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Effect of Applied Potential to Control Bacterial Adhesion on Titanium a Condenser Material of Nuclear Power Plants

机译:施加电压对控制核电厂钛凝结材料钛细菌附着的影响

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The effect of applied potential to control bacterial adhesion on titanium is studied. Open circuit potential (OCP) and adhesion density were monitored for 24 h for titanium exposed to bacterial species in seawater environment to standardize the parameters like applied potential and time of exposure. Followed by this, anodic and cathodic potentiodynamic polarization studies were carried out with specimens exposed to Bacillus sp., to monitor adhesion and biofilm formation. Epifluorescence observation clearly showed reduced attachment of Bacillus sp. on polarized surfaces. The effect of applied potential on the formation of biofilms was studied with Pseudomonas sp., Flavobacterium sp., Bacillus sp. and Micrococcus sp. on titanium specimens potentiostatically polarized anodi-cally (+600 mV) above the OCP and cathodically (—600 mV) below OCP. The results of the present study showed the removal of attached cells at both anodic and cathodic potentials. Effect of applied potential on both biofilm formation and conditions for biofilm development are discussed in the paper.
机译:研究了施加电位以控制细菌在钛上的附着力的影响。在海水环境中,对暴露于细菌物种的钛监测24小时的开路电势(OCP)和粘附密度,以标准化诸如施加电势和暴露时间之类的参数。随后,对暴露于芽孢杆菌属的标本进行阳极和阴极电位动力学极化研究,以监测粘附和生物膜形成。落射荧光观察清楚地表明芽孢杆菌属的附着减少。在极化表面上。用假单胞菌属,黄杆菌属,芽孢杆菌属等研究了施加电势对生物膜形成的影响。和Micrococcus sp。在OCP上方的正极性阳极极化(+600 mV),在OCP下方的阴极极化(-600 mV)的钛标本上。本研究的结果表明,在阳极电势和阴极电势下附着细胞的去除。本文讨论了施加电势对生物膜形成和生物膜形成条件的影响。

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