membrane. The alumina sols showed particle size distributions in the range of 20 to 55 nm which was measured by a DLS Zeta Sizer. X-ray diffraction technique, atomic force microscopy and scanning electron microscopy were used to characterize the membrane layer. XRD and DTA data for the γ-alumina membrane showed its thermal stability up to around 600 °C. The thickness of the mesoporous γ-alumina membrane was about 4 μm with 16 nm of surface roughness and 5 nm pore size. The resultant crack-free mesoporous membrane shows that the membrane preparation procedure was optimum. In this work, it has been investigated the performance of γ-alumina membranes for single gas permeation and separation of binary gas mixtures.

DOI: https://doi.org/10.1515/msp-2015-0094 | Journal eISSN: 2083-134X | Journal ISSN: 2083-1331
Language: English
Page range: 792 - 798
Submitted on: Jan 14, 2015
Accepted on: Jun 14, 2015
Published on: Jan 6, 2016
Published by: Wroclaw University of Science and Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2016 R. Tafrishi, E. Taheri-Nassaj, A. Sadighzadeh, M. Jafari Eskandari, published by Wroclaw University of Science and Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.