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Progress in the optimization of photosensitized disinfection and decontamination processes using pulsed and CW ultraviolet light sources

机译:利用脉冲和连续波紫外线光源优化光敏消毒和去污工艺的进展

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Summary form only given. Photosensitized Ultraviolet (UV) treatment is one of the best hopes for achieving the elusive goal of transferring a pulsed power application from the realm of scientific interest to commercial viability. The University of Missouri-Columbia and Clean Earth Technologies, LLC are collaborating on the optimization of photosensitized UV processes for disinfection of surfaces and liquids. Parametric variation has been performed, and an improved comparison of pulsed and CW treatments has been made. The results are reported in this paper. It is found that the photosensitizer interacts differently with plastic, painted, and metal surfaces. Adjustment in the composition and concentrations of the photosensitizer permit a high disinfection efficacy to be obtained. Typically, the process yields more than 6 logs of bioburden reduction of Bacillus subtilis spores on various surfaces and bacteriophage in liquid suspensions.Various treatment modalities are investigated so that pulsed lamps can be compared to a continuous wave, medium pressure mercury-argon lamp baseline. The pulsed lamps include an array of twenty-five short pulse, short arc lamps and two different linear xenon flashlamp systems. Calibration of the UV intensity and measurements of the spectral content are made. Based on the observations, implications about the disinfection mechanisms are inferred.
机译:仅提供摘要表格。光敏紫外线(UV)处理是实现将脉冲电源应用从科学领域转移到商业可行性的难以实现的目标的最大希望之一。密苏里哥伦比亚大学和Clean Earth Technologies,LLC正在合作优化用于表面和液体消毒的光敏UV工艺。已经执行了参数变化,并且对脉冲和CW处理进行了改进的比较。结果报告在本文中。发现光敏剂与塑料,油漆和金属表面的相互作用不同。光敏剂的组成和浓度的调节允许获得高的消毒功效。通常情况下,该过程可在液体悬浮液的各种表面和噬菌体上产生6倍以上的枯草芽孢杆菌孢子生物负载减少量。研究了各种处理方式,因此可以将脉冲灯与连续波,中压汞-氩灯基线进行比较。脉冲灯包括25个短脉冲,短弧灯和两个不同的线性氙闪光灯系统。进行紫外线强度的校准和光谱含量的测量。根据观察结果,推断出有关消毒机理的含义。

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