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生物气溶胶源位置和吊扇方向对格栅式上部空间紫外线杀菌照射的影响

Influence of Bioaerosol Source Location and Ceiling Fan Direction on Eggcrate Upper-room Ultraviolet Germicidal Irradiation.

作者信息

Rahman Sumayah F, Rudnick Stephen N, Milonova Sonya P, McDevitt James J, Nardell Edward A

机构信息

Department of Environmental Health, Harvard School of Public Health, Boston, MA, USA.

Department of Environmental Health, Harvard School of Public Health, Boston, MA, USA ; Department of Medicine, Division of Global Health Equity, Brigham and Women's Hospital, Boston, MA, USA ; Department of Global Health and Social Medicine Harvard Medical School, Boston, MA, USA.

出版信息

Br J Appl Sci Technol. 2014 Sep;4(26):3856-3861. doi: 10.9734/BJAST/2014/11762. Epub 2014 Jul 20.

Abstract

BACKGROUND

Eggcrate upper-room ultraviolet germicidal irradiation (UVGI), an engineering control method for reducing the airborne transmission of infectious diseases, was recently developed as an alternative to conventional upper-room UVGI using conventional louvered fixtures. A UV screen, which is composed of open-cell eggcrate panels supported in a frame designed for a conventional suspended ceiling, was used to minimize UV radiation in the lower room. A ceiling fan, which was blowing upward directly above the microbiological source, provided vertical air exchange between the upper and lower room. This system has been shown to be significantly more effective than conventional upper-room UVGI.

STUDY DESIGN

In the present study, the microbiological source location and the airflow direction due to the ceiling fan were varied in order to evaluate their impact on germicidal efficacy.

RESULTS

The test results clearly showed that placing an aerosol source directly underneath an upward blowing ceiling fan produces the maximum efficacy.

CONCLUSIONS

The likely explanation for this outcome is that the fan sucks the microorganisms emitted by the source into the UV beam before being mixed with the air in the room. This is somewhat analogous to local exhaust ventilation in which the contaminant is removed prior to being mixed with the air in the room. Thus, when possible, the ceiling fan should be blowing upward and directly above the source. However, for experimental testing, the source location should be varied in order to access the range of germicidal efficacies that can be expected.

摘要

背景

蛋格状上部空间紫外线杀菌辐照(UVGI)是一种用于减少传染病空气传播的工程控制方法,它是最近开发出来的,可替代使用传统百叶窗式灯具的传统上部空间UVGI。一个紫外线防护屏由开放式蜂窝蛋格板组成,支撑在为传统吊顶设计的框架中,用于减少下部空间的紫外线辐射。一台吊扇直接在微生物源上方向上吹风,实现上下部空间之间的垂直空气交换。该系统已被证明比传统的上部空间UVGI更有效。

研究设计

在本研究中,改变了微生物源的位置以及吊扇产生的气流方向,以评估它们对杀菌效果的影响。

结果

测试结果清楚地表明,将气溶胶源直接放置在向上吹风的吊扇下方可产生最大效果。

结论

这一结果的可能解释是,风扇在微生物与室内空气混合之前,将源释放出的微生物吸入紫外线光束中。这在某种程度上类似于局部排风通风,即污染物在与室内空气混合之前就被去除。因此,只要有可能,吊扇应向上吹风且直接位于源的上方。然而,对于实验测试,应改变源的位置,以便了解预期的杀菌效果范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0bc/4652796/a2dc6543cabb/nihms710109f1.jpg

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