Indexed by:期刊论文
Date of Publication:2016-12-01
Journal:ACS SUSTAINABLE CHEMISTRY & ENGINEERING
Included Journals:SCIE、EI、Scopus
Volume:4
Issue:12
Page Number:6828-6837
ISSN No.:2168-0485
Key Words:Superhydrophilic; Underwater superoleophobic; Atmospheric pressure plasma; Surface modification; Oil/water separation; Nylon mesh
Abstract:Oil/water separation has been addressed by various materials characterized with superwettability, but most of the methods involve corrosive or toxic chemicals which will cause environmental concerns. Proposed herein is an environmentally friendly method to realize oil/water separation. Nylon mesh is exposed to atmospheric pressure plasma for surface modification, by which micro-/nanostructures and oxygen -containing groups are created on nylon fibers. Consequently, the functionalized mesh possesses superhydrophilicity in air and thus superoleophobicity underwater. The water prewetted mesh is then used to separate oil/water mixtures with the separation efficiency above 97.5% for various oil/water mixtures. Results also demonstrate that the functionalized nylon mesh has excellent recyclability and durability in terms of oil/water separation. Additionally, polyurethane sponge slice and polyester fabric are also functionalized and employed to separate oil/water mixtures efficiently, demonstrating the wide suitability of this method. This simple, green, and highly efficient method overcomes a nontrivial hurdle for environmentally safe separation of oil/water mixtures and offers insights into the design of advanced materials for practical oil/water separation.
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Main positions:创新创业学院院长
Gender:Male
Date of Birth:1981-12-01
Alma Mater:大连理工大学
Degree:Doctoral Degree
School/Department:创新创业学院
Discipline:Mechanical Manufacture and Automation. Materials Surface Engineering. Plasma physics. Biomedical Engineering
Business Address:机械新大楼
Contact Information:0411-84706959
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