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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Estimation of organic biocide leaching rate using a modified cavity jump diffusion model
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Estimation of organic biocide leaching rate using a modified cavity jump diffusion model

机译:使用改进的空腔跳跃扩散模型估算有机杀菌剂的浸出率

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摘要

Estimation of biocide lifetime in marine antifouling coatings is of great use to improve and develop technologies. An existing model simulating the diffusion of molecules in polymer networks below glass transition temperature was employed to estimate leaching. This model was modified to allow for swelling due to water uptake and to permit evaluation of copolymer binders as well as homopolymers. This enabled prediction of biocide diffusion coefficients in polymeric coatings of various binder types, including pMMA, a pMMA/butylacrylate binder containing rosin, and a trityl copolymer, using usnic acid as a 'model' biocide. For comparison with modelling results, coatings fomulated using each binder type were also submitted to static and dynamic seawater immersion. Fluorescence microscopy techniques were used to quantify biocide leaching from these coatings relative to unimmersed coatings. Agreement of the modified diffusion model with experimental data was good for pMMA, reasonable for the rosin-based binder, and poor for the trityl binder. Comparison of predicted and experimental biocide profiles in the binder demonstrated deviation from the expected Fickian mechanism for the pMMA binder, despite the accurate rate prediction. This work demonstrates a first approach to predicting organic biocide diffusion, and highlights the areas for future attention.
机译:估计海洋防污涂料中杀生物剂的寿命对于改进和开发技术很有用。现有的模拟分子在玻璃化转变温度以下的聚合物网络中扩散的模型用于估计浸出。对该模型进行了修改,以允许由于吸水而发生溶胀,并可以评估共聚物粘合剂和均聚物。使用松香酸作为“模型”杀菌剂,可以预测各种粘合剂类型的聚合物涂料中的杀菌剂扩散系数,包括pMMA,含松香的pMMA /丙烯酸丁酯粘合剂和三苯甲基共聚物。为了与建模结果进行比较,还将使用每种粘合剂类型制成的涂料进行静态和动态海水浸泡。相对于未浸入的涂层,荧光显微镜技术用于定量从这些涂层中浸出的杀生物剂。修改后的扩散模型与实验数据的一致性对于pMMA来说是好的,对于松香基粘合剂是合理的,而对三苯甲基粘合剂则差。尽管预测了准确的速率,但对粘合剂中预测的杀虫剂和实验性杀生物剂的比较表明,与pMMA粘合剂的预期Fickian机理存在偏差。这项工作展示了预测有机杀生物剂扩散的第一种方法,并突出了需要进一步关注的领域。

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