• Journal of Inorganic Materials
  • Vol. 35, Issue 4, 475 (2020)
Ying ZHANG1、2, Qian ZHANG1、2, Ruiyang ZHANG2, Shuaizhuo LIU2, Leiyi Fan2, and Ying ZHOU1、2
Author Affiliations
  • 1State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu 610500, China
  • 2The Center of New Energy Materials and Technology, School of Materials Science and Engineering, Southwest Petroleum University, Chengdu 610500, China
  • show less
    DOI: 10.15541/jim20190181 Cite this Article
    Ying ZHANG, Qian ZHANG, Ruiyang ZHANG, Shuaizhuo LIU, Leiyi Fan, Ying ZHOU. Preparation of Superhydrophobic Composites Sponge and Its Application in Oil-water Separation[J]. Journal of Inorganic Materials, 2020, 35(4): 475 Copy Citation Text show less
    References

    [1] M LESCHINE T. Oil spills and the social amplification and attenuation of risk. Spill Science & Technology Bulletin, 7, 63-73(2002).

    [2] B JOYE S. Deepwater horizon, 5 years on. Science, 349, 592-593(2015).

    [3] P SWANNELL R, K LEE, M MCDONAGH. Field evaluations of marine oil spill bioremediation. Microbiological Reviews, 60, 342-365(1996).

    [4] M HEAD I, R P J SWANNELL. Bioremediation of petroleum hydrocarbon contaminants in marine habitats. Current Opinion in Biotechnology, 10, 234-239(1999).

    [5] I BUIST, T NEDWED. Using herders for rapid in situ burning of oil spills on open water. International Oil Spill Conference Proceedings, 2011, 231-234(2011).

    [6] I BUIST, S POTTER, T NEDWED et al. Herding surfactants to contract and thicken oil spills in pack ice for in situ burning. Cold Regions Science and Technology, 67, 3-23(2011).

    [7] V BROJE, A KELLER A. Improved mechanical oil spill recovery using an optimized geometry for the skimmer surface. Environmental Science & Technology, 40, 7914-7918(2006).

    [8] A BAYAT, F AGHAMIRI S, A MOHEB et al. Oil spill cleanup from sea water by sorbent materials. Chemical Engineering & Technology, 28, 1525-1528(2005).

    [9] Z GONG, K ALEF, M WILKE B et al. Activated carbon adsorption of PAHs from vegetable oil used in soil remediation. Journal of Hazardous Materials, 143, 372-378(2007).

    [10] LIN FENG, ZHONG-YI ZHANG, ZHEN-HONG MAI et al. A super-hydrophobic and super-oleophilic coating mesh film for the separation of oil and water. Angewandte Chemie International Edition, 116, 2046-2048(2004).

    [11] R WAHI, A CHUAH L, T S Y CHOONG et al. Oil removal from aqueous state by natural fibrous sorbent: an overview. Separation and Purification Technology, 113, 51-63(2013).

    [12] B IVSHINA I, S KUYUKINA M, V KRIVORUCHKO A et al. Oil spill problems and sustainable response strategies through new technologies. Environmental Science Processes & Impacts, 17, 1201-1219(2015).

    [13] A SHANNON M, W BOHN P, M ELIMELECH et al. Science and technology for water purification in the coming decades. Nature,, 452, 301-310(2008).

    [14] QIN LIU, KAI MENG, KUI DING et al. A superhydrophobic sponge with hierarchical structure as an efficient and recyclable oil absorbent. ChemPlusChem, 80, 1435-1439(2015).

    [15] CHUN-PING SU, HAO YANG, SHUANG SONG et al. A magnetic superhydrophilic/oleophobic sponge for continuous oil-water separation. Chemical Engineering Journal, 309, 366-373(2017).

    [16] XIN YANG, JIN-NAN WANG, CHENG CHENG. Preparation of new spongy adsorbent for removal of EDTA-Cu(II) and EDTA-Ni(II) from water. Chinese Chemical Letters, 24, 383-385(2013).

    [17] LI-JUAN QIU, RUI-YANG ZHANG, YING ZHANG et al. Superhydrophobic, mechanically flexible and recyclable reduced graphene oxide wrapped sponge for highly efficient oil/water separation. Frontiers of Chemical Science and Engineering, 12, 390-399(2018).

    [18] SHUI-LIANG CHEN, GUANG-HUA HE, HUAN HU et al. Elastic carbon foam via direct carbonization of polymer foam for flexible electrodes and organic chemical absorption. Energy & Environmental Science, 6, 2435-2439(2013).

    [19] JIN GE, LU-AN SHI, YONG-CHAO WANG et al. Joule-heated graphene-wrapped sponge enables fast clean-up of viscous crude- oil spill. Nature Nanotechnology, 12, 434-440(2017).

