Device for Water Disinfection by Ultraviolet Radiation

V. Soldatkin, Lola Yuldashova, Alena Shardina, Anastasiya Shkarupo, Tatiana Mikhalchenko
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引用次数: 2

Abstract

To create a semiconductor portable device for disinfection of water with ultraviolet radiation, in this work, we studied the effect on microorganisms in an aqueous medium by ultraviolet radiation of a quartz lamp and semiconductor diodes with wavelengths of 365 nm and 275 nm. It was found that for all radiation sources in experimental studies, the dependences of the number of microorganisms in an aqueous medium on the irradiation time have a parabolic function. This is due to the fact that at the first stage of irradiation, the protective functions of the cells of microorganisms are turned off, then disinfection is carried out in proportion to the irradiation time. Complete disinfection of microorganisms in an aqueous medium was carried out with a quartz lamp in 5 minutes, a UV diode with a wavelength of 365 nm in 30 minutes, and a UV diode with a wavelength of 275 nm in 7 minutes.
一种紫外线水消毒装置制造方法及图纸
为了制造一种半导体便携式紫外线消毒水装置,本工作研究了石英灯和波长为365 nm和275 nm的半导体二极管的紫外线辐射对水介质中微生物的影响。实验研究发现,对于所有辐射源,水介质中微生物数量与辐照时间的关系呈抛物线函数关系。这是由于在照射的第一阶段,微生物细胞的保护功能被关闭,然后按照射时间的比例进行消毒。用石英灯(5分钟)、波长为365 nm的UV二极管(30分钟)和波长为275 nm的UV二极管(7分钟)对水介质中的微生物进行完全消毒。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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