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Microorganisms inactivation by continuous and pulsed irradiation of ultraviolet light-emitting diodes (UV-LEDs)

机译:微生物通过连续和脉冲照射紫外发光二极管(UV-LED)而灭活

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摘要

Ultraviolet light-emitting diode (UV-LED) is an emerging UV source and has a number of features that do not exist in conventional mercury based UV lamps. One such feature is the ability to turn the radiation on and off with a high frequency, which enables pulsed irradiation with flexible pulse patterns by UV-LEDs. In this study, the inactivation of different microorganisms by continuous and pulsed irradiation was investigated using UV-LEDs, in order to utilize this unique feature to distinguish the effect of pulsation on inactivation, and to explore the potential benefits of UV-LEDs pulsed irradiation for water disinfection. The analysis was based on the equivalent UV fluence between continuous and pulsed irradiation using two types of actinometry techniques (iodide-iodate and ferrioxalate) for UV fluence determination. The disinfection study involved the inactivation of E. coli and coliphage MS2 in laboratory water, as well as E. coli and total coliform in wastewater. The effects of pulse patterns including frequency (i.e., the number of on-off cycles per second) and duty rate (i.e., the percentage of irradiation time in each on-off cycle) on the inactivation effectiveness were also examined for these microorganisms. The results showed comparable inactivation of all the examined microorganisms by 265 nm UV-LED continuous and pulsed irradiation with various pulse patterns under equivalent UV fluence. The findings in this study were compared with those from conventional xenon lamps pulsed irradiation studies, which not only distinguished the role of pulsed UV irradiation on microorganisms inactivation, but also revealed a key feature of UV-LEDs pulsed irradiation with respect to improved thermal management, potentially affecting application of high output UV-LEDs for water disinfection.
机译:紫外光发光二极管(UV-LED)是新兴的UV源,并且具有在基于常规的汞的UV灯中不存在的许多特征。一个这样的特征是能够以高频打开和关闭辐射,这使得通过UV-LED能够通过柔性脉冲图案脉冲照射。在该研究中,使用UV-LED研究了通过连续和脉冲照射的不同微生物的灭活,以利用这种独特的特征来区分脉动对失活的影响,并探讨UV-LED脉冲照射的潜在益处水消毒。通过使用两种类型的辐射测定技术(碘化物 - 碘酸盐和甲酸盐)来基于连续和脉冲辐射之间的等效UV注量来基于用于UV注量的紫外线测定。消毒研究涉及在实验室水中的大肠杆菌和COLIPHAGE MS2的灭活,以及大肠杆菌和废水中的总大肠杆菌。对于这些微生物,还检查了这些微生物的脉冲模式包括频率(即,每秒下关节周期的数量)和占空比的占率的占率的占率的效率(即,每个接通循环中的辐射时间的百分比)。结果表明,在等效紫外线下,所有检查的微生物的所有检查的微生物的灭活是相当的265nm-LED连续和脉冲照射。将本研究中的研究结果与传统的氙灯脉冲辐照研究进行了比较,这不仅可以区分脉冲紫外线辐射对微生物的作用,而且还揭示了UV-LED脉冲相对于改善的热管理的关键特征,潜在地影响高输出紫外线LED用于水消毒的应用。

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