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A novel PES-TiO2 hollow fiber hybrid membrane prepared via sol-gel process assisted reverse thermally induced phase separation (RTIPS) method.

Authors :
Liu, Sheng-Hui
Liu, Min
Xu, Zhen-Liang
Wei, Yong-Ming
Guo, Xin
Source :
Journal of Membrane Science. Apr2017, Vol. 528, p303-315. 13p.
Publication Year :
2017

Abstract

A new attempt to prepare polyethersulfone (PES)-Titania (TiO 2 ) organic-inorganic hollow fiber hybrid membranes were investigated by sol-gel process assisted reverse thermally induced phase separation (RTIPS) method. The membrane formation mechanism underwent NIPS (coagulation temperature lower than cloud point) or RTIPS (coagulation temperature higher than cloud point) process. Properties of hollow fiber hybrid membranes, which varied with TiO 2 sol addition and coagulation temperature, were investigated by SEM, EDX, AFM, TGA, XPS and contact angle. SEM results showed that the dense skin layer was produced in the hybrid membranes via NIPS process, while porous skin layer and sponge-like structures emerged in the hybrid membranes via RTIPS process. As a result, pure water flux, BSA rejection, mechanical properties of hybrid membranes by RTIPS were higher than that via NIPS. EDX mapping spectra proved that the dispersion uniformity of TiO 2 particles through sol-gel process on the top surface of 1 wt% TiO 2 embedded PES membrane, which prepared in 60 °C coagulation bath. XPS data revealed the element distribution in the hybrid membranes. AFM and TGA revealed increased surface roughness and thermal stability of the hybrid membranes by the addition of TiO 2 sol, respectively. The organic-inorganic hybrid membranes prepared with 1 wt% TiO 2 sol content by RTIPS method exhibited decent performance, which reached maximum pure water flux of 1046 L/(m 2 h) and BSA rejection of 75%. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03767388
Volume :
528
Database :
Academic Search Index
Journal :
Journal of Membrane Science
Publication Type :
Academic Journal
Accession number :
121242367
Full Text :
https://doi.org/10.1016/j.memsci.2017.01.028