中国科学院电工研究所,北京,100190
纸质出版:2025
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邵涛, 窦立广, 张帅, 等. 等离子体在环境病原微生物消杀中的应用[J]. 高电压技术, 2025,51(6):2830-2849.
SHAO Tao, DOU Liguang, ZHANG Shuai, et al. Applications of Plasma Technology for Microbial Inactivation and Environmental Disinfection[J]. 2025, 51(6): 2830-2849.
邵涛, 窦立广, 张帅, 等. 等离子体在环境病原微生物消杀中的应用[J]. 高电压技术, 2025,51(6):2830-2849. DOI: 10.13336/j.1003-6520.hve.20241721.
SHAO Tao, DOU Liguang, ZHANG Shuai, et al. Applications of Plasma Technology for Microbial Inactivation and Environmental Disinfection[J]. 2025, 51(6): 2830-2849. DOI: 10.13336/j.1003-6520.hve.20241721.
近年来,等离子体技术在环境病原微生物消杀领域迅速发展,具有良好的应用前景。该文首先介绍了低温等离子体产生原理、物理特性,其次介绍了等离子体对细菌、真菌、病毒等不同病原微生物的灭活效果以及影响灭活效果的相关因素,并分析了等离子体在微生物灭活过程中的物理化学机制、细胞生物学机制以及两者的协同机制。此外,讨论了等离子体在微生物灭活及环境消毒中的实际应用,包括对大气环境、医疗器械、伤口及皮肤表面、口腔等。最后针对当前等离子体消毒杀菌技术研究现状和存在问题做出了分析,展望了等离子体技术在微生物灭活与环境消毒杀菌应用中的发展趋势和潜力。
Recently
plasma technology has rapidly developed in the field of pathogenic microorganism inactivation and environmental disinfection
showing promising application prospects. This paper first introduces the generation principles and physical properties of low-temperature plasma
and then discusses the inactivation effect of plasma on different pathogenic microorganisms such as bacteria
fungi
and viruses
as well as the factors influencing these effects. This paper also analyzes the physical-chemical mechanisms
cell-biological mechanisms
and their synergistic effects of both. Furthermore
the practical applications of plasma in microbial inactivation and environmental disinfection are discussed
including atmospheric environment
medical devices
wounds and skin surface
and oral cavity. Finally
this paper analyzes the current research status
existing problems
and future development trends and potential of plasma disinfection and sterilization technology.
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