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Benefits of high energy UV185nm light to inactivate bacteria

机译:高能UV185nm灯灭活细菌的好处

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Inactivating and eliminating bacteria from ultra pure water (UPW) systems is always a significant problem for semiconductor and pharmaceutical industries. To alleviate the problem, ultraviolet (UV) radiation-both monochromatic UV254 light and high pressure UV185 light-is traditionally used for bacterial sterilization and in the case of the later, breakdown of trace organic molecules. The focus of this work is to understand the factors that influence the effectiveness of these UV treatments on Xanthomonas sp. bacteria typically found in UPW systems. In particular, the factors associated with the reactor condition, such as the light source and environment were investigated. It is shown that inactivation follows first order kinetics, and that the rates are comparable to others found in the literature for gram negative bacteria. Also, growth phase and harvesting conditions are shown to influence inactivation rate. Furthermore, it was determined that UV185 radiation, although limited by water absorption, significantly enhances the inactivation rate of bacteria if given suitable transmission distance. Rates of inactivation were enhanced by 40% when UV185 light is used in addition to UV254 light.
机译:灭活和消除超纯水(UPW)系统中的细菌一直是半导体和制药行业的重要问题。为了减轻该问题,传统上将紫外线(UV)辐射(单色UV254光和高压UV185光)都用于细菌灭菌,在后者的情况下,则将痕量有机分子分解。这项工作的重点是了解影响这些紫外线治疗对Xanthomonas sp。影响的因素。通常在UPW系统中发现的细菌。特别是,研究了与反应堆条件有关的因素,例如光源和环境。已证明灭活遵循一级动力学,并且其速率与革兰氏阴性细菌的文献中发现的速率相当。同样,显示出生长期和收获条件会影响灭活速率。此外,可以确定的是,如果受到适当的传输距离,UV185辐射虽然受水吸收的限制,但会显着提高细菌的灭活率。除使用UV254灯外,使用UV185灯时,灭活率提高了40%。

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