| Literature DB >> 26022283 |
Hyeon-Gyu Choi1, Moon Son1, SangHyeon Yoon1, Evrim Celik2, Seoktae Kang3, Hosik Park4, Chul Hwi Park5, Heechul Choi6.
Abstract
Functionalized multi-walled carbon nanotube blended cellulose acetate (fCNT-CA) membranes were synthesized for forward osmosis (FO) through phase inversion. The membranes were characterized through SEM, FTIR, and water contact angle measurement. AFM was utilized to investigate alginate fouling mechanism on the membrane. It reveals that the fCNT contributes to advance alginate fouling resistance in FO (57% less normalized water flux decline for 1% fCNT-CA membrane was observed than that for bare CA membrane), due to enhanced electrostatic repulsion between the membrane and the alginate foulant. Furthermore, it was found that the fCNT-CA membranes became more hydrophilic due to carboxylic groups in functionalized carbon nanotube, resulting in approximately 50% higher water-permeated flux than bare CA membrane. This study presents not only the fabrication of fCNT-CA membrane and its application to FO, but also the quantification of the beneficial role of fCNT with respect to alginate fouling in FO.Entities:
Keywords: Alginate fouling; Carbon nanotube; Electrostatic repulsion; Forward osmosis; Nano-enhanced membrane
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Year: 2015 PMID: 26022283 DOI: 10.1016/j.chemosphere.2015.05.003
Source DB: PubMed Journal: Chemosphere ISSN: 0045-6535 Impact factor: 7.086