不同呼气活动下气溶胶排放的一种新方法-一项实验研究

IF 2.9 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
Ainara Ugarte-Anero, Unai Fernandez-Gamiz, Koldo Portal-Porras, Jose Manuel Lopez-Guede
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引用次数: 0

摘要

在大量通过空气传播的疾病之后,呼吸气溶胶的行为成为一个谜。目前的项目提出了一个实验分析,提供了不同呼吸作用后气溶胶呼出到环境中的特性的结果。这项研究涉及24名参与者(12名女性和12名男性),年龄在20到30岁之间。采用空气动力学粒度仪(APS)对个体的呼吸行为进行了分析。所设计的配置是基于通过漏斗收集气溶胶;本研究进行了设计、优化和研究。研究中选择的呼吸动作是呼吸、说话和咳嗽。作为一种新颖的方法,它分析了同一时期说话和咳嗽的结合所产生的声音,从而提供了个人在日常生活中所经历的真实情况的新数据。结果表明:咳嗽产生的气溶胶平均浓度最高,为9.039 cm−3;呼吸产生的气溶胶平均浓度次之,为1.493 cm−3;呼吸的呼气活动产生的平均质量浓度平均为1.295µg m−3,而咳嗽的作用将该值乘以10,得到的总质量为11.81µg m−3。两种呼吸动作的结合,如咳嗽和说话,在同一时期与仅仅说话相比,在粒子数量浓度和质量上都显示出非常相似的值。大小分布几乎重合,说明差异不大,咳嗽动作对90年代谈话占据较多空间的影响不大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel approach of aerosol emissions under different expiratory activities- an experimental study

The behavior of breathing aerosols has become an enigma after the large number of diseases that are transmitted by air. The current project presents an experimental analysis providing results on the characteristics of aerosols when exhaled into the environment after different respiratory actions. The study involved 24 participants (12 women and 12 men) aged between 20 and 30 years. The respiratory actions of the individuals were analyzed using the Aerodynamic Particle Sizer (APS). The designed configuration is based on the collection of aerosols by means of a funnel; designed, optimized and studied in this research. The respiratory actions chosen for the study were breathing, talking and coughing. As a novelty, the analysis of what is produced by the combination of talking and coughing in the same period is included, thus providing new data on real situations experienced by individuals in their daily lives. The results show that cough generates aerosols with an average particle concentration of 9.039 cm−3 being the highest mean value analyzed, followed by respiration with a value of 1.493 cm−3. The mean mass concentration generated in the expiratory activity of respiration generates an average of 1.295 µg m−3, while the action of coughing multiplies that value by ten obtaining a total mass of 11.81 µg m−3. The combination of two respiratory actions, such as coughing and talking in the same period compared to just talking, shows very similar values, both in particle number concentration and mass. The size distributions almost overlap, making it evident that there is not much difference and the coughing action hardly influences the 90 s period analyzed when talking occupies more space.

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来源期刊
Air Quality Atmosphere and Health
Air Quality Atmosphere and Health ENVIRONMENTAL SCIENCES-
CiteScore
8.80
自引率
2.00%
发文量
146
审稿时长
>12 weeks
期刊介绍: Air Quality, Atmosphere, and Health is a multidisciplinary journal which, by its very name, illustrates the broad range of work it publishes and which focuses on atmospheric consequences of human activities and their implications for human and ecological health. It offers research papers, critical literature reviews and commentaries, as well as special issues devoted to topical subjects or themes. International in scope, the journal presents papers that inform and stimulate a global readership, as the topic addressed are global in their import. Consequently, we do not encourage submission of papers involving local data that relate to local problems. Unless they demonstrate wide applicability, these are better submitted to national or regional journals. Air Quality, Atmosphere & Health addresses such topics as acid precipitation; airborne particulate matter; air quality monitoring and management; exposure assessment; risk assessment; indoor air quality; atmospheric chemistry; atmospheric modeling and prediction; air pollution climatology; climate change and air quality; air pollution measurement; atmospheric impact assessment; forest-fire emissions; atmospheric science; greenhouse gases; health and ecological effects; clean air technology; regional and global change and satellite measurements. This journal benefits a diverse audience of researchers, public health officials and policy makers addressing problems that call for solutions based in evidence from atmospheric and exposure assessment scientists, epidemiologists, and risk assessors. Publication in the journal affords the opportunity to reach beyond defined disciplinary niches to this broader readership.
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