Submerged surfaces exposed to marine biofouling-Experimental investigation of cleaning parameters effectiveness

被引:7
作者
Lin, Shujie [1 ]
Bi, Huichao [1 ]
Weinell, Claus Erik [1 ]
Dam-Johansen, Kim [1 ]
机构
[1] Tech Univ Denmark DTU, Dept Chem & Biochem Engn, CoaST, Bldg 229, DK-2800 Lyngby, Denmark
关键词
Antifouling coatings; Cleaning parameters; Fouling resistance; Cleaning efficiency; Biocide release rate; RELEASE; COPPER; PERFORMANCE; COATINGS;
D O I
10.1016/j.porgcoat.2022.107097
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Physical cleaning, an important factor in maintaining ships' hulls free from biofouling, can help to prolong the lifetime of fouling-control coating systems. This study investigated how mechanical cleaning parameters (cleaning force, duration and frequency) affected antifouling coatings' performance including fouling resistance property and cleaning efficiency using a specially designed manual cleaning system. Meanwhile, coating surface conditions, including visual appearance condition, roughness, contact angle were evaluated in detail. Biocide release rates of copper-based soluble antifouling paint (Cu-AF) under different cleaning conditions were also assessed by Scanning Electron Microscopy - Energy Dispersive X-ray (SEM-EDX) analysis. Results from the field testing in Danish sea area showed that cleaning frequency affected more than cleaning force and duration on antifouling coating performance. Algae glue attachment increased the difficulty in the cleaning of non-coated acrylic surface (A-BS) and fluorine-based copper free insoluble antifouling paint (F-AF). For Cu-AF coated panels, no significant mechanical damages were observed after cleaning. For F-AF, scratches formed on the coating surface after cleaning were more related to cleaning force and cleaning frequency. The biocide release rates of Cu-AF under various cleaning condition were between 15.7 and 24.6 mu g Cu cm-2 day-1. Gentle cleaning of Cu-AF with proper frequency has little influence on the copper release rate. This study provides guidance on cleaning strategies for antifouling coatings.
引用
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页数:18
相关论文
共 33 条
  • [1] Underwater Robotics: Surface Cleaning Technics, Adhesion and Locomotion Systems
    Albitar, Houssam
    Dandan, Kinan
    Ananiev, Anani
    Kalaykov, Ivan
    [J]. INTERNATIONAL JOURNAL OF ADVANCED ROBOTIC SYSTEMS, 2016, 13
  • [2] [Anonymous], 2005, Standard Test Method for Laboratory Determination of Pulse Velocities and Ultrasonic Elastic Constants of Rock, P5, DOI [DOI 10.1520/E0096, DOI 10.1520/D6990-05.2, 10.1520/D284508.2, DOI 10.1520/D284508.2]
  • [3] Archana S., 2019, J ENTOMOL ZOOL STUD, V7, P640
  • [4] Novel biomimetic adhesives based on algae glue
    Bitton, Ronit
    Bianco-Peled, Havazelet
    [J]. MACROMOLECULAR BIOSCIENCE, 2008, 8 (05) : 393 - 400
  • [5] Callow Maureen E., 2002, Biologist, V49, P5
  • [6] Algae-mussel-inspired hydrogel composite glue for underwater bonding
    Cholewinski, Aleksander
    Yang, Fut
    Zhao, Boxin
    [J]. MATERIALS HORIZONS, 2019, 6 (02) : 285 - 293
  • [7] ROV operation from a small boat
    Csepp, DJ
    [J]. MARINE TECHNOLOGY SOCIETY JOURNAL, 2005, 39 (02) : 81 - 89
  • [8] Life cycle contributions of copper from vessel painting and maintenance activities
    Earley, Patrick J.
    Swope, Brandon L.
    Barbeau, Katherine
    Bundy, Randelle
    McDonald, Janessa A.
    Rivera-Duarte, Ignacio
    [J]. BIOFOULING, 2014, 30 (01) : 51 - 68
  • [9] Improved estimates of environmental copper release rates from antifouling products
    Finnie, Alistair A.
    [J]. BIOFOULING, 2006, 22 (05) : 279 - 291
  • [10] Research Strategies to Develop Environmentally Friendly Marine Antifouling Coatings
    Gu, Yunqing
    Yu, Lingzhi
    Mou, Jiegang
    Wu, Denghao
    Xu, Maosen
    Zhou, Peijian
    Ren, Yun
    [J]. MARINE DRUGS, 2020, 18 (07)