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The CQ ratio of surface energy components influences adhesion and removal of fouling bacteria

机译:表面能成分的CQ比影响结垢细菌的附着和去除

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The interaction energy between bacteria and substrata with different surface energies was modelled by the extended DLVO (Derjaguin, Landau, Verwey and Overbeek) theory. The modeling results revealed that the interaction energy has a strong correlation with the CQ (Chen and Qi) ratio, which is defined as the ratio of the Lifshitz-van der Waals (LW) apolar to the electron donor surface energy components of substrata. Both modeling and experimental results with different bacteria including P. fluorescens, Cobetia marina and Vibrio alginolyticus demonstrated that if the LW surface energy of bacteria is larger than that of water, which is the case for most bacteria, the number of adhered bacteria decreases with a decreasing CQ ratio while bacterial removal rate increases with a decreasing CQ ratio. However, if the LW surface energy of bacteria is less than that of water, the opposite results are obtained. The CQ ratio gives a clear direction for the design of anti-biofouling and biofouling-release coatings through surface modification.
机译:通过扩展的DLVO(Derjaguin,Landau,Verwey和Overbeek)理论对细菌与具有不同表面能的基质之间的相互作用能进行建模。建模结果表明,相互作用能与CQ(Chen and Qi)比具有很强的相关性,CQ比定义为非极性的Lifshitz-van der Waals(LW)与基质的电子供体表面能成分之比。使用不同细菌(包括荧光假单胞菌,滨海Cobetia marina和溶藻弧菌)的建模和实验结果均表明,如果细菌的LW表面能大于水的表面能(对于大多数细菌而言),则附着细菌的数量会随着CQ比率降低,而细菌去除率随CQ比率降低而增加。但是,如果细菌的LW表面能小于水,则可获得相反的结果。 CQ比为通过表面改性设计防污垢和防污垢释放涂料提供了明确的方向。

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