大气压等离子体
等离子体
紫外线
病毒
大气压力
材料科学
环境科学
活性氮物种
纳米技术
活性氧
化学
病毒学
光电子学
生物
气象学
物理
生物化学
量子力学
作者
Cuntao Lan,Haiwei Zhu,Shenghua Wang,Lanlan Nie,Dawei Liu,Qi Shi,Xinpei Lu
标识
DOI:10.1002/ppap.202300183
摘要
Abstract In recent years, the outbreaks of viral diseases have urgently demanded effective virus disinfection techniques. Among them, the use of cold atmospheric‐pressure plasma (CAP) is one of the most promising approaches. CAP generates electric fields, charged particles, reactive oxygen and nitrogen species, and ultraviolet. CAP can effectively inactivate various viruses in a short period, whether they are on surfaces, in water, or in aerosols, without significantly raising the substrate temperature. This review highlights that the simultaneous action of physical and chemical means is the key mechanism of CAP in virus inactivation. It systematically summarizes the characteristics of plasma devices suitable for different application scenarios and further points out the opportunities and challenges faced by plasma virus inactivation technology.
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