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海洋污损生物的吸附会对海工构件造成严重的腐蚀破坏,给海洋工程带来很大损失.而涂装防污涂料是解决海洋生物污损问题的重要途径.随着世界对海洋环境的日益重视,防污涂料已得到了迅速的发展,无毒防污涂料将会逐渐取代传统的防污涂料.简单介绍了海洋污损生物吸附原理,概括了海洋防污涂料的发展现状,分析了它们的防污机理,并简单介绍了本课题组在这方面的一些工作,指出了未来海洋防污涂料的发展趋势.

参考文献

[1] Depalma J R .Fouling mariners[J].Weather Log,1997,21(1):1.
[2] 陈彤,陈岗军.海水腐蚀、海生物污损与船舶营运经济性[J].中国修船,2006(04):44-45,48.
[3] 黄宗国;蔡如星.海洋污损生物及其防除[M].北京:海洋出版社,1984:1.
[4] Camail M.;Margaillan A.;Vernet JL.;Humbert M. .New acrylic titanium polymers: 2. Synthesis and characterization of organotitanium polymers[J].Polymer: The International Journal for the Science and Technology of Polymers,1998(25):6533-6539.
[5] 江桂斌.国内外有机锡污染研究现状[J].卫生研究,2001(01):1-3.
[6] Pettitt M E;Henry S L;Callow M E et al.Activity of commercial enzymes on settlement and adhesion of cypris larvae of the barnacle balanus amphitrite,spores of the green alga ulva linza,and the diatom navicula perminuta[J].BIOFOULING,2004,20(6):299.
[7] S. M. EVANS;A. C. BIRCHENOUGH;M. S. BRANCATO .The TBT Ban: Out of the Frying Pan into the Fire?[J].Marine pollution bulletin,2000(3):204-211.
[8] 李秀丽,廖万清.真菌生物膜研究进展[J].中国真菌学杂志,2006(05):318-320.
[9] Horbund H M;Freiberger A .Slime films and their role in marine fouling:A review[J].Ocean Engineering,1970,1(6):631.
[10] 边蕴静 .低表面能防污涂料的最新进展[J].化工新型材料,2001,28(11):9.
[11] 韩磊,张秋禹.低表面能防污涂料的最新研究进展[J].材料保护,2006(02):37-41.
[12] 李永清,郑淑贞.改性有机硅低表面能防污涂料用树脂的合成[J].涂料技术与文摘,2003(06):23-26.
[13] 何庆光,任润桃,叶章基.船舶防污涂料用树脂基料的发展及作用[J].涂料工业,2009(06):51-55.
[14] Crisp D.The role of the biologist in anti-fouling research[A].Evanston,IL,Northwestern University Press,1973:88.
[15] 章德铭 等.一种抗海生物腐蚀的陶瓷涂层及其制备方法[P].中国,CN102181815A,2011-09-14.
[16] 周建奇 .一种防止海洋生物污损的复合涂层及其喷涂方法[P].中国,CN102191500A,2011-09-21.
[17] Offinoski .Porous metal abradable seal material[P].Untied States,46649973,1987.
[18] Yebra DM;Kiil S;Dam-Johansen K .Antifouling technology - past, present and future steps towards efficient and environmentally friendly antifouling coatings[J].Progress in Organic Coatings: An International Review Journal,2004(2):75-104.
[19] Linder Elek .A low surface energiy approach in the control of marine biofouling[J].BIOFOULING,1992,6(2):193.
[20] Jerzy A. Mielczarski;Ela Mielczarski;Giancarlo Galli;Andrea Morelli;Elisa Martinelli;Emo Chiellini .The Surface-Segregated Nanostructure of Fluorinated Copolymer-Poly(dimethylsiloxane) Blend Films[J].Langmuir: The ACS Journal of Surfaces and Colloids,2010(4):2871-2876.
[21] 桂泰江,王科.低表面能海洋防污涂料的现状和发展趋势[J].现代涂料与涂装,2010(11):32-35.
