Sprayed superamphiphilic copper foams for long term recoverable oil-water separation
Superamphiphilic copper foams were prepared by one-step spraying a water-borne solution of hydroxyl-functionalized multi-wall carbon nanotubes and melamine formaldehyde. Water or oil droplets can spread on the coating rapidly and completely in air; meanwhile, oil droplets underwater can retain quasi...
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Veröffentlicht in: | Surface & coatings technology 2018-01, Vol.334, p.394-401 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Superamphiphilic copper foams were prepared by one-step spraying a water-borne solution of hydroxyl-functionalized multi-wall carbon nanotubes and melamine formaldehyde. Water or oil droplets can spread on the coating rapidly and completely in air; meanwhile, oil droplets underwater can retain quasi-spheres without any penetration all the time (superoleophobic underwater), and so the water droplets underoil can do (superhydrophobic underoil). The superamphiphilic copper foams which prewetted by water can effectively separate oil and water solely driven by gravity, showing high separation efficiency and water flux (>5000Lm−2h−1) for a series of oil-water mixtures. Furthermore, the as-prepared copper foams exhibited outstanding mechanical durability in the long-term mechanical wear process and excellent chemical stability under a series of harsh environment conditions, including strong acid and strong base. Meanwhile, The samples still retained the underwater superoleophobic property after 4 separation-water backwash cycles (>140 continuous separation repetitions) with the separation efficiency always remaining above 95%, which indicated the excellent recoverability and recyclability.
•Superamphiphilic MF/MWCNTs/CF was prepared by the one-step spraying method.•The superamphiphilic MF/MWCNTs/CF can effectively separate oil-water mixtures with high separation efficiency and water flux.•The MF/MWCNTs/CF exhibited outstanding mechanical durability and chemical stability.•The MF/MWCNTs/CF showed excellent recoverability. |
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ISSN: | 0257-8972 1879-3347 |
DOI: | 10.1016/j.surfcoat.2017.11.068 |