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Effect of Relative Humidity on the Inactivation of Airborne Serratia marcescens by Ultraviolet Radiation

机译:相对湿度对紫外线致死粘质沙雷氏菌失活的影响

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Apparatus was designed and constructed in which a bacterial aerosol of known age, particle size, and relative humidity (RH) could be exposed to ultraviolet (UV) radiation of measured intensity for a given period of time and then be sampled quantitatively. Aerosols of Serratia marcescens were exposed to UV dosages between 96.0 and 0.75 (μw-sec)/cm2 at humidities ranging from 25 to 90%. A sharp decline in the fraction of organisms killed was found at RH values above 60 to 70%. Above 80% RH, there was evidence for reactivation induced by UV. The plot of “log fraction organisms remaining” versus UV dose was curvilinear, suggesting noncompliance with the monomolecular law of reaction velocity, but the Bunsen-Roscoe law of reciprocity between time and intensity of UV exposure was demonstrated to hold. These results could be accounted for by postulating the presence in the aerosol of two populations of organisms with different sensitivities to UV, each individually obeying the monomolecular law of reaction velocity. The data amplify existing information on the relationship between UV disinfection of airborne organisms and RH. In the middle range of humidities, the sensitivity of the organisms to UV was greater than would be expected from published reports.
机译:设计并构造了一种设备,其中可以将已知年龄,粒径和相对湿度(RH)的细菌气溶胶暴露于一定强度的紫外线(UV)辐射中一段给定的时间,然后进行定量采样。粘质沙雷氏菌的气溶胶在25%至90%的湿度下暴露于96.0至0.75(μw-sec)/ cm2的紫外线剂量下。在RH值超过60%至70%时,发现杀死的生物比例急剧下降。相对湿度高于80%时,有证据表明紫外线会引起活化。 “剩余对数分数生物”对紫外线剂量的曲线是曲线的,表明不符合反应速度的单分子定律,但事实证明,时间和紫外线强度之间的互易性的本生-罗斯科定律成立。这些结果可以通过假设两个对紫外线具有不同敏感性的生物在气溶胶中的存在来解释,每个生物分别遵循反应速度的单分子定律。数据放大了有关机载微生物的紫外线消毒与相对湿度之间关系的现有信息。在中等湿度范围内,生物体对紫外线的敏感性比已发表的报告所预期的要高。

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