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A novel pulsed xenon flashlamp photoreactor and its potential applications in flow analysis with chemiluminescence detection

机译:新型脉冲氙闪光灯化学反应器及其在化学发光检测流动分析中的潜在应用

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The pulsed xenon flashlamp as a source of UV-light in a flow analytical system is proposed. Milliseconds long, high energy pulses were applied to a suspension of photocatalyst (TiO2) in order to generate free radicals capable of participating in a luminol chemiluminescence reaction. Three commercially available TiO2 powders of different crystal structures and sizes were selected to prepare suspensions in an H2O2 solution or in ultrapure water. The preliminary results indicate that the induction of chemiluminescence signals using the proposed photoreactor is possible. The intensity of the chemiluminescence signals depends on the number of flashes applied and the composition of the irradiated suspension. The photoreactor described is compact, small in size and capable of saving reagents and energy. Additionally, the system allows us to obtain chemiluminescence signals with shorter irradiation time when compared to configurations employing classical low-pressure mercury lamps. The detailed characteristics of a flashlamp photoreactor and its potential applications in flow systems are discussed.
机译:提出了在流动分析系统中将脉冲氙气闪光灯作为紫外线光源。将毫秒长的高能脉冲施加到光催化剂(TiO2)的悬浮液中,以产生能够参与鲁米诺化学发光反应的自由基。选择三种不同晶体结构和尺寸的市售TiO2粉末,以制备在H2O2溶液或超纯水中的悬浮液。初步结果表明,使用提出的光反应器诱导化学发光信号是可能的。化学发光信号的强度取决于施加的闪光次数和被照射的悬浮液的组成。所描述的光反应器紧凑,尺寸小并且能够节省试剂和能量。此外,与采用传统低压汞灯的配置相比,该系统使我们能够以更短的照射时间获得化学发光信号。讨论了闪光灯光反应器的详细特性及其在流动系统中的潜在应用。

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