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使用生物气溶胶挑战对移动空气净化设备进行基于房间的评估。

Room-Based Assessment of Mobile Air Cleaning Devices Using a Bioaerosol Challenge.

作者信息

Beswick Alan, Brookes Jodi, Rosa Iwona, Bailey Claire, Beynon Charlotte, Stagg Stephen, Bennett Neil

机构信息

Health and Safety Executive Science and Research Centre, Buxton, United Kingdom.

The Animal & Plant Health Agency, Addlestone, United Kingdom.

出版信息

Appl Biosaf. 2023 Mar 1;28(1):1-10. doi: 10.1089/apb.2022.0028. Epub 2023 Mar 6.

Abstract

INTRODUCTION

The widespread transmission of the SARS-CoV-2 virus has increased scientific and societal interest in air cleaning technologies, and their potential to mitigate the airborne spread of microorganisms. Here we evaluate room scale use of five mobile air cleaning devices.

METHODS

A selection of air cleaners, containing high efficiency filtration, was tested using an airborne bacteriophage challenge. Assessments of bioaerosol removal efficacy were undertaken using a decay measurement approach over 3 h, with air cleaner performance compared with bioaerosol decay rate without an air cleaner in the sealed test room. Evidence of chemical by-product emission was also checked, as were total particle counts.

RESULTS

Bioaerosol reduction, exceeding natural decay, was observed for all air cleaners. Reductions ranged between devices from <2-log per m room air for the least effective, to a >5-log reduction for the most efficacious systems. One system generated detectable ozone within the sealed test room, but ozone was undetectable when the system was run in a normally ventilated room. Total particulate air removal trends aligned with measured airborne bacteriophage decline.

DISCUSSION

Air cleaner performance differed, and this could relate to individual air cleaner flow specifications as well as test room conditions, such as air mixing during testing. However, measurable reductions in bioaerosols, beyond natural airborne decay rate, were observed.

CONCLUSION

Under the described test conditions, air cleaners containing high efficiency filtration significantly reduced bioaerosol levels. The best performing air cleaners could be investigated further with improved assay sensitivity, to enable measurement of lower residual levels of bioaerosols.

摘要

引言

严重急性呼吸综合征冠状病毒2(SARS-CoV-2)病毒的广泛传播增加了科学界和社会对空气净化技术及其减轻微生物空气传播潜力的兴趣。在此,我们评估了五种移动空气净化设备在房间规模下的使用情况。

方法

选用了含有高效过滤器的空气净化器,通过空气传播噬菌体攻击进行测试。采用衰减测量方法在3小时内评估生物气溶胶去除效果,将空气净化器的性能与密封测试房间中无空气净化器时生物气溶胶的衰减率进行比较。还检查了化学副产物排放的证据以及总颗粒计数。

结果

所有空气净化器均观察到生物气溶胶减少,超过自然衰减。各设备的减少幅度有所不同,效果最差的设备每立方米室内空气减少量小于2个对数,而最有效的系统减少量大于5个对数。一个系统在密封测试房间内产生了可检测到的臭氧,但在正常通风房间运行该系统时未检测到臭氧。总颗粒空气去除趋势与测得的空气传播噬菌体下降情况一致。

讨论

空气净化器的性能存在差异,这可能与单个空气净化器的流量规格以及测试房间条件有关,例如测试期间的空气混合情况。然而,观察到生物气溶胶有可测量的减少,超过了自然空气衰减率。

结论

在所描述的测试条件下,含有高效过滤器的空气净化器显著降低了生物气溶胶水平。性能最佳的空气净化器可通过提高检测灵敏度进行进一步研究,以能够测量更低的生物气溶胶残留水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de90/9991428/615adc015944/apb.2022.0028_figure1.jpg

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