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首页> 外文期刊>Journal of optical technology >Radiation source with enhanced virucide effectiveness based on a mixture of helium and iodine vapor
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Radiation source with enhanced virucide effectiveness based on a mixture of helium and iodine vapor

机译:基于氦气和碘蒸气混合物的具有增强杀病毒效果的辐射源

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A source of spontaneous emission (a lamp) in the ultraviolet spectral range excited by a capacitive discharge was investigated. Iodine vapor and mixtures of iodine vapor with inert gases were used as the operating gas medium of the lamp. Conditions for enhancements in specific output parameters of the lamp emission were investigated. Excitation conditions under which the lamp emits predominantly at the iodine atomic line with a wavelength of 206.16 nm were determined. Aim of study. The primary aim of the study was to investigate the spectral and energy characteristics of the lamp based on the iodine vapor, which is promising for the development of a radiation source with enhanced virucidal effectiveness for ultraviolet disinfection of a human environment contaminated with pathogenic microorganisms including severe acute respiratory syndrome coronavirus 2 (SARSCoV- 2).Method. In this study, the composition and pressure of the operating mediumwere optimized. In addition, the excitation mode of the lamp emission was optimized by changing the repetition rate of voltage pulses. Main results. At a specific excitation power of approximately 1.3mW/cm~3 and partial pressures of iodine vapor and helium of approximately 2.5 and 7 Torr, respectively, the line of an iodine atom with a wavelength of 206.16 nm dominates in the output lamp spectrum, and the specific emission power at the outer surface of the lamp tube is approximately 3mW/cm~2. Practical significance. The emission of the investigated lamp is in the spectral range of 200-225 nm, which is promising in terms of developing technology for safe ultraviolet inactivation of pathogenic microorganisms including SARS-CoV-2.
机译:研究了电容放电激发的紫外光谱范围内的自发发射源(灯)。碘蒸气和碘蒸气与惰性气体的混合物被用作灯的工作气体介质。研究了增强灯发射特定输出参数的条件。确定了灯主要在波长为206.16 nm的碘原子线上发射的激发条件。研究目的。该研究的主要目的是研究基于碘蒸气的灯的光谱和能量特性,这对于开发具有增强杀病毒有效性的辐射源有希望,用于对被严重急性呼吸系统综合症冠状病毒 2 (SARSCoV-2) 污染的病原微生物污染的人体环境进行紫外线消毒。方法。本研究优化了工作介质的组成和压力。此外,通过改变电压脉冲的重复频率,优化了灯发射的激励模式。主要结果。在比激发功率约为1.3mW/cm~3,碘蒸气和氦气分压分别约为2.5和7 Torr时,波长为206.16 nm的碘原子谱线在输出灯光谱中占主导地位,灯管外表面的比发射功率约为3mW/cm~2。现实意义。所研究的灯的发射范围为 200-225 nm,这在开发包括 SARS-CoV-2 在内的病原微生物的安全紫外线灭活技术方面是有希望的。

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