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Laser- and UV-LED-induced fluorescence detection of dissolved organic compounds in water

机译:激光和UV-LED诱导的水中溶解有机物荧光检测

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摘要

We have developed a laser-induced fluorescence (LIF) system to detect and continuously observe in real time the levels of colored dissolved organic matter (CDOM) or Dissolved Organic Compounds (DOCs) in water from various sources, such as tap water and reverse osmosis processed water. At the same time, we have studied deep-UV light emitting diodes (LEDs) as alternative light sources for our system, which would make the apparatus cheaper and more compact. Our portable LIF system had two interchangeable microchip Nd:YAG lasers, operating at 266 nm and 355 nm, as UV sources, and fluorescence was measured over the range of 260-680 nm. The fluorescence was collected at 90° to the laser beam. We have also studied deep-UV LEDs emitting between 265 nm and 355 nm as alternative sources of fluorescence excitation. The average laser power was approximately 30 times that of the LED. Fluorescence spectra from sea water, tap water, and reverse osmosis water for both excitation sources were also measured, and similar spectra were observed. Differences in the signal intensity due to the difference in the laser and LED excitation intensity were consistent with theory.
机译:我们已经开发了激光诱导荧光(LIF)系统,以检测并连续实时观察各种来源(例如自来水和反渗透)中水中的有色溶解有机物(CDOM)或溶解有机化合物(DOC)的水平。处理水。同时,我们研究了深紫外发光二极管(LED)作为系统的替代光源,这将使设备更便宜,更紧凑。我们的便携式LIF系统具有两个可互换的微芯片Nd:YAG激光器(分别在266 nm和355 nm处工作)作为紫外线源,并且在260-680 nm的范围内测量了荧光。在与激光束成90°的位置收集荧光。我们还研究了发出265 nm至355 nm之间的深紫外LED作为荧光激发的替代光源。平均激光功率约为LED的30倍。还测量了两种激发源的海水,自来水和反渗透水的荧光光谱,并观察到了相似的光谱。由于激光和LED激发强度的差异而导致的信号强度差异与理论一致。

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