首页> 外文OA文献 >Low biocide emission antifouling based on a novel route of barnacle intoxication
【2h】

Low biocide emission antifouling based on a novel route of barnacle intoxication

机译:基于一种新的藤壶中毒途径的低杀菌剂排放防污

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Marine biofouling can be defined as the colonization of man-made surfaces in seawater by microscopic and macroscopic organisms. This phenomenon can result in great loss of function and effectiveness both for cruising ships and for static constructions. Of special concern are the negative effects of hard fouler such as barnacles, which cause increased drag resistance resulting in increases in fuel consumption, and disruption of the corrosion protective layer of marine vessels and constructions. Present biocide-based antifouling strategies are based on a continuous exposure of biocides at the film/water interface and consequently release into the environment if the antifouling efficacy is to be maintained. Such biocide-based solutions can therefore not be regarded as sustainable.The aim of this thesis is to describe the possibility to design biocide antifouling coatings based on a new strategy. Instead of releasing the bioactive molecule to the bulk water the biocide will be “entrapped” in the paint matrix and only after stimuli by organism interaction with the paint surface intoxication will take place. It was shown (Paper I) that using an experimental formulation, containing ivermectin, both in static panels and on boats, long lasting protection against barnacles was obtained. Moreover, using two model surfaces (Paper II), it was possible to separate and study the different contributions to the antifouling efficacy, finding that the low leaching of ivermectin had no contribution at all while surface’s modulus of the coating was the key factor. This supports the validity of the contact active antifouling hypothesis, rather than emission based. In (Paper III) we could follow the fate of barnacle growing on ivermectin containing coatings, and both field and laboratory tests could demonstrate that the intoxication of barnacles start when the juvenile organism reach ca. 0.6-0.7mm in diameter. Electronic microscopy images on the panels after the test, demonstrate that on control paint (no biocide) the juvenile barnacles (0.6-0.7mm diameter) already leaves imprint or penetration marks on the rosin based coatings. The distribution of ivermectin in the dry film seemed to be related with enhancement of barnacles contact intoxication. This was studied by fluorescence microscopy in (Paper I) and by the use ToF-SIMS in (Paper IV). This particular analytic method gives the possibility to follow organic biocides in paint film without the need of labelling or modify the biocide molecule in any extent. The entrapped antifouling strategy opens up the possibility to achieve long term antifouling (>10 years) as there is no need to use erosive binders. Moreover, this system might also find it uses in marine constructions and other fields where maintenance is difficult.
机译:海洋生物污染可以定义为微观和宏观生物在海水中对人造表面的定殖。这种现象会导致巡航船和静态结构的功能和效率大大降低。特别令人关注的是硬质污垢(如藤壶)的负面影响,这种污垢会导致阻力增加,从而导致燃料消耗增加,并破坏船舶和建筑物的腐蚀防护层。当前的基于杀生物剂的防污策略是基于杀生物剂在膜/水界面处的连续暴露,并且因此如果要保持防污功效,则释放到环境中。因此,这种基于杀生物剂的解决方案不能被认为是可持续的。本文的目的是描述基于新策略设计杀生物剂防污涂料的可能性。并非将生物活性分子释放到大量水中,杀生物剂将被“截留”在涂料基质中,并且只有在有机物与涂料表面中毒相互作用后才会发生。结果表明(论文I),使用一种含有伊维菌素的实验制剂,无论是在静态板上还是在船上,都能获得持久的防藤壶保护作用。此外,使用两个模型表面(论文II),可以分离并研究对防污功效的不同贡献,发现伊维菌素的低浸出量完全没有贡献,而涂层的表面模量是关键因素。这支持了接触式主动防污假说的有效性,而不是基于排放的假说。在(论文III)中,我们可以追踪藤壶在含有伊维菌素的涂层上生长的命运,并且现场和实验室测试都可以证明,藤壶中毒的发生是在幼体达到约200℃时开始的。直径0.6-0.7mm测试后面板上的电子显微镜图像表明,在对照涂料(无杀生物剂)上,青少年藤壶(直径0.6-0.7mm)已经在松香基涂料上留下印记或渗透痕迹。伊维菌素在干膜中的分布似乎与藤壶接触中毒的增加有关。在(论文I)中通过荧光显微术进行了研究,在(论文IV)中通过使用ToF-SIMS进行了研究。这种特殊的分析方法使得可以跟随涂膜中的有机杀生物剂而无需在任何程度上标记或修饰杀生物剂分子。由于不需要使用侵蚀性粘合剂,因此采用了防污策略,因此可以实现长期防污(> 10年)。此外,该系统还可能会发现它可用于海上建筑和其他维护困难的领域。

著录项

  • 作者

    Pinori Emiliano;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号