References
- S. Wang, X.W. Peng, L.X. Zhong, J.W. Tan, S.S. Jing, X.F. Cao,
W. Chen, C.F. Liu, R.C. Sun, An ultralight, elastic, cost-effective,
and highly recyclable superabsorbent from microfibrillated
cellulose fibers for oil spillage cleanup, J. Mater. Chem. A,
3 (2015) 8772–8781.
- L.J. Qiu, R.Y. Zhang, C.J. Li, Q. Zhang, Y. Zhou, Superhydrophobic,
mechanically flexible and recyclable reduced
graphene oxide wrapped sponge for highly efficient oil/water
separation, Front. Chem. Sci. Eng., 12 (2018) 390–399.
- J. Li, C.C. Xu, C.Q. Guo, H.F. Tian, F. Zha, L. Guo, Underoil
superhydrophilic desert sand layer for efficient gravitydirected
water-in-oil emulsions separation with high flux,
J. Mater. Chem. A, 6 (2018) 223–230.
- P.F. Kingston, Long-term environmental impact of oil spills,
Spill Sci. Technol. Bull., 7 (2002) 53–61.
- J. Li, L. Yan, X.H. Tang, H. Feng, D.C. Hu, F. Zha, Robust
superhydrophobic fabric bag filled with polyurethane sponges
used for vacuum-assisted continuous and ultrafast absorption
and collection of oils from water, Adv. Mater. Interfaces, 2 (2016)
1500770.
- J.C Gu, P. Xiao, J. Chen, F. Liu, Y.J. Huang, G.Y. Li, J.W. Zhang,
T. Chen, Robust preparation of superhydrophobic polymer/
carbon nanotube hybrid membranes for highly effective
removal of oils and separation of water-in-oil emulsions,
J. Mater. Chem. A, 2 (2014) 15268.
- J.L. Song, S. Huang, Y. Lu, X.W. Bu, J.E. Mates, A. Ghosh,
R. Ganguly, C.J. Carmalt, I.P. Parkin, W.J. Xu, C.M. Megaridis,
Self-driven one-step oil removal from oil spill on water via
selective-wettability steel mesh, ACS Appl. Mater. Interfaces,
6 (2014) 19858–19865.
- A.M. Atta, H.A. Al-Lohedan, M.M.S. Abdullah, S.M. ElSaeed,
Application of new amphiphilic ionic liquid based on
ethoxylated octadecylammonium tosylate as demulsifier
and petroleum crude oil spill dispersant, J. Ind. Eng. Chem.,
33 (2016) 122–130.
- P.H. Pritchard, J.G. Mueller, J.C. Rogers, F.V. Kremer, J.A. Glaser,
Oil spill bioremediation: experiences, lessons and results from
the Exxon Valdez oil spill in Alaska, Biodegradation, 3 (1992)
315–335.
- E. Nyankson, D. Rodene, R.B. Gupta, Advancements in crude
oil spill remediation research after the deepwater horizon oil
spill, Water Air Soil Pollut., 227 (2016) 29.
- X. Zhang, F. Shi, J. Niu, Y. Jiang, Z.Q. Wang, Superhydrophobic
surfaces: from structural control to functional application,
J. Mater. Chem., 18 (2008) 621–633.
- E.S. Zhang, Z.J. Cheng, T. Lv, Y.H. Qian, Y.Y. Liu, Anticorrosive
hierarchical structured copper mesh film with
superhydrophilicity and underwater low adhesive superoleophobicity
for highly efficient oil–water separation, J. Mater.
Chem. A, 3 (2015) 13411–13417.
- J. Li, L. Yan, H.Y. Li, J.P. Li, F. Zha, Z.Q. Lei, A facile one-step
spray-coating process for the fabrication of a superhydrophobic
attapulgite coated mesh for use in oil/water separation, RSC
Adv., 5 (2015) 53802–53808.
- X.H. Li, G.M. Chen, Y.M. Ma, L. Feng, H.Z. Zhao, L. Jiang,
F.S. Wang, Preparation of a super-hydrophobic poly(vinyl
chloride) surface via solvent–nonsolvent coating, Polymer,
47 (2006) 506–509.
- J. Ge, H.-Y. Zhao, H.-W. Zhu, J. Huang, L.-A. Shi, S.-H. Yu,
Advanced sorbents for oil‐spill cleanup: recent advances and
future perspectives, Adv. Mater, 28 (2016) 10459–10490.
- N.N. Liang, Z.Y. Xin, L. Xia, The research progress in preparation
technology of polymer super-hydrophobic material, Chin.
Polymer Bull., 9 (2014) 25–30.
- Y. Feng, Y. Wang, Y. Wang, J.F. Yao, Furfuryl alcohol modified
melamine sponge for highly efficient oil spill clean-up and
recovery, J. Mater. Chem. A, 5 (2017) 21893–21897.
- X.Y. Wang, M.J. Li, Y.Q. Shen, Y.X. Yang, H. Feng, J. Li, Facile
preparation of loess-coated membranes for multifunctional
surfactant-stabilized oil-in-water emulsion separation, Green
Chem., 21 (2019) 3190–3199.
