Chang Soul-Yi, Huang Shih-Yen, Chu Yu-Ren, Jian Shun-Yi, Lo Kai-Yin, Lee Yueh-Lien
Department of Engineering Science and Ocean Engineering, National Taiwan University, Taipei City 106, Taiwan.
Department of Chemical & Materials Engineering, Chung Cheng Institute of Technology, National Defense University, Taoyuan City 335, Taiwan.
Materials (Basel). 2021 Oct 17;14(20):6156. doi: 10.3390/ma14206156.
Taiwan is an island with a humid subtropical climate. The relatively warm seawater results in biofouling of the surfaces of marine facilities. Biocide application is a common practice for combating and eliminating adhesive fouling. However, a single type of biocide may have limited antimicrobial effects due to the relatively high microbial diversity in marine environments. Therefore, applying a mixture of various biocides may be necessary. In this study, the antimicrobial and anticorrosion properties of a newly designed composite biocide, namely a combination of thymol and benzyldimethyldodecylammonium chloride, were investigated by applying the biocide to 304 stainless steel substrates immersed in inocula containing bacterial strains from Tamsui and Zuoying harbors. The ability of 3TB and 5TB treatments to prevent sessile cells and biofilm formation on the 304 stainless steel coupon surface was determined through scanning electron microscopy investigation. In addition, confocal laser scanning microscopy indicated that the 5TB treatment achieved a greater bactericidal effect in both the Tamsui and Zuoying inocula. Moreover, electrochemical impedance spectroscopy revealed that the diameter of the Nyquist semicircle was almost completely unaffected by Tamsui or Zuoying under the 5TB treatment. Through these assessments of antimicrobial activity and corrosion resistance, 5TB treatment was demonstrated to have superior bactericidal activity against mixed strains in both southern and northern Taiwanese marine environments.
台湾是一个具有湿润亚热带气候的岛屿。相对温暖的海水导致海洋设施表面出现生物污垢。使用杀生剂是对抗和消除附着性污垢的常见做法。然而,由于海洋环境中微生物多样性较高,单一类型的杀生剂可能具有有限的抗菌效果。因此,可能需要使用多种杀生剂的混合物。在本研究中,通过将一种新设计的复合杀生剂(即百里酚和苄基二甲基十二烷基氯化铵的组合)应用于浸泡在含有来自淡水和左营港细菌菌株的接种物中的304不锈钢基材上,研究了其抗菌和防腐性能。通过扫描电子显微镜研究确定了3TB和5TB处理防止304不锈钢试片表面上的固着细胞和生物膜形成的能力。此外,共聚焦激光扫描显微镜表明,5TB处理在淡水和左营接种物中均实现了更大的杀菌效果。此外,电化学阻抗谱显示,在5TB处理下,奈奎斯特半圆的直径几乎完全不受淡水或左营的影响。通过这些抗菌活性和耐腐蚀性评估,证明5TB处理在台湾南部和北部海洋环境中对混合菌株均具有优异的杀菌活性。