Preparation of Micron-Nano Size Cu2O by Jet Mill and Its Anti-Fouling Performance

  • SUN Bao-Ku ,
  • LU A-Ding ,
  • HU Jian-Kun ,
  • XU Huan-Zhi ,
  • ZHANG Hai-Chun ,
  • FAN Kuo-Sheng ,
  • YU Xiao-Fen
Expand
  • 1. Zhejiang Marine Development research Institute,Zhoushan,Zhejiang 316021,China; 2. Marine Science and Tecknology College of Zhejiang Ocean University,Zhoushan,Zhejiang 316004,China

Received date: 2019-07-11

  Revised date: 2019-12-12

  Online published: 2020-02-01

Abstract

The micron-nano size  Cu2O with average particle size about 0. 98 μm was produced by jet mill,which could reduce the particle size and distribution range effectively.The anti-fouling performance of micron-nano size Cu2O was studied by anti-microbial test,anti-alga test,measurement of copper ion release rate and anti-fouling test in shallow submergence. The results showed that the anti-microbial rate and anti-alga rate of micron-nano size  Cu2O increased by 28. 82% and 21. 82%respectively,comprehensive application performance and anti-fouling performance in anti-fouling coatings for on-site sea test were much better compared to commercial Cu2O. The copper ion release rate of anti-fouling coating based on micron-nano size Cu2O was more stable and controllable compared to nano size  Cu2O,avoiding“Over release”of copper ion caused by nano size Cu2O.

Cite this article

SUN Bao-Ku , LU A-Ding , HU Jian-Kun , XU Huan-Zhi , ZHANG Hai-Chun , FAN Kuo-Sheng , YU Xiao-Fen . Preparation of Micron-Nano Size Cu2O by Jet Mill and Its Anti-Fouling Performance[J]. Paint & Coatings Industry, 2020 , 50(1) : 31 -37 . DOI: 10.12020/j.issn.0253-4312.2020.1.31

References

[1]HOUGHTON D R.Marine fouling and offshore structures[J].Ocean Management, 1978, 4(2-4):347-352
[2]黄宗国,蔡如星 .海洋污损生物及其防除(上册)[M].北京:海洋出版社,1984.
[3]郝松松,孙晓峰,李占明,等.海洋舰船防污涂料综述[J].表面工程与再制造, 2017, 17(2):29-33
[4]叶章基,陈珊珊,马春风,等.新型环保海洋防污材料研究进展[J].表面技术, 2017, 46(12):62-70
[5]MARWANAF,SERGEY D,MYO T Z M,et al.Antifoulingproperties of zinc oxide nanorod coatings[J].Biofouling, 2014, 30(7):871-882
[6]胡晶,贾磊.新型防污涂料的发展趋势[J].广东化工, 2016, 43(9):131-
[7]谷美邦,邢维升,宋振伟,等.舰船专用涂料概述[J].上海涂料, 2013, 51(4):27-30
[8]涂料工艺编委会编 .涂料工艺 [M].北京:化学工业出版社, 1997.
[9] MIHAIL I.Chemistry and technology of polyols for polyure.thanes[M]. Shawbury UK:Rapra Technology Limited,2005.
[10]PEREZ-LIMINANAMA,ARAN-AISFRANCISCA,TORRO-PALAU ANA M,et al.Influence of the hard -to-soft segment ratioon adhesion of water-borne polyurethane adhesive[J].Adhe.sion Sci, 2007, 21(8):755-773
[11]FAY F,LANGLOIS V,LANGLOIS V,et al.Development of poly(e-caprolatone-co -L-lactide)and poly(e-caprolatone-co-d-valerolactone)as new degradable binber used for an. tifouling paint[J]. European Polymer Journal,2007,43(11):4800-4813
[12]王佳兴,张剑锋,赵文杰等.氧化亚铜纳米颗粒的制备及其释放速率测定[J].中国表面工程, 2015, 28(2):138-143
[13]郑兆祥,袁杨,陈蒙蒙,等 .舟山海域海泥细菌的分离及抗水产病原弧菌的赛选.[J].浙江海洋学院学报(自然科学版), 2011, 30(1):51-55
[14]陈明耀.生物饵料培养 [M].北京:中国农业出版社, 1995:25-92.
[15]张新建,任艳,黄玉杰,等.新月菱形藻的紫外诱变及优化培养[J].山东科学, 2011, 24(1):22-27
[16]沈明,徐焕志,陆阿定,等.针对海洋细菌防污剂的快速评价方法及其应用[J].涂料工业, 2013, 43(9):56-61
[17]沈明,徐焕志,孙保库,等.基于海洋细菌为受试生物的海洋防污剂快速筛选方法[J].海洋与湖沼, 2014, 45(3):608-617
[18]马振青 .氧化石墨烯 /氧化亚铜纳米复合材料的制备及其抑菌性研究 [D].青岛:中国海洋大学, 2014.
Outlines

/