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A marine biofilm flow cell for in situ screening marine fouling control coatings using optical coherence tomography

机译:海洋生物膜流动池,用于使用光学相干层析成像技术原位筛选海洋污损控制涂层

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摘要

A novel fouling marine flow cell was designed and fitted with a clear plastic lid to allow real-time imaging of biofilms using optical coherence tomography (OCT). Marine biofilms were grown under controlled shear flow on coupons coated with 6 different biocidal antifouling coatings (SPC1, SPC2, SPC3, SPC4, CDP1 and CDP2, AkzoNobel) and one inert coating which contained no biocidal actives (NB-D) for 8 weeks. One set of coupons coated with NB was statically immersed in sea water during the same time period (NB-S). Biofilm removal was assessed by increasing the flow velocity while OCT simultaneously measured the biofilm cross-sectional area (GSA). The highest initial removal rates were observed for NB-S, NB-D, and SPC2. Percent biofilm cross-sectional area reduction (%CSAred) was higher on SPCs ( 60%) compared to CDPs ( 50%). SPCs had the highest percent reduction in biofilm surface area coverage (%SACred 60%) compared to the CDPs ( 20%). The marine biofilm flow cell combined with OCT can be used to screen for coating-specific differences in biofilm growth and removal in real time rather than traditional before and after surface area coverage measurements. Future testing will focus on how the biofilm-coatings interactions interact with biofilm mechanical and structural properties to produce drag.
机译:设计了一种新型污垢海洋流通池,并配备了透明塑料盖,可以使用光学相干断层扫描(OCT)对生物膜进行实时成像。海洋生物膜在受控剪切流下在涂有6种不同的杀生物防污涂层(SPC1,SPC2,SPC3,SPC4,CDP1和CDP2,AkzoNobel)和一种不包含杀生物活性物质(NB-D)的惰性涂层的试样上生长8周。在同一时间(NB-S)中,将一组涂有NB的试样静态地浸入海水中。通过增加流速来评估生物膜去除,同时OCT同时测量生物膜横截面积(GSA)。 NB-S,NB-D和SPC2的初始去除率最高。与CDP(<50%)相比,SPC(> 60%)的生物膜截面积减少百分比(%CSAred)更高。与CDP(<20%)相比,SPC的生物膜表面积覆盖率降低百分比最高(%SACred> 60%)。与OCT相结合的海洋生物膜流动池可用于实时筛选生物膜生长和去除过程中涂层特异性的差异,而不是传统的表面积覆盖率测量前后。未来的测试将集中在生物膜与涂层的相互作用如何与生物膜的机械和结构特性相互作用以产生阻力的方面。

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