- H.X. Wang, Y.H. Xue, J. Ding, L.F. Feng, X.G. Wang, T. Lin,
Durable, self‐healing superhydrophobic and superoleophobic
surfaces from fluorinated‐decyl polyhedral oligomeric silsesquioxane
and hydrolyzed fluorinated alkyl silane, Angew.
Chem. Int. Ed., 50 (2011) 11433–11436.
- R. Fürstner, W. Barthlott, C. Neinhuis, P. Walzel, Wetting and
self-cleaning properties of artificial superhydrophobic surfaces,
Langmuir, 21 (2005) 956–61.
- N. Yang, J.C. Li, N.N. Bai, L. Xu, Q. Li, One step phase separation
process to fabricate superhydrophobic PVC films and its
corrosion prevention for AZ91D magnesium alloy, Mater. Sci.
Eng., B, 209 (2016) 1–9.
- S. Joneydi, A. Khoddami, A. Zadhoush, Novel superhydrophobic
top coating on surface modified PVC-coated fabric, Prog. Org.
Coat., 76 (2013) 821–826.
- C.-H. Xue, Y.-R. Li, J.-L. Hou, L. Zhang, J.-Z. Ma, S.-T. Jia, Selfroughened
superhydrophobic coatings for continuous oil–
water separation, J. Mater. Chem. A, 3 (2015) 10248–10253.
- G.S. Chen, M.H. Tian, S.Y. Guo, A study on the morphology
and mechanical properties of PVC/nano-SiO2 composites,
J. Macromol. Sci. Part B Phys., 45 (2006) 709–725.
- M.L. Ma, R.M. Hill, Superhydrophobic surfaces, Curr. Opin.
Colloid Interface Sci., 11 (2006) 193–202.
- Y.W.H. Wong, C.W.M. Yuen, M.Y.S. Leung, S.K.A. Ku, H.L.I.
Lam, Selected applications of nanotechnology in textiles,
AUTEX Res. J., 6 (2006) 1–8.
- X.J. Liu, Q. Ye, X.W. Song, Y.W. Zhu, X.L. Cao, Y.M. Liang,
F. Zhou, Responsive wetting transition on superhydrophobic
surfaces with sparsely grafted polymer brushes, Soft Matter,
7 (2011) 515–523.
- T. Onda, S. Shibuichi, N. Satoh, K. Tsujii, Super-water-repellent
fractal surfaces, Langmuir, 12 (1996) 2125.
- J. Ge, Y.-D. Ye, H.-B. Yao, X. Zhu, X. Wang, L. Wu, J.-L. Wang,
H. Ding, N. Yong, L.-H. He, S.-H. Yu, Pumping through porous
hydrophobic/oleophilic materials: an alternative technology
for oil spill remediation, Angew. Chem. Int. Ed., 53 (2014)
3612–3616.
- W. Jing, K. Qinggang, Z. Long, Q. Haiyan, Preparation
and properties of fluorinated low surface energy modified
superamphiphobic coatings, Surf. Technol., 47 (2018) 76–82.
- V.H. Pham, J.H. Dickerson, Superhydrophobic silanized
melamine sponges as high efficiency oil absorbent materials,
ACS Appl. Mater. Interfaces, 6 (2014) 14181–14188.
- J.-J. Zhu, Q.-G. Zhai, X.-L. Li, J.-J. Zhu, X.-A. Yu, Preparation
and studies on the interaction at the organic-inorganic interface
of KH550 modified SiO2, Chem. Res. Appl., 26 (2014) 988–992.
- X.C. Gui, H.B. Li, K.L. Wang, J.Q. Wei, Y. Jia, Z. Li, L.L. Fan,
A.Y. Cao, H.W. Zhu, D.H. Wu, Recyclable carbon nanotube
sponges for oil absorption, Acta Mater., 59 (2011) 4798–4804.
- G. Wang, Z.X. Zeng, X.D. Wu, T.H. Ren, J. Han, Q.J. Xue, Threedimensional
structured sponge with high oil wettability for
the clean-up of oil contaminations and separation of oil–water
mixtures, Polym. Chem., 5 (2014) 5942–5948.
- H.Y. Wang, E.Q. Wang, Z.J. Liu, D. Gao, R.X. Yuan, L.Y. Sun,
Y.J. Zhu, A novel carbon nanotubes reinforced superhydrophobic
and superoleophilic polyurethane sponge for selective
oil-water separation through a chemical fabrication, J. Mater.
Chem. A, 3 (2015) 266–273.
- E.W. Washburn, The dynamics of capillary flow, Phys. Rev. J.
Arch., 17 (1921) 273–283.
- W.W. Lei, D. Portehault, D. Liu, S. Qin, Y. Chen, Porous boron
nitride nanosheets for effective water cleaning, Nat. Commun.,
4 (2013) 1777–1783.
- A.P. Periasamy, W.P. Wu, R. Ravindranath, P. Roy, G.L. Lin,
H.T. Chang, Polymer/reduced graphene oxide functionalized
sponges as superabsorbents for oil removal and recovery, Mar.
Pollut. Bull., 114 (2017) 888–895.