基于生物电效应的非电解防微污染技术实验研究

Young Wook Kim
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引用次数: 0

摘要

由生物膜(黏液)形成引发的生物污染是实际海洋工程和建设的关键挑战。本研究评价了一种利用生物电的新型抗生物膜技术。防微污染电气技术是基于生物电效应的原理,被称为应用静电力去除生物膜。之前,为了避免电解,电被优化到0.82V以下,这样可以防止杀菌剂的产生。研制了一种由微电子元件组成的用于电信号产生的试验船,并设计了具有抗生物污染作用的电极。此次试验在西海(仁川王山码头)进行了3周。对表面生物污染进行了定量分析。在生物电效应条件下,污垢显著减少,防止污垢进展的能力提高了约30% (P<0.05)。该技术可以作为一种替代的环保技术,用于防止微污染,因为它不会引起电解,可以应用于运河,船舶和沿海基础设施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Experimental Study of Non-Electrolysis Anti-Microfouling Technology Based on Bioelectric Effect
Biofouling initiated by biofilm (slime) formation is a key challenge for practical ocean engineering and construction. This study evaluated a new anti-biofilm technology using bioelectricity. The anti-microfouling electrical technology is based on the principles of the bioelectric effect, known as the application of an electrostatic force for biofilm removal. Previously, the electricity was optimized below 0.82V to avoid electrolysis, which can prevent the production of biocides. A test boat comprised of microelectronics for electrical signal generation with electrodes for an anti-biofouling effect was developed. The tests were conducted in the West Sea of Korea (Wangsan Marina, Incheon) for three weeks. The surface biofouling was quantified. A significant reduction of fouling was observed under the bioelectric effect conditions, with approximately 30% enhanced prevention of fouling progress (P<0.05). This technology can be an alternative eco-friendly technique for anti-microfouling that can be applied for canals, vessels, and coastal infrastructure because it does not induce electrolysis.
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