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Production of Photons in the Bactericidal Effect of Transient Electric Arcs in Aqueous Systems

机译:水溶液中瞬态电弧杀菌作用中光子的产生

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The radiation in the visible and ultraviolet regions from submerged, transient electrical arcs was measured with a K3Fe(C2O4)3 chemical actinometer and was compared to the bactericidal effect obtained with the same electrical arrangements. Photon production and bactericidal effect were obtained at lower voltages with a smaller electrode separation than with a wider one. At higher voltages, both increased with wider electrode separations. The voltages at maximal photon production efficiency coincided with those of maximal bactericidal efficiency. However, the same photon radiation produced by different electrical arrangements did not always yield the same bactericidal effect in the small discharge vessel usually employed. In a larger discharge vessel, the bactericidal effect was closely correlated with the photon production. The efficiency of photon production by transient arcs was smaller than that of germicidal mercury lamps, particularly with respect to wavelengths of great bactericidal activity. The mechanisms of inactivation and their use for practical disinfection purposes are discussed.
机译:使用K3Fe(C2O4)3化学光度计测量了浸入式瞬态电弧在可见光和紫外线区域的辐射,并将其与相同电气装置获得的杀菌效果进行了比较。在较低的电压下,电极间距比宽的电极间距小,可获得光子产生和杀菌效果。在较高的电压下,两者均随着电极间距的增大而增加。在最大光子产生效率下的电压与最大杀菌效率相一致。然而,由不同的电气装置产生的相同的光子辐射在通常使用的小型放电容器中并不总是产生相同的杀菌效果。在较大的放电容器中,杀菌作用与光子产生密切相关。瞬态电弧产生光子的效率要比杀菌汞灯的效率要低,特别是在具有很大杀菌活性的波长方面。讨论了灭活机理及其在实际消毒中的用途。

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