Gu Yu, Xiao Furen, Luo Liumin, Zhou Xiaoyu, Zhou Xiaodong, Li Jin, Li Zhi
School of Mechanical and Eletrical Engineering, Zhoukou Normal University, Zhoukou 466000, China.
College of Materials Science and Engineering and State Key Laboratory of Metastable Materials Science and Technology, Yanshan University, Qinhuangdao 066004, China.
Nanomaterials (Basel). 2019 Dec 19;10(1):18. doi: 10.3390/nano10010018.
Many disinfection technologies have emerged recently in water treatment industry, which are designed to inactivate water pathogens with extraordinary efficiency and minimum side effects and costs. Current disinfection processes, including chlorination, ozonation, UV irradiation, and so on, have their inherent drawbacks, and have been proven ineffective under certain scenarios. Bacterial inactivation by noble metals has been traditionally used, and copper is an ideal candidate as a bactericidal agent owing to its high abundance and low cost. Building on previous findings, we explored the bactericidal efficiency of Cu(I) and attempted to develop it into a novel water disinfection platform. Nanosized copper ferrite was synthesized, and it was reduced by hydroxylamine to form surface bound Cu(I) species. Our results showed that the generated Cu(I) on copper ferrite surface could inactivate at a much higher efficiency than Cu(II) species. Elevated reactive oxygen species' content inside the cell primarily accounted for the strong bactericidal role of Cu(I), which may eventually lead to enhanced oxidative stress towards cell membrane, DNA, and functional proteins. The developed platform in this study is promising to be integrated into current water treatment industry.
近年来,水处理行业涌现出许多消毒技术,这些技术旨在以极高的效率、最小的副作用和成本使水中的病原体失活。目前的消毒工艺,包括氯化、臭氧化、紫外线照射等,都有其固有的缺点,并且在某些情况下已被证明无效。传统上,贵金属用于细菌灭活,而铜因其含量丰富且成本低,是一种理想的杀菌剂。基于先前的研究结果,我们探索了Cu(I)的杀菌效率,并试图将其发展成为一种新型的水消毒平台。合成了纳米尺寸的铜铁氧体,并通过羟胺将其还原,形成表面结合的Cu(I)物种。我们的结果表明,铜铁氧体表面生成的Cu(I)比Cu(II)物种具有更高的灭活效率。细胞内活性氧含量的升高主要是Cu(I)强大杀菌作用的原因,这最终可能导致对细胞膜、DNA和功能蛋白的氧化应激增强。本研究中开发的平台有望集成到当前的水处理行业中。