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      Research Strategies to Develop Environmentally Friendly Marine Antifouling Coatings

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          Abstract

          There are a large number of fouling organisms in the ocean, which easily attach to the surface of ships, oil platforms and breeding facilities, corrode the surface of equipment, accelerate the aging of equipment, affect the stability and safety of marine facilities and cause serious economic losses. Antifouling coating is an effective method to prevent marine biological fouling. Traditional organic tin and copper oxide coatings are toxic and will contaminate seawater and destroy marine ecology and have been banned or restricted. Environmentally friendly antifouling coatings have become a research hotspot. Among them, the use of natural biological products with antifouling activity as antifouling agents is an important research direction. In addition, some fouling release coatings without antifoulants, biomimetic coatings, photocatalytic coatings and other novel antifouling coatings have also developed rapidly. On the basis of revealing the mechanism of marine biofouling, this paper reviews the latest research strategies to develop environmentally friendly marine antifouling coatings. The composition, antifouling characteristics, antifouling mechanism and effects of various coatings were analyzed emphatically. Finally, the development prospects and future development directions of marine antifouling coatings are forecasted.

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          Most cited references76

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          Trends in the development of environmentally friendly fouling-resistant marine coatings.

          'Marine biofouling', the undesired growth of marine organisms such as microorganisms, barnacles and seaweeds on submerged surfaces, is a global problem for maritime industries, with both economic and environmental penalties. The primary strategy for combating marine fouling is to use biocide-containing paints, but environmental concerns and legislation are driving science and technology towards non-biocidal solutions based solely on physico-chemical and materials properties of coatings. Advances in nanotechnology and polymer science, and the development of novel surface designs 'bioinspired' by nature, are expected to have a significant impact on the development of a new generation of environmentally friendly marine coatings.
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            Superhydrophobic and superoleophobic properties in nature

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              Effects of coating roughness and biofouling on ship resistance and powering.

              P. Schultz (2006)
              Predictions of full-scale ship resistance and powering are made for antifouling coating systems with a range of roughness and fouling conditions. The estimates are based on results from laboratory-scale drag measurements and boundary layer similarity law analysis. In the present work, predictions are made for a mid-sized naval surface combatant at cruising speed and near maximum speed. The results indicate that slime films can lead to significant increases in resistance and powering, and heavy calcareous fouling results in powering penalties up to 86% at cruising speed. The present estimates show good agreement with results from full-scale ship power trials.
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                Author and article information

                Journal
                Mar Drugs
                Mar Drugs
                marinedrugs
                Marine Drugs
                MDPI
                1660-3397
                18 July 2020
                July 2020
                : 18
                : 7
                : 371
                Affiliations
                [1 ]College of Metrology &Measurement Engineering, China Jiliang University, Hangzhou 310018, China; guyunqing@ 123456cjlu.edu.cn (Y.G.); s1902080449@ 123456cjlu.edu.cn (L.Y.); wdh@ 123456cjlu.edu.cn (D.W.); msxu@ 123456zjut.edu.cn (M.X.); 19a0205122@ 123456cjlu.edu.cn (P.Z.)
                [2 ]Zhijiang College, Zhejiang University of Technology, Shaoxing 312030, China; renyun_ry@ 123456hotmail.com
                Author notes
                [* ]Correspondence: mjg@ 123456cjlu.edu.cn
                Article
                marinedrugs-18-00371
                10.3390/md18070371
                7404020
                32708476
                1f375996-9798-4935-86b5-d74552f567cd
                © 2020 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 22 June 2020
                : 16 July 2020
                Categories
                Review

                Pharmacology & Pharmaceutical medicine
                antifouling mechanism,antifouling coating,antifoulant,environmentally friendly,polymer

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