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Superhydrophobic and Superhydrophilic Nanocomposite Coatings for Preventing Microbial Adhesion in Liquid Food Flow Channel

机译:用于防止液体食物流动通道微生物粘附的超疏水和超硫酸纳米复合涂层

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Many recent studies have shown that both superhydrophobic (SB) and superhydrophilic (SL) coatings can minimize microbial adhesion on solid substrates; however, a comprehensive investigation of both extreme surface characteristics is not available. Therefore, the aim of this paper is to test and evaluate the rate of microbial adhesion on liquid transport system by comparing the effects of SB and SL coatings. Water contact angles on control, SB and SL surfaces were 70°, 150° and 0°, respectively. For adhesion experiments, the suspension of 3×10~8 cells/ml Escherichia coli K-12 was pumped through the chamber at two flow rates of 0 and 200 ml/min. Increases in flow rate and hydrodynamic force significantly inhibited the bacterial adhesion on both developed surfaces. After running for an hour, the fluorescence intensities (FIs) of adhered bacteria on SB and SL surfaces were up to 80 and 65% lower than uncoated surface, depending upon the surface wetability.
机译:许多最近的研究表明,超疏水(Sb)和超硫酸(SL)涂层可以使微生物粘附在固体基材上最小化;然而,不提供对极端表面特征的全面调查。因此,本文的目的是通过比较Sb和SL涂层的影响来测试和评估液体输送系统上的微生物粘附速率。对照,Sb和SL表面上的水接触角分别为70°,150°和0°。对于粘合实验,将3×10〜8个细胞/ mL大肠杆菌K-12的悬浮液以0和200mL / min的两个流速泵送通过腔室。流速和流体动力学力的增加显着抑制了两种发育表面上的细菌粘附。在运行一小时后,取决于表面耐更性,在Sb和SL表面上的粘附细菌和SL表面上的粘附细菌的荧光强度(FIS)高达80%和65%。

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