Frontiers of Chemical Science and Engineering >
Preparation and characterization of alumina hollow fiber membranes
Received date: 10 Nov 2008
Accepted date: 18 Feb 2009
Published date: 05 Sep 2009
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With the rapid development of membrane technology in water treatment, there is a growing demand for membrane products with high performance. The inorganic hollow fiber membranes are of great interest due to their high resistance to abrasion, chemical/thermal degradation, and higher surface area/volume ratio therefore they can be utilized in the fields of water treatment. In this study, the alumina (Al2O3) hollow fiber membranes were prepared by a combined phase-inversion and sintering method. The organic binder solution (dope) containing suspended Al2O3 powders was spun to a hollow fiber precursor, which was then sintered at elevated temperatures in order to obtain the Al2O3 hollow fiber membrane. The dope solution consisted of polyethersulfone (PES), N-methyl-2-pyrrolidone (NMP) and polyvinylpyrrolidone (PVP), which were used as polymer binder, solvent and additive, respectively. The prepared Al2O3 hollow fiber membranes were characterized by a scanning electron microscope (SEM) and thermal gravimetric analysis (TG). The effects of the sintering temperature and Al2O3/PES ratios on the morphological structure, pure water flux, pore size and porosity of the membranes were also investigated extensively. The results showed that the pure water flux, maximum pore size and porosity of the prepared membranes decreased with the increase in Al2O3/PES ratios and sintering temperature. When the Al2O3/PES ratio reached 9, the pure water flux and maximum pore size were at 2547 L/m2·h and 1.4 μm, respectively. Under 1600°C of sintering temperature, the pure water flux and maximum pore size reached 2398 L/(m2·h) and 2.3 μm, respectively. The results showed that the alumina hollow fiber membranes we prepared were suitable for the microfiltration process. The morphology investigation also revealed that the prepared Al2O3 hollow fiber membrane retained its’asymmetric structure even after the sintering process.
Key words: Al2O3; ceramic membranes; hollow fiber
Tao WANG , Yuzhong ZHANG , Guangfen LI , Hong LI . Preparation and characterization of alumina hollow fiber membranes[J]. Frontiers of Chemical Science and Engineering, 2009 , 3(3) : 265 -271 . DOI: 10.1007/s11705-009-0010-2
1 |
Qiu W L, Zhou F B, Kosuri M. Dehydration of ethanol-water mixtures using asymmetric hollow fiber membranes from commercial polyimides. J Membr Sci, 2009, 327: 96-103
|
2 |
Arunima S, Bijay P, Mahendra K, Vinod K. Membrane-based techniques for the separation and purification of proteins: an overview. Adv Colloid Interface Sci, 2009, 145: 1-22
|
3 |
Lu S, Chung T S, Alan R. Polymeric membranes for the hydrogen economy: contemporary approaches and prospects for the future. J Membr Sci, 2009, 327: 18-31
|
4 |
Terpstra R A, Feenstra F K. US Patent 5707584, 1998
|
5 |
Hammel J J. US Patent 48530011989
|
6 |
Gestel T V, Carlo V, Anita B, Chris D, Jan L. Corrosion properties of alumina and titania NF membranes. J Membr Sci, 2003, 214: 21-29
|
7 |
Moresi M, Sebastiani I. Pectin recovery from model solutions using a laboratory-scale ceramic tubular UF membrane module. J Membr Sci, 2008, 322: 349-359
|
8 |
Way J D, Roberts D L. Hollow fiber inorganic membrane for gas separations. Sep Sci Technol, 1992, 27: 29
|
9 |
Maria M. C, Jerome R, Andrew R. B, Mark R W. Characteristics of ultrafiltration ceramic membranes derived from alumoxane nanoparticles. J Membr Sci, 2002, 205: 33-43
|
10 |
Liu H, Tan X Y, Pang Z B, Liu S M. Novel dual structured mixed conducting ceramic hollow fibre membranes. Sep Purif Technol, 2008, 63: 243-247
|
11 |
Aust U, Benfer S, Dietze M, Tomandl G. Development of microporous ceramic membranes in the system TiO2/ZrO2. J Membr Sci, 2006, 281: 463-471
|
12 |
Colle R. D, Fontes S R. Demulsification of water/sunflower oil emulsions by a tangential filtration process using chemically impregnated ceramic tubes. J Membr Sci, 2007, 289: 58-66
|
13 |
Tan X Y, Qiao S Z, Liu S M. Porous and dense Ni hollow fibre membranes. J Alloys Compd, 2009, 470: 461-464
|
14 |
Liu S M, Li K, Hughesc R. Preparation of porous aluminium oxide (Al2O3) hollow fibre membranes by a combined phase-inversion and sintering method. Ceram Int, 2003, 29: 875-881
|
15 |
Tan X Y, Liu S M, Li K. Preparation and characterization of inorganic hollow fiber membranes. J Membr Sci, 2001, 188: 87-95
|
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