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UV laser and LED induced fluorescence spectroscopy for detection of trace amounts of organics in drinking water and water sources.

机译:UV激光和LED诱导荧光光谱法可检测饮用水和水源中的痕量有机物。

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摘要

A UV Laser Induced Fluorescence (LIF) system, previously developed in our laboratory, was modified and used for a series of applications related to the development and optimization of UV LIF spectroscopic measurements of trace contaminants in drinking water and other water sources. Fluorescence spectra of a number of water samples were studied, including those related to the reverse osmosis water treatment and membrane fouling, domestic and international drinking water, industrial toxins, bacterial spores, as well as several fluorescence standards. Of importance was that the long term detection of the trace level of Dissolved Organic Compounds (DOC) was measured, for the first time to our knowledge, over a one week period and with a time resolution of 2.5 minutes. A comparison of LIF emission using both 266 nm and 355 nm excitation was also made for the first time. Such real-time and continuous measurements are important for future water treatment control.;The LIF system was modified to accommodate UV Light Emitting Diodes (LED) as alternative excitation sources, and tested for the detection of trace organic species in water. In addition, a compact system using LED excitation and a spectrometer was developed and underwent initial testing.;The original LIF system had two laser sources, 266 nm and 355 nm. The additional sources incorporated in the system were UV LEDs emitting at 265 nm, 300 nm, 335 nm and 355 nm.;The LED spectral emission was studied in detail, in terms of spectral variability and power output. It was found that all LEDs had some emission in the visible spectrum, and an optical filter was used to remove it.;The signal-to-noise ratio for the LED-based systems was determined and compared with that of the LIF system. The fluorescent signal of the LED-based system was smaller by 1 to 2 orders of magnitude, despite the fact that the LED pulse energy was 2 to 3 orders of magnitude less than the laser's. As such, the fluorescent signal from the LED was greater than expected. Therefore, a UV LED may be a compact and much cheaper optical source for future water measurement instruments.
机译:以前在我们实验室中开发的UV激光诱导荧光(LIF)系统经过修改,并用于与开发和优化饮用水和其他水源中痕量污染物的UV LIF光谱测量相关的一系列应用。研究了许多水样品的荧光光谱,包括与反渗透水处理和膜污染,国内外饮用水,工业毒素,细菌孢子以及几种荧光标准有关的光谱。重要的是,在我们所知的范围内,首次在一周内以2.5分钟的时间分辨率对痕量溶解有机化合物(DOC)的长期检测进行了测量。首次还对使用266 nm和355 nm激发的LIF发射进行了比较。这种实时和连续的测量对于将来的水处理控制非常重要。LIF系统经过修改,可以容纳紫外线发光二极管(LED)作为替代激发源,并经过测试以检测水中的痕量有机物。此外,还开发了使用LED激发和光谱仪的紧凑型系统,并进行了初步测试。原始LIF系统具有两个激光源,分别为266 nm和355 nm。系统中包含的其他光源是分别在265 nm,300 nm,335 nm和355 nm处发射的UV LED。对LED的光谱发射进行了详细的光谱可变性和功率输出方面的研究。发现所有LED在可见光谱中都有一些发射,并使用了滤光器将其去除。确定了基于LED的系统的信噪比,并将其与LIF系统的信噪比进行了比较。尽管LED脉冲能量比激光器小2至3个数量级,但基于LED的系统的荧光信号却小了1至2个数量级。这样,来自LED的荧光信号大于预期。因此,对于未来的水测量仪器而言,UV LED可能是紧凑且便宜得多的光源。

著录项

  • 作者

    Sharikova, Anna V.;

  • 作者单位

    University of South Florida.;

  • 授予单位 University of South Florida.;
  • 学科 Environmental Health.;Physics Optics.;Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 254 p.
  • 总页数 254
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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