Lab. Matériaux, Electrochimie et Photochimie Analytique, Univ. A. Diop, Bambey, Senegal.
OPTIMAG Lab., Brest Univ., 6 Av. Victor Le Gorgeu, 29285 Brest, Cedex, France.
Anal Sci. 2021 Aug 10;37(8):1177-1180. doi: 10.2116/analsci.20N037. Epub 2021 Jan 1.
The photo-induced fluorescence method is often applied to determine non-native fluorescent compounds. It typically uses UV irradiation from a high pressure mercury vapor discharge lamp to create photo-induced fluorescent compounds, which are then quantified by fluorescence spectroscopy. However, these mercury lamps require a high-voltage power supply and may accidentally induce electric shocks and the release of mercury vapors. As an alternative, we have evaluated in this technical note new UV-C germicidal lamps. These lamps exhibit a higher power at 254 nm and allowed us to obtain a far greater amount of photo-induced compounds in a shorter time. For the first time, this new irradiation system has been applied for the determination of pesticides in water and has shown a significant increase in the method sensitivity. These good results allowed us to conclude that the new UV-C lamps are a relevant alternative to high pressure mercury vapor discharge lamps for use with photo induced fluorescent methods.
光致荧光法常用于测定非天然荧光化合物。它通常使用高压汞蒸气放电灯的紫外线照射来产生光致荧光化合物,然后通过荧光光谱法对其进行定量。然而,这些汞灯需要高压电源,并且可能会意外引发电击和汞蒸气的释放。作为替代方案,我们在本技术说明中评估了新型的 UV-C 杀菌灯。这些灯在 254nm 处具有更高的功率,使我们能够在更短的时间内获得更多的光致化合物。这是首次将这种新的辐照系统应用于水中农药的测定,并且显示出方法灵敏度的显著提高。这些良好的结果使我们得出结论,新型 UV-C 灯是与光致荧光法一起使用的高压汞蒸气放电灯的一种相关替代方案。