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Pulse-laser infrared photothermal spectrometry of consensed-phase aerosols based on photothermal deflection spectroscopy.

机译:基于光热偏转光谱的自然相气溶胶的脉冲激光红外光热光谱法。

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摘要

The research reported in this dissertation is aimed at development of photothermal deflection detector that is consistent with constraints imposed by aerosols sampling and analysis. The main objectives of this project are: (1) the design and evaluation of initial apparatus prototypes and (2) a test of the prototype apparatus with surrogate substances using conventional mid-infrared gas lasers.;Experimental evaluation of reduced size photothermal apparatus is first performed with gaseous samples. Analysis of trichlorofluoromethane (CFC-11) and ethanol vapors is performed with both conventional large apparatus and the prototype small apparatus. Comparison studies in terms of photothermal signal from both apparatuses are carried out to examine how apparatus downscaling affects photothermal signal. The main result indicates that the small apparatus performs about the same as the conventional laboratory-size apparatus.;For better understanding of heat transport from aerosols collect on a flat substrate and its surrounding media, a numerical methodology based on finite element analysis is used to investigate the heat transfer between aerosol, substrate, and air. The numerical modeling is extended to prediction of photothermal signals from laser excited optical beam deflection due to temperature gradient inside the air above aerosols. The modeling results help to understand how aerosol properties such as size, shape, thermo-optical properties, and particles arrangement affect photothermal signal. The model is also used to investigate the influence of substrate properties on photothermal signal.;A photothermal deflection apparatus is then used to examine the potential of mid-infrared photothermal spectroscopy for aerosol analysis. Laboratory-generated ammonium nitrate aerosols are deposited on germanium substrate by using Micro-Orifice Uniform Deposits Impactor (MOUDI). Photothermal spectroscopy, based on optical beam deflection (mirage effect), is used to analyze the collected aerosols. The measurements are carried out in terms of aerosol number concentration and aerosol mass concentration. Based on standard 30 minutes sampling time and 30 L/min flow rate, the limit of detection obtained for our instrument are 18 particles, equivalence of 0.2 mug m-3 mass concentrations for 3 mum particles diameter) for aerosol number concentration measurement and 0.65 mug m-3 for aerosol mass concentration measurement.;Out of curiosity on whether standard materials could be used to calibrate a photothermal lens apparatus without having to make up liquid samples, it was thought that colored glass filters would serve as such standards. Photothermal lens measurements and finite element modeling are used to examine the physical changes taking place in optical filter glasses. Colored-glass and neutral density filters are found to have a strong positive temperature-dependent refractive index change.
机译:论文报道的研究旨在开发与气溶胶采样和分析所施加的约束相一致的光热偏转检测器。该项目的主要目标是:(1)初始设备原型的设计和评估,以及(2)使用常规中红外气体激光器对具有替代物质的原型设备进行测试。用气态样品进行。三氯氟甲烷(CFC-11)和乙醇蒸气的分析是使用常规大型仪器和原型小型仪器进行的。进行了来自两个设备的光热信号方面的比较研究,以检查设备的缩小尺寸如何影响光热信号。主要结果表明该小型仪器的性能与常规实验室规模的仪器大致相同。为了更好地理解聚集在平坦基材及其周围介质上的气溶胶的热传递,使用了基于有限元分析的数值方法研究气雾剂,基质和空气之间的热传递。数值模型扩展到由于气溶胶上方空气内部温度梯度引起的激光激发光束偏转而产生的光热信号预测。建模结果有助于了解气溶胶特性(例如大小,形状,热光学特性和粒子排列)如何影响光热信号。该模型还用于研究基质性质对光热信号的影响。然后,使用光热偏转装置检查中红外光热光谱法用于气溶胶分析的潜力。实验室产生的硝酸铵气雾剂通过使用微量均匀沉积撞击器(MOUDI)沉积在锗基质上。基于光束偏转(镜像效应)的光热光谱法可用于分析收集的气溶胶。根据气溶胶数浓度和气溶胶质量浓度进行测量。基于标准的30分钟采样时间和30 L / min流量,我们的仪器获得的检测极限为18个颗粒,当浓度为3微米时,相当于0.2马克杯m-3质量浓度(3微米粒径)用于气溶胶数浓度测量和0.65马克杯m-3用于气溶胶质量浓度测量。出于对是否可以使用标准材料校准光热透镜设备而不必构成液体样品的好奇,人们认为有色玻璃滤光片将用作此类标准。光热透镜的测量和有限元建模用于检查光学滤镜中发生的物理变化。发现彩色玻璃滤光片和中性密度滤光片具有很强的正温度相关折射率变化。

著录项

  • 作者

    Dada, Oluwatosin O.;

  • 作者单位

    Utah State University.;

  • 授予单位 Utah State University.;
  • 学科 Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 194 p.
  • 总页数 194
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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