[22] Long, CJ;Schumacher, JF;Brennan, AB .Potential for Tunable Static and Dynamic Contact Angle Anisotropy on Gradient Microscale Patterned Topographies[J].Langmuir: The ACS Journal of Surfaces and Colloids,2009(22):12982-12989.
[23] Lauga E;Brenner M P;Stone H A.Microfuidics:the noslip boundary condition[M].New York:Springer-Verlag,2005
[24] Cheng Y;Rodak D;Wong C et al.Effect of micro-and nano-structure on the self-cleaning behaviour of lotus leaves[J].NANOTECHNOLOGY,2006,17(5):1359.
[25] Autumn K;Hansen W .Ultrahydrophobicity indicates a non-adhesive default state in gecko setae[J].Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology,2006(11):1205-1212.
[26] Carman M;Estes T;Feinberg A et al.Engineered antifouling microtopographies-correlating wettability with cell attachment[J].BIOFOULING,2006,22(1-2):11.
[27] Zhu X T;Zhang Z Z;Men X H et al.Robust superhydrophobic surfaces with mechanical durability and easy repairability[J].Journal of Materials Chemistry,2011,21:15793.
[28] 张占平,齐育红,刘述锡,马永庆,刘红.船舶防污涂料与防污剂的研究进展[J].大连水产学院学报,2006(02):175-179.
[29] Wang Z C;Lin Y M;Feng D Q et al.A new atisane-type diterpene from the bark of the mangrove plant excoecaria agallocha[J].MOLECULES,2009,14(1):414.
[30] Bharathy V;Sumathy B M;Uthayakumari F .Determination of phytocomponents by GC-MS in leaves of Jatropha gossypifolia L[J].Sci Res Reporter,2012,2(3):286.
[31] Abarzua S;Jakubowski S;Eckert S et al.Biotechnological investigation for the prevention of marine biofouling Ⅱ.Blue-green algae as potential producers of biogenic agents for the growth inhibition of microfouling organisms[J].Botanica Marina,1999,42(5):459.
[32] Jakob B K;Rikke L M;Brian S L et al.Antifouling enzymes and the biochemistry of marine settlement[J].Biotechn Adv,2008,26:471.
[33] 李丽玲,程永清,张凯.无毒防污涂料最新研究进展[J].中国腐蚀与防护学报,2008(03):181-185.
[34] You Wang;Stephen Jiang;Meidong Wang;Shihe Wang;T. Danny Xiao;Peter R. Strutt .Abrasive wear characteristics of plasma sprayed nanostructured alumina/titania coatings[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,2000(2):176-185.
[35] Xie Y.;Hawthorne H.M. .Wear mechanism of plasma-sprayed alumina coating in sliding contacts with harder asperities[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,1999(1):90-103.
[36] Jingjing Zhang;Zehua Wang;Pinghua Lin;Wenhuan Lu;Zehua Zhou;Shaoqun Jiang .Effect of Sealing Treatment on Corrosion Resistance of Plasma-Sprayed NiCrAl/Cr_2O_3-8 wt.%TiO_2 Coating[J].Journal of Thermal Spray Technology,2011(3):508-513.
[37] J. J. Zhang;Z. H. Wang;P. H. Lin .Corrosion of plasma sprayed NiCrAl/Al_2O_3-13 wt-%TiO_2 coatings with and without sealing[J].Surface Engineering,2012(5):345-350.
[38] Jingjing Zhang;Zehua Wang;Pinghua Lin .Effects of sealing on corrosion behaviour of plasma-sprayed Cr_2O_3-8TiO_2 coating[J].Surface Engineering,2013(8):594-599.
[39] 司力琼,王泽华,周泽华,江少群,张晶晶,刘立群.超声激励封孔对等离子喷涂Al2O3-13%TiO2涂层耐腐蚀性能的影响[J].腐蚀与防护,2011(08):625-629.
[40] 王国伟 .等离子喷涂陶瓷涂层强化技术及水环境下防护性能研究[D].南京:河海大学,2013.
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