首页> 外文学位 >Part I. From the lab to the field: Recent developments in polymer coated ATR sensing for the determination of volatile organic compounds. Part II. From the field to the lab: Investigating IR signatures for remote sensing applications.
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Part I. From the lab to the field: Recent developments in polymer coated ATR sensing for the determination of volatile organic compounds. Part II. From the field to the lab: Investigating IR signatures for remote sensing applications.

机译:第一部分:从实验室到现场:用于测定挥发性有机化合物的聚合物涂层ATR传感技术的最新进展。第二部分从现场到实验室:研究用于遥感应用的IR签名。

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摘要

Part I. Successful transition of polymer coated, ATR-FTIR sensor devices from a laboratory environment to real world field applications for detecting and quantifying VOCs in water is shown. Simultaneous, quantitative detection of BTX mixtures in water during enrichment into polymer coated ZnSe ATR elements has been performed. The obtained results showed accurate detection and quantification to the low ppb concentration region. Fiber-optic evanescent field measurement campaigns have been conducted at simulated field conditions during which concentration gradients of various VOCs in the mg/L range have been monitored successfully. The first test of an ATR based, polymer coated sensor system under real world field conditions, the chlorobenzene concentration in groundwater at mg/L levels was determined. An interesting aspect of these measurements was the experimental proof for the dependence of analyte extraction dynamics on the flow conditions of the sample matrix surrounding the extractive polymer membrane. The obtained results demonstrate that MIR evanescent field sensors are suitable for in-situ analysis at real world field conditions for environmental monitoring applications.; Part II. Recently, measurements of disturbed soils have shown different spectral contrast in comparison to undisturbed soils. In this work first measurements at controlled laboratory conditions have been performed to investigate individual minerals of the soil matrix and their spectral characteristics under various environmental conditions. ATR spectroscopy has been applied to investigate multi-disperse quartz sand and mono-disperse soda lime glass spheres samples. For the investigation of spectral differences between pristine and disturbed quartz sand, a wetting/drying procedure with subsequent sample aerating has been developed. In addition to established differences in spectral contrast of disturbed and undisturbed soil, a strong spectral shift of absorption features was observed. When probed with s- or p-polarized light, both samples showed strong LO-TO mode splitting. The studies also reveal that the main reason for spectral differences of pristine and disturbed soils is caused by water facilitated changes of the particle size distribution in the probed volume. The presented results advance the variety of spectral characteristics useful for the detection of disturbed soils (i.e. possible landmine sites) with MIR imaging systems.
机译:第一部分:展示了聚合物涂覆的ATR-FTIR传感器设备从实验室环境向现实世界现场应用的成功过渡,以检测和量化水中的VOC。在富集到聚合物包被的ZnSe ATR元素过程中,已经对水中的BTX混合物进行了同步,定量检测。获得的结果显示了对低ppb浓度区域的准确检测和定量。在模拟现场条件下进行了光纤e逝场测量活动,在此期间已成功监测了mg / L范围内各种VOC的浓度梯度。在真实世界的野外条件下对基于ATR的聚合物涂层传感器系统的首次测试,确定了地下水中的氯苯浓度为mg / L。这些测量的一个有趣方面是实验证明,证明了分析物提取动力学对萃取聚合物膜周围样品基质流动条件的依赖性。获得的结果表明,MIR消逝场传感器适合在现实世界的现场条件下进行环境监测应用的原位分析。第二部分最近,与未扰动的土壤相比,扰动土壤的测量显示出不同的光谱对比度。在这项工作中,首先在受控实验室条件下进行了测量,以研究土壤基质中的各种矿物质及其在各种环境条件下的光谱特性。 ATR光谱已用于研究多分散石英砂和单分散苏打石灰玻璃球样品。为了研究原始石英砂和受干扰石英砂之间的光谱差异,已经开发了一种湿润/干燥程序以及随后的样品充气。除了受干扰和未受干扰的土壤在光谱对比度上的确定差异外,还观察到吸收特征的强烈光谱偏移。当用s或p偏振光探测时,两个样品都显示出很强的LO-TO模式分裂。研究还表明,原始土壤和扰动土壤光谱差异的主要原因是水促进了探测体积中粒径分布的变化。提出的结果促进了多种光谱特征,这些光谱特征可用于使用MIR成像系统检测受干扰的土壤(即可能的地雷位置)。

著录项

  • 作者

    Karlowatz, Manfred.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Chemistry Analytical.; Engineering Environmental.; Remote Sensing.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 246 p.
  • 总页数 246
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;环境污染及其防治;遥感技术;
  • 关键词

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