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Title Janus Distillation Membrane via Mussel-Inspired Inkjet Printing Modification for Anti-Oil Fouling Membrane Distillation
ID_Doc 11021
Authors Afsari, M; Park, MJ; Kaleekkal, NJ; Motsa, MM; Shon, HK; Tijing, L
Title Janus Distillation Membrane via Mussel-Inspired Inkjet Printing Modification for Anti-Oil Fouling Membrane Distillation
Year 2023
Published Membranes, 13, 2
DOI 10.3390/membranes13020191
Abstract In this work, inkjet printing technology was used to print a thin layer of a hydrophilic solution containing polydopamine as a binder and polyethyleneimine as a strong hydrophilic agent on a commercial hydrophobic membrane to produce a Janus membrane for membrane distillation. The pristine and modified membranes were tested in a direct-contact membrane distillation system with mineral oil-containing feedwater. The results revealed that an integrated and homogenous hydrophilic layer was printed on the membrane with small intrusions in the pores. The membrane, which contained three layers of inkjet-printed hydrophilic layers, showed a high underwater oil contact angle and a low in-air water contact angle. One-layer inkjet printing was not robust enough, but the triple-layer coated modified membrane maintained its anti-oil fouling performance even for a feed solution containing 70 g/L NaCl and 0.01 v/v% mineral oil concentration with a flux of around 20 L/m(2)h. This study implies the high potential of the inkjet printing technique as a facile surface modification strategy to improve membrane performance.
Author Keywords Inkjet printing; Janus membrane; asymmetric wettability; membrane distillation; oil fouling; surface modification; desalination
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:000940501200001
WoS Category Biochemistry & Molecular Biology; Chemistry, Physical; Engineering, Chemical; Materials Science, Multidisciplinary; Polymer Science
Research Area Biochemistry & Molecular Biology; Chemistry; Engineering; Materials Science; Polymer Science
PDF https://www.mdpi.com/2077-0375/13/2/191/pdf?version=1675431040
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