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远紫外线光对管道气流中空气传播微生物的单次消毒性能评估

Evaluation of Single-Pass Disinfection Performance of Far-UVC Light on Airborne Microorganisms in Duct Flows.

作者信息

Zhang Huihui, Lai Alvin C K

机构信息

Department of Architecture and Civil Engineering, City University of Hong Kong, Tat Chee Avenue, Kowloon, Hong Kong00000, China.

出版信息

Environ Sci Technol. 2022 Dec 20;56(24):17849-17857. doi: 10.1021/acs.est.2c04861. Epub 2022 Dec 5.

Abstract

Far-UVC irradiation (222 nm) is considered an emerging and sustainable solution for future infection and pandemic challenges. We examined the disinfection performance of a krypton-chloride lamp, with a quasi-monochromatic UVC peak at 222 nm, for inactivating airborne microorganisms in a full-scale ventilation duct system. Single-pass disinfection efficacy of far-UVC was determined and compared with that of a conventional mercury-type UVC (254 nm) lamp. Four bacteria, (), (), , and (), as well as bacteriophage P22, were tested under UV exposure with different velocities of duct flows. The data revealed that as the air velocity increased from 0.7 to 4 m/s, the far-UVC disinfection efficacies would decrease by 42, 47, 35, 39, and 33% for these five microorganisms, respectively. The inactivation rate constants to far-UVC light were 4.9, 7.5, 3.3, 6.3, and 3.0 cm/mJ for aerosolized , , , , and bacteriophage P22, respectively. Far-UVC irradiation showed a comparable disinfection ability on airborne microorganisms compared with the 254 nm UV irradiation. This first study of far-UVC in real duct applications provides a better understanding of the disinfection performance of this solution in bioaerosol inactivation. It offers a valuable database in the sizing and design of excimer lamps for novel portable air purifiers or in-duct disinfection units.

摘要

远紫外线C(222纳米)照射被认为是应对未来感染和大流行挑战的一种新兴且可持续的解决方案。我们研究了一种氪氯灯的消毒性能,其准单色紫外线C峰值在222纳米,用于在全尺寸通风管道系统中灭活空气传播的微生物。测定了远紫外线C的单程消毒效果,并与传统汞型紫外线C(254纳米)灯进行了比较。在不同管道流速的紫外线照射下,测试了四种细菌([细菌名称1]、[细菌名称2]、[细菌名称3]和[细菌名称4])以及噬菌体P22。数据显示,随着空气流速从0.7米/秒增加到4米/秒,这五种微生物的远紫外线C消毒效果分别会降低42%、47%、35%、39%和33%。雾化的[细菌名称1]、[细菌名称2]、[细菌名称3]、[细菌名称4]和噬菌体P22对远紫外线C光的灭活速率常数分别为4.9、7.5、3.3、6.3和3.0厘米/毫焦。与254纳米紫外线照射相比,远紫外线C照射对空气传播微生物显示出相当的消毒能力。这项关于远紫外线C在实际管道应用中的首次研究,让我们更好地了解了该解决方案在生物气溶胶灭活方面的消毒性能。它为新型便携式空气净化器或管道内消毒装置的准分子灯尺寸确定和设计提供了有价值的数据库。

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