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Fiber laser intracavity absorption spectroscopy for in situ multicomponent gas analysis in the atmosphere and combustion environments

机译:光纤激光腔内吸收光谱技术,用于大气和燃烧环境中的原位多组分气体分析

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摘要

Intracavity absorption spectroscopy with a broadband Er~(3+)-doped fiber laser is applied for the measurements of several molecular species revealing quantitative information about the gas concentration, temperature and chemical reactions in flames. The spectral range of measurements extends from 6200 cm~(-1) to 6550 cm~(-1) with the proper choice of the fiber length and by moving an intracavity lens. With a pulsed laser applied in this experiment, the sensitivity to absorption corresponds to an effective absorption path length of 3 km assuming the cavity is completely filled with the sample. For a cw laser, the effective absorption path length is estimated to be 50 km. Absorption spectra of various molecules such as CO_2, CO, H_2O, H_2S, C_2H_2 and OH were recorded separately in the cell and/or in low-pressure methane and propane flames. The presented measurements demonstrate simultaneous in situ detection of three molecular products of chemical reactions at different flame locations. Variation of the relative strengths of OH absorption lines with the temperature enables the estimation of the local flame temperature. The sensitivity of this laser does not depend on the broadband cavity losses and it can be used for in situ measurements of absorption spectra in hostile environments such as contaminated samples, flames or com- bustion engines. The presented technique can be applied for various diagnostic purposes, such as in environmental, combustion and plasma research, in medicine and in the determination of stable isotope ratios.
机译:腔内吸收光谱技术使用掺有宽带Er〜(3+)的光纤激光器进行多种分子种类的测量,揭示了有关火焰中气体浓度,温度和化学反应的定量信息。通过适当选择光纤长度并移动腔内透镜,测量的光谱范围从6200 cm-1(-1)扩展到6550 cm-1(-1)。在本实验中使用脉冲激光时,假设空腔完全充满了样品,对吸收的灵敏度相当于3 km的有效吸收路径长度。对于连续激光器,有效吸收路径长度估计为50 km。分别记录了电池中和/或低压甲烷和丙烷火焰中各种分子(如CO_2,CO,H_2O,H_2S,C_2H_2和OH)的吸收光谱。提出的测量结果证明了在不同火焰位置同时进行三种化学反应分子产物的原位检测。 OH吸收线的相对强度随温度的变化可以估算局部火焰温度。这种激光的灵敏度不取决于宽带腔损耗,它可用于在恶劣环境下(例如,污染的样品,火焰或燃烧引擎)对吸收光谱进行原位测量。所提出的技术可以用于各种诊断目的,例如在环境,燃烧和等离子体研究,医学和稳定同位素比率的确定中。

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  • 来源
    《Applied physics》 |2011年第2期|p.331-344|共14页
  • 作者单位

    Institut fuer Laserphysik, Universitat Hamburg, Luruper Chaussee149, 22761 Hamburg, Germany;

    Institut fuer Laserphysik, Universitat Hamburg, Luruper Chaussee149, 22761 Hamburg, Germany;

    Institut fuer Laserphysik, Universitat Hamburg, Luruper Chaussee149, 22761 Hamburg, Germany;

    Institut fuer Laserphysik, Universitat Hamburg, Luruper Chaussee149, 22761 Hamburg, Germany;

    School of Chemistry, Tel Aviv University, Ramat Aviv,Tel Aviv 69978, Israel;

    School of Chemistry, Tel Aviv University, Ramat Aviv,Tel Aviv 69978, Israel;

    OFS Fitel Denmark, Priorparken 680, DK 2605 Brondby,Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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