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Methodology for determining the susceptibility of airborne microorganisms to irradiation by an upper-room UVGI system

机译:用于测定空气中微生物敏感到上室UVGI系统辐射的方法

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摘要

Whilst a number of researchers have demonstrated the disinfection effectiveness of upper-room UV irradiationuddevices against a range of airborne microorganisms, it is technically difficult to determine the performance of suchudsystems because the biological and physical processes involved can be complex. In particular, most of the quantitative data on the susceptibility of airborne microorganisms to UV irradiation is obtained from single-pass experiments which are not representative of the fragmented UV exposure experienced by airborne microorganisms in real rooms. This paper presents complete and partial mixing models for predicting an effective UV susceptibility constant, Zeff, that is appropriate for quantifying the behaviour of airborne microorganisms when irradiated using an upper-room system. The use of both decay and continuous contamination experimental techniques are discussed and related to the models presented. Experimental results are presented which indicate that Zeff for Serratia marcescens is up to an order of magnitude lower than the susceptibility constants derived from single-pass experiments, suggesting that using these data to design upper-room UV systems may lead to a lower than expected performance.ud
机译:尽管许多研究人员已经证明了上层紫外线照射设备对多种空气传播微生物的消毒效果,但是由于涉及的生物学和物理过程可能很复杂,因此在技术上很难确定此类系统的性能。特别是,大多数有关空气中微生物对UV辐射敏感性的定量数据是通过单次通过实验获得的,这些数据不能代表实际房间中空气中微生物经历的零碎紫外线暴露。本文介绍了用于预测有效紫外线敏感性常数Zeff的完整和部分混合模型,该模型适用于量化使用上层系统进行辐照时空气中微生物的行为。讨论了衰减和连续污染实验技术的使用,并与提出的模型有关。实验结果表明,粘质沙雷氏菌的Zeff比单程实验得出的磁化常数低一个数量级,这表明使用这些数据设计上层紫外线系统可能会导致性能低于预期。 。 ud

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