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利用非热等离子体技术灭活空气中病毒的研究进展:从 MS2 到冠状病毒。

Review on inactivation of airborne viruses using non-thermal plasma technologies: from MS2 to coronavirus.

机构信息

Laboratoire Energie, Eau, Environnement Et Procèdes, ENIG, Université de Gabès, LR18ES356072, Gabès, Tunisia.

Department of Chemistry, Imam Mohammad Ibn Saud Islamic University (IMSIU), P.O. Box 5701, 11432, Riyadh, Saudi Arabia.

出版信息

Environ Sci Pollut Res Int. 2022 Jan;29(4):4880-4892. doi: 10.1007/s11356-021-17486-3. Epub 2021 Nov 18.

Abstract

Although several non-thermal plasmas (NTPs) technologies have been widely investigated in air treatment, very few studies have focused on the inactivation mechanism of viruses by NTPs. Due to its efficiency and environmental compatibility, non-thermal plasma could be considered a promising virus-inactivation technology. Plasma is a partly or fully ionized gas including some species (i.e., electrons, free radicals, ions, and neutral molecules) to oxidize pollutants or inactivate harmful organisms. Non-thermal plasmas are made using less energy and have an active electron at a much higher temperature than bulk gas molecules. This review describes NTPs for virus inactivation in indoor air. The different application processes of plasma for microorganism inactivation at both laboratory and pilot-scale was also reviewed This paper reports on recent advances in this exciting area of viral inactivation identifying applications and mechanisms of inactivation, and summarizing the results of the latest experiments in the literature. Moreover, special attention was paid to the mechanism of virus inactivation. Finally, the paper suggests research directions in the field of airborne virus inactivation using non-thermal plasma.

摘要

虽然几种非热等离子体(NTP)技术已在空气处理中得到广泛研究,但很少有研究关注 NTP 对病毒的灭活机制。由于其效率和环境相容性,非热等离子体可以被认为是一种有前途的病毒灭活技术。等离子体是部分或完全电离的气体,包括一些物质(如电子、自由基、离子和中性分子),用于氧化污染物或灭活有害生物。非热等离子体使用较少的能量,并具有比大量气体分子高得多的活性电子温度。本综述描述了用于室内空气中病毒灭活的 NTP。还回顾了等离子体在实验室和中试规模下用于微生物灭活的不同应用过程。本文报告了在病毒灭活这一令人兴奋的领域的最新进展,确定了灭活的应用和机制,并总结了文献中最新实验的结果。此外,特别关注了病毒灭活的机制。最后,本文提出了使用非热等离子体进行空气传播病毒灭活领域的研究方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6704/8601095/762d93d8f746/11356_2021_17486_Fig1_HTML.jpg

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