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Spray- and spin-assisted layer-by-layer assembly of copper nanoparticles on thin-film composite reverse osmosis membrane for biofouling mitigation.

Authors :
Ma, Wen
Soroush, Adel
Van Anh Luong, Tran
Brennan, Gregory
Rahaman, Md. Saifur
Asadishad, Bahareh
Tufenkji, Nathalie
Source :
Water Research. Aug2016, Vol. 99, p188-199. 12p.
Publication Year :
2016

Abstract

Copper nanoparticles (CuNPs) have long been considered as highly effective biocides; however, the lack of suitable methods for loading CuNPs onto polymeric membranes is recognized as being one of the primary reasons for the limited research concerning their application in membrane industries. A highly efficient spray- and spin-assisted layer-by-layer (SSLbL) method was developed to functionalize the TFC polyamide RO membranes with controllable loading of CuNPs for biofouling control. The SSLbL method was able to produce a uniform bilayer of polyethyleneimine-coated CuNPs and poly(acrylic) acid in less than 1 min, which is far more efficient than the traditional dipping approach (25–60 min). The successful loading of CuNPs onto the membrane surface was confirmed by XPS analysis. Increasing the number of bilayers from 2 to 10 led to an increased quantity of CuNPs on the membrane surface, from 1.75 to 23.7 μg cm −2 . Multi-layer coating exhibited minor impact on the membrane water permeation flux (13.3% reduction) while retaining the original salt rejection ability. Both static bacterial inactivation and cross-flow filtration tests demonstrated that CuNPs could significantly improve anti-biofouling property of a polyamide membrane and effectively inhibit the permeate flux reduction caused by bacterial deposition on the membrane surface. Once depleted, CuNPs can also be potentially regenerated on the membrane surface via the same SSLbL method. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00431354
Volume :
99
Database :
Academic Search Index
Journal :
Water Research
Publication Type :
Academic Journal
Accession number :
116001282
Full Text :
https://doi.org/10.1016/j.watres.2016.04.042