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Study on the decay characteristics and transmission risk of respiratory viruses on the surface of objects

机译:物体表面呼吸道病毒的衰减特性及传播风险研究

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摘要

The complex and changeable environment is a brand-new living condition for the viruses and pathogens released by the infected people to the indoor air or deposited on the surface of objects, which is an important external condition affecting the decay and transmission risk of the viruses. Exposure to contaminated surfaces is one of the main routes of respiratory diseases transmission. Therefore, it is very important for epidemic prevention and control to study the law of virus decay and the environmental coupling effect on various surfaces. Based on the analysis of the influencing mechanism, a large amount of experimental evidence on the survival of viruses on the surface of objects were excavated in this paper, and the effects of various factors, such as surface peripheral temperature, relative humidity, virus-containing droplet volume, surface materials and virus types, on the decay rate constants of viruses were comprehensively analyzed. It was found that although the experimental methods, virus types and experimental conditions varied widely in different experiments, the virus concentrations on the surface of objects all followed the exponential decay law, and the coupling effect of various factors was reflected in the decay rate constant k. Under different experimental conditions, k values ranged from 0.001 to 100 h~(-1), with a difference of 5 orders of magnitude, corresponding to the characteristic time t_(99) between 500 and 0.1 h when the virus concentration decreased by 99%. This indicates a large variation in the risk of virus transmission in different scenarios. By revealing the common law and individuality of the virus decay on the surface of objects, the essential relationship between the experimental observation phenomenon and virus decay was analyzed. This paper points out the huge difference in virus transmission risk on the surface at different time nodes, and discusses the prevention and control strategies to grasp the main contradictions in the different situations.
机译:复杂且变化的环境是受感染的人群到室内空气或沉积在物体表面上的病毒和病原体的一种全新的生命条件,这是影响病毒衰减和传动风险的重要外部条件。暴露于污染的表面是呼吸系统疾病传输的主要途径之一。因此,对疫情和控制来研究病毒衰减定律以及对各种表面的环境偶联作用非常重要。基于对影响机制的分析,在本文中挖掘出物体表面上病毒存活的大量实验证据,以及各种因素,如表面外周温度,相对湿度,含病毒的影响液滴体积,表面材料和病毒类型,对病毒的衰减率常数进行了综合分析。结果发现,尽管在不同实验中的实验方法,病毒类型和实验条件广泛变化,但对象表面上的病毒浓度随之而来的是指数衰减律,各种因素的耦合效果反映在衰减率常数K中反映。在不同的实验条件下,k值范围为0.001至100h〜(-1),差异为5个数量级,当病毒浓度减少99%时,对应于500和0.1小时的特征时间t_(99) 。这表明在不同场景中病毒传输风险的大变化。通过揭示病毒衰减对物体表面的普通法和个性,分析了实验观察现象与病毒衰变之间的基本关系。本文指出了不同时间节点的表面上病毒传输风险的巨大差异,并讨论了预防和控制策略,以掌握不同情况下的主要矛盾。

著录项

  • 来源
    《Environmental research》 |2021年第3期|110716.1-110716.10|共10页
  • 作者单位

    MOE Key Laboratory of Deep Earth Science and Engineering College of Architecture and Environment Sichuan University Chengdu China;

    MOE Key Laboratory of Deep Earth Science and Engineering College of Architecture and Environment Sichuan University Chengdu China;

    Institute for Disaster Management and Reconstruction Sichuan University Chengdu China;

    Institute for Disaster Management and Reconstruction Sichuan University Chengdu China;

    MOE Key Laboratory of Deep Earth Science and Engineering College of Architecture and Environment Sichuan University Chengdu China;

    Department of Solid Waste Treatment Technology Sichuan Environmental Protection Key Laboratory of Pollution Control for Heavy Metals Sichuan Academy of Environmental Sciences Chengdu China;

    MOE Key Laboratory of Deep Earth Science and Engineering College of Architecture and Environment Sichuan University Chengdu China Institute for Disaster Management and Reconstruction Sichuan University Chengdu China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Surface contamination; Survival; Decay rate constant; Transmission risk; Infectivity;

    机译:表面污染;生存;衰减率常数;传输风险;感染性;
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