    [20] S PARTHA, D LOVE. Reduced graphene oxide modified melamine formaldehyde (rGO@MF) superhydrophobic sponge for efficient oil-water separation. Journal of Porous Materials, 25, 1475-1488(2018).

    [21] SHI-BING SUN, SI-KAI TANG, XUE-TING CHANG et al. A bifunctional melamine sponge decorated with silver-reduced graphene oxide nanocomposite for oil-water separation and antibacterial applications. Applied Surface Science, 473, 1049-1061(2019).

    [22] LI-JUAN QIU, YING ZHANG, SHUAI-ZHUO LIU et al. Preparation and application of superhydrophobic and high-strength graphene oil-water separation materials. Chemical Journal of Chinese Universities, 39, 2758-2766(2018).

    [23] WEN-CHAO WAN, RUI-YANG ZHANG, WEI LI et al. Graphene- carbon nanotube aerogel as an ultra-light, compressible and recyclable highly efficient absorbent for oil and dyes. Environmental Science: Nano, 3, 107-113(2016).

    [24] LI-JUAN QIU, WEN-CHAO WAN, ZHONG-QIU TONG et al. Controllable and green synthesis of robust graphene aerogels with tunable surface properties for oil and dye adsorption. New Journal of Chemistry, 42, 1003-1009(2018).

    [25] WEN-CHAO WAN, FEI ZHANG, SHAN YU et al. Hydrothermal formation of graphene aerogel for oil sorption: the role of reducing agent, reaction time and temperature. New Journal of Chemistry, 40, 3040-3046(2016).

    [26] DE-LI GONG, BING ZHANG, QUN-JI XUE et al. Investigation of adhesion wear of filled polytetrafluoroethylene by ESCA, AES and XRD. Wear, 137, 25-39(1990).

    [27] YAN-HONG ZHANG, JIN-PING SUO, JIAN-ZHONG XIAO. Study on improving the hardness of polytetrafluoroethylene composite by nano silica. Mechanical Engineering Materials, 30, 76-78(2006).

    [28] H PHAM V, H DICKERSON J. Superhydrophobic silanized melamine sponges as high efficiency oil absorbent materials. ACS Applied Materials & Interfaces, 6, 14181-14188(2014).

    [29] C DEVALLENCOURT, M SAITER J, A FAFET et al. Thermogravimetry/Fourier transform infrared coupling investigations to study the thermal stability of melamine formaldehyde resin. Thermochimica Acta, 259, 143-151(1995).

    [30] XUAN-XUAN LIANG, XIAO-PING ZHANG. Study on teflon pyrolysis. Chemical Industry and Engineering, 25, 314-318(2008).

    [31] HUI LI, HONG-YAN ZENG, ZHE XING et al. Preparation of high hydrophilic PTFE powder and its dispersion stability. Acta Polymerica Sinica, 1247-1253(2016).

    [32] J MERLINE D, S VUKUSIC, A ABDALA A. Melamine formaldehyde: curing studies and reaction mechanism. Polymer Journal, 45, 413-419(2012).

    [33] S BINIAK, G SZYMANSKI, J SIEDLEWSKI et al. The characterization of activated carbons with oxygen and nitrogen surface groups. Carbon, 35, 1799-1810(1997).

    [34] C KOTI REDDY, D SHAILAJA. Improving hydrophobicity of polyurethane by PTFE incorporation. Journal of Applied Polymer Science, 47, 132-136(2015).

    [35] FENG-YUAN YAN, QUN-JI XUE. The interaction of PTFE/ graphite blends was studied by infrared spectroscopy. Chinese Science Bulletin, 42, 282-285(1997).

    [36] ZHI-YONG DI, JIAN-PING HE, JIAN-HUA ZHOU et al. Preparation of superhydrophobic coating with lotus leaf structure and its properties by organic-inorganic self-assembly. Journal of Inorganic Materials, 25, 765-769(2010).

    [37] CHANG-PING RUAN, KE-LONG AI, XING-BO LI et al. A superhydrophobic sponge with excellent absorbency and flame retardancy. Angewandte Chemie International Edition, 126, 5662-5666(2014).

    [38] HUAN-JIANG WANG, HAI-YAN XU, WEI-HONG JIA et al. Functionalized carbon black nanoparticles used for separation of emulsified oil from oily wastewater. Journal of Dispersion Science and Technology, 39, 497-506(2018).

    [39] JIN-TAO WANG, HONG-FEI WANG, GUI-HONG GENG. Highly efficient oil-in-water emulsion and oil layer/water mixture separation based on durably superhydrophobic sponge prepared via a facile route. Marine Pollution Bulletin, 127, 108-116(2018).

    Ying ZHANG, Qian ZHANG, Ruiyang ZHANG, Shuaizhuo LIU, Leiyi Fan, Ying ZHOU. Preparation of Superhydrophobic Composites Sponge and Its Application in Oil-water Separation[J]. Journal of Inorganic Materials, 2020, 35(4): 475
    Download Citation