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空气消毒方法综述以及将空气传播病毒的热灭活作为一种生活方式和抗击大流行手段的建议。

Review of air disinfection approaches and proposal for thermal inactivation of airborne viruses as a life-style and an instrument to fight pandemics.

作者信息

Vlaskin Mikhail S

机构信息

Joint Institute for High Temperatures of the Russian Academy of Sciences, 13/2 Izhorskaya St, Moscow 125412, Russia.

出版信息

Appl Therm Eng. 2022 Feb 5;202:117855. doi: 10.1016/j.applthermaleng.2021.117855. Epub 2021 Nov 29.

Abstract

COVID-19 (Coronavirus Disease 2019) pandemic highlighted the importance of air biosecurity because SARS-CoV-2 is mainly transmitted from person to person via airborne droplets. Preventing infectious droplets from entering the body is one of the best ways to protect against infection. This paper reviews the transmission patterns of airborne pathogens and air disinfection methods. A particular emphasis is put on studies devoted to the thermal inactivation of viruses. These reviews reveal that air heat treatment has not been seriously considered as a possible air disinfection approach. Simple calculations show that the energy input required for thermal disinfection of human's air daily consumption is almost the same as for daily water consumption (by heat treatment from room temperature to 100 °C). Moreover, it is possible to organize a continuous heat recovery from the air already heated during disinfection to the inlet air, thus significantly increasing the energy efficiency. Therefore, I propose a solution for the thermal inactivation of airborne pathogens based on air heating and its subsequent cooling in a heat exchanger with heat recovery. Such a solution could be used to create mobile personal and stationary indoor air disinfectors, as well as heating, ventilation, and air conditioning systems. Thermal disinfection of air to breathe might one day be part of people's daily life like thermal disinfection of drinking water. Aside from limiting infectious disease transmission, thermal inactivation might be the basis for developing inhaled vaccines using thermally inactivated whole pathogens.

摘要

2019冠状病毒病(COVID-19)大流行凸显了空气生物安全的重要性,因为严重急性呼吸综合征冠状病毒2(SARS-CoV-2)主要通过空气飞沫在人与人之间传播。防止感染性飞沫进入人体是预防感染的最佳方法之一。本文综述了空气传播病原体的传播模式和空气消毒方法。特别强调了致力于病毒热灭活的研究。这些综述表明,空气热处理尚未被认真视为一种可能的空气消毒方法。简单计算表明,对人类每日空气消耗量进行热消毒所需的能量输入几乎与每日水消耗量(从室温加热到100°C)相同。此外,有可能将消毒过程中已加热的空气的热量持续回收至进气,从而显著提高能源效率。因此,我提出了一种基于空气加热及其在具有热回收功能的热交换器中随后冷却的空气传播病原体热灭活解决方案。这样的解决方案可用于制造移动个人和固定式室内空气消毒器,以及供暖、通风和空调系统。对呼吸空气进行热消毒可能有一天会像对饮用水进行热消毒一样成为人们日常生活的一部分。除了限制传染病传播外,热灭活可能是开发使用热灭活全病原体的吸入式疫苗的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fc5/8628600/df481a08612d/gr1_lrg.jpg

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