Xue Yunsheng, Ding Cheng, Gong Li, Teng Yingxue, Guo Jing, Chen Shanshan
School of Materials and Metallurgy, University of Science and Technology Liaoning, Anshan 114051, China.
Shi-Changxu Innovation Center for Advanced Materials, Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China.
Materials (Basel). 2024 Dec 3;17(23):5921. doi: 10.3390/ma17235921.
In this paper, two kinds of copper-containing steels with copper contents of 2.31 and 6.01 wt.% were designed. By comparing with commercial Q355, the bactericidal properties of copper in seawater containing sulfate-reducing bacteria (SRB) and its influence on the corrosion process of steel were revealed. The corrosion rate, morphology of products, and bactericidal action of copper were tracked by scanning electron microscopy, X-ray diffraction, confocal microscopy, and electrochemical analysis techniques. It was found that the resistance of copper-containing steel to bacterial corrosion was obviously better than that of non-copper-containing steel. At 28 days, the weight loss rates in the SRB environment for 0Ni2Cu6 samples increased by merely 5.43%, which was nearly half that of Q355 of 9.75%. Cu-containing steels exhibited potent antibacterial action, with the ε-Cu phase altering the corrosion byproduct composition from brittle flakes to robust particles and inhibiting the production of HS. The killed bacteria adhered to the surface of the steel and slowed down the corrosion of the steel. The confocal laser scanning microscope and electrochemical experiments showed that a dense CuFeO film formed on the substrate, impeding corrosive ion penetration, and an upsurge in Cu content markedly enhanced the material's anti-corrosion and antimicrobial attributes.
本文设计了两种铜含量分别为2.31 wt.%和6.01 wt.%的含铜钢。通过与商用Q355进行对比,揭示了铜在含硫酸盐还原菌(SRB)海水中的杀菌性能及其对钢腐蚀过程的影响。利用扫描电子显微镜、X射线衍射、共聚焦显微镜和电化学分析技术跟踪了铜的腐蚀速率、产物形态和杀菌作用。结果表明,含铜钢对细菌腐蚀的抗性明显优于不含铜钢。在28天时,0Ni2Cu6样品在SRB环境中的失重率仅增加了5.43%,几乎是Q355失重率9.75%的一半。含铜钢表现出强大的抗菌作用,ε-Cu相将腐蚀副产物的组成从脆性薄片改变为坚固颗粒,并抑制了HS的产生。被杀灭的细菌附着在钢表面,减缓了钢的腐蚀。共聚焦激光扫描显微镜和电化学实验表明,在基体上形成了致密的CuFeO膜,阻碍了腐蚀性离子的渗透,铜含量的增加显著增强了材料的防腐和抗菌性能。