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Seawater-soluble pigments and their potential use in self-polishing antifouling paints: simulation-based screening tool [Review]

机译:海水可溶性颜料及其在自抛光防污漆中的潜在用途:基于模拟的筛选工具[综述]

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This work concerns the on-going development of efficient and environmentally friendly antifouling paints for biofouling control on large ocean-going ships. It is illustrated how a detailed mathematical model for a self-polishing antifouling paint exposed to seawater can be used as a product engineering tool to obtain a quick estimate of the paint behaviour that a given seawater-soluble pigment will provide. In the present context, "pigment" refers to relevant particulate solids of organic-, inorganic-, or biological nature. Simulations performed at 15 and 30degreesC suggest that pigment solubility and seawater diffusivity of dissolved pigment species have a significant influence on the polishing and leaching behaviour of a typical self-polishing paint system. The pigment size distribution, on the other hand, only has a minor influence on the paint-seawater interaction. Simulations also indicate that only compounds which are effective against biofouling at very low seawater concentrations are useful as active antifouling paint ingredients. The need for model verification and exploration of practical issues, subsequent a given pigment has been found of interest, is discussed. The model approach is of relevance in the search for novel antifouling paints and for the development of accelerated test methods. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 23]
机译:这项工作涉及持续发展的高效,环保型防污涂料,用于控制大型远洋船舶的生物污损。说明了如何将暴露于海水中的自抛光防污漆的详细数学模型用作产品工程工具,以快速估算给定的海水可溶性颜料将提供的漆的性能。在本文中,“颜料”是指有机,无机或生物性质的相关颗粒固体。在15和30摄氏度下进行的模拟表明,溶解的颜料种类的颜料溶解度和海水扩散率对典型的自抛光漆系统的抛光和浸出行为具有重大影响。另一方面,颜料的尺寸分布对涂料-海水的相互作用影响很小。模拟还表明,仅在非常低的海水浓度下对生物结垢有效的化合物才可用作活性防污涂料成分。讨论了对模型验证和实际问题进行探索的需求,随后发现了给定的颜料,这是令人感兴趣的。该模型方法与寻找新型防污涂料和开发加速测试方法有关。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:23]

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