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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Effects of marine microbial biofilms on the biocide release rate from antifouling paints - A model-based analysis
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Effects of marine microbial biofilms on the biocide release rate from antifouling paints - A model-based analysis

机译:海洋微生物生物膜对防污涂料杀菌剂释放速率的影响-基于模型的分析

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The antifouling (AF) paint model of Kiil et al. [S. Kiil, C.E. Weinell, M.S. Pedersen, K. Dam-Johansen, Analysis of self-polishing antifouling paints using rotary experiments and mathematical modelling, Ind. Eng. Chem. Res. 40 (2001) 3906-3920] and the simplified biofilm. growth model of Gujer and Warmer [W. Gujer, O. Warmer, Modeling mixed population biofilms, in: W.G. Characklis, K.C. Marshall (Eds.), Biofilms, Wiley-Interscience, New York, 1990] are used to provide a reaction engineering-based insight to the effects of marine microbial slimes on biocide leaching and, to a minor extent, polishing behaviour of AF paints. It is concluded that the perturbation of the local sea water conditions (e.g. pH), as a consequence of the metabolic activity of the biofilm should not affect the net biocide leaching and binder reaction rates significantly. This results from the thin and poorly active biofilms which presumably grow onto the highly effective modern AF paints. According to simulations, the experimental decrease in the biocide leaching rate caused by biofilm growth must be mainly attributed to adsorption of the biocide by the exopolymeric substances secreted by the microorganisms. The effects of biofilms on the leaching of any generic active compound (e.g. natural antifoulants) are discussed in relation to their potential release mechanisms. The largest influence of biofilms is predicted for those active compounds that are released by a diffusion-controlled mechanism (typically tin-free algaecides). (c) 2006 Elsevier B.V. All rights reserved.
机译:Kiil等人的防污(AF)涂料模型。 [S.基尔(CeE Weinell),硕士Pedersen,K. Dam-Johansen,使用旋转实验和数学建模对自抛光防污涂料进行分析,工业工程。化学Res。 40(2001)3906-3920]和简化的生物膜。 Gujer和Warmer的增长模型[W. Gujer,O.Warmer,《模拟混合种群生物膜》,在:W.G. Characklis,K.C. Marshall(编),Biofilms,Wiley-Interscience,纽约,1990年)用于提供基于反应工程的见解,以了解海洋微生物粘液对杀生物剂浸出的影响,并在较小程度上改善AF涂料的抛光性能。结论是,由于生物膜的代谢活性而引起的局部海水条件(例如pH)的扰动不应显着影响净生物杀灭剂的浸出和粘合剂反应速率。这是由于薄而活性差的生物膜所致,该生物膜可能会长成高效的现代AF涂料。根据模拟,由生物膜生长引起的杀生物剂浸出率的实验下降必须主要归因于微生物分泌的外聚物质对杀生物剂的吸附。讨论了生物膜对任何通用活性化合物(例如天然防污剂)浸出的影响及其潜在的释放机理。对于通过扩散控制机制释放的那些活性化合物(通常是无锡的除藻剂),可以预测生物膜的最大影响。 (c)2006 Elsevier B.V.保留所有权利。

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