How do material characteristics and antimicrobial mechanisms affect microbial control and water disinfection performance of metal nanoparticles?

IF 2.3 Q3 ENVIRONMENTAL SCIENCES
Jinghan Zhao, Peihua Yan, Aizaz Qureshi, C. Yi
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引用次数: 0

Abstract

Nanotechnology has been rapidly developing in the past decade, and metal nanomaterials have shown promising improvement in microbial control. Metal nanoparticles have been applied in medical settings for adequate disease spread control and to overcome the challenges of multidrug-resistant microorganisms. Recently, the demand for safe water supply has increased, requiring higher sanitation of the water treatment technology as well as being environmentally sustainable. However, the employed water disinfection technologies cannot meet the elevated demand due to limitations including chemical byproducts, immobility, energy consumption, etc. Metal nanomaterials are considered to be an alternative disinfection technology considering their high efficiency, mobility, and stability. A significant amount of research has been carried out on enhancing the antimicrobial efficiency of metal nanomaterials and determining the underlying antimicrobial mechanisms. This paper provides an overview of emerging metal nanomaterials development, including the synthesis method, material characteristics, disinfection performance, environmental factors, potential mechanism, limitations, and future opportunities in the water disinfection process.
材料特性和抗菌机制如何影响金属纳米颗粒的微生物控制和水消毒性能?
在过去的十年里,纳米技术得到了快速发展,金属纳米材料在微生物控制方面表现出了很好的改善。金属纳米颗粒已被应用于医疗环境中,以充分控制疾病传播并克服耐多药微生物的挑战。最近,对安全供水的需求增加了,要求水处理技术具有更高的卫生条件,并具有环境可持续性。然而,由于化学副产品、固定性、能耗等限制,所采用的水消毒技术无法满足日益增长的需求。考虑到金属纳米材料的高效性、流动性和稳定性,金属纳米材料被认为是一种替代消毒技术。在提高金属纳米材料的抗菌效率和确定潜在的抗菌机制方面,已经进行了大量的研究。本文概述了新兴金属纳米材料的发展,包括合成方法、材料特性、消毒性能、环境因素、潜在机制、局限性以及水消毒过程中的未来机遇。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Blue-Green Systems
Blue-Green Systems Multiple-
CiteScore
8.70
自引率
0.00%
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