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用于水消毒和微生物控制的抗菌纳米材料:潜在应用与影响

Antimicrobial nanomaterials for water disinfection and microbial control: potential applications and implications.

作者信息

Li Qilin, Mahendra Shaily, Lyon Delina Y, Brunet Lena, Liga Michael V, Li Dong, Alvarez Pedro J J

机构信息

Department of Civil and Environmental Engineering, Rice University, 6100 Main Street, Houston, TX 77005, USA.

出版信息

Water Res. 2008 Nov;42(18):4591-602. doi: 10.1016/j.watres.2008.08.015. Epub 2008 Aug 27.

Abstract

The challenge to achieve appropriate disinfection without forming harmful disinfection byproducts by conventional chemical disinfectants, as well as the growing demand for decentralized or point-of-use water treatment and recycling systems calls for new technologies for efficient disinfection and microbial control. Several natural and engineered nanomaterials have demonstrated strong antimicrobial properties through diverse mechanisms including photocatalytic production of reactive oxygen species that damage cell components and viruses (e.g. TiO2, ZnO and fullerol), compromising the bacterial cell envelope (e.g. peptides, chitosan, carboxyfullerene, carbon nanotubes, ZnO and silver nanoparticles (nAg)), interruption of energy transduction (e.g. nAg and aqueous fullerene nanoparticles (nC(60))), and inhibition of enzyme activity and DNA synthesis (e.g. chitosan). Although some nanomaterials have been used as antimicrobial agents in consumer products including home purification systems as antimicrobial agents, their potential for disinfection or microbial control in system level water treatment has not been carefully evaluated. This paper reviews the antimicrobial mechanisms of several nanoparticles, discusses their merits, limitations and applicability for water disinfection and biofouling control, and highlights research needs to utilize novel nanomaterials for water treatment applications.

摘要

传统化学消毒剂在实现适当消毒的同时又不形成有害消毒副产物面临挑战,以及对分散式或使用点水处理和循环系统的需求不断增加,这就需要高效消毒和微生物控制的新技术。几种天然和工程纳米材料已通过多种机制表现出强大的抗菌性能,包括光催化产生活性氧来破坏细胞成分和病毒(如二氧化钛、氧化锌和富勒醇)、破坏细菌细胞壁(如肽、壳聚糖、羧基富勒烯、碳纳米管、氧化锌和银纳米颗粒(nAg))、中断能量转导(如nAg和水溶性富勒烯纳米颗粒(nC(60)))以及抑制酶活性和DNA合成(如壳聚糖)。尽管一些纳米材料已在包括家用净化系统在内的消费品中用作抗菌剂,但其在系统级水处理中进行消毒或微生物控制的潜力尚未得到仔细评估。本文综述了几种纳米颗粒的抗菌机制,讨论了它们在水消毒和生物污垢控制方面的优点、局限性和适用性,并强调了利用新型纳米材料进行水处理应用的研究需求。

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