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High Flow Air Sampling for Field Detection Using Gas Chromatography-Mass Spectrometry.

机译:使用气相色谱-质谱法进行现场检测的高流量空气采样。

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摘要

The ability to rapidly detect and identify hazardous analytes in the field has become increasingly important. One of the most important analytical detection methods in the field is gas chromatography-mass spectrometry (GC-MS). In this work, a hand-portable GC-MS system is described that contains a miniature toroidal ion trap mass analyzer and a low thermal mass GC. The system is self-contained within the dimensions of 47 x 36 x 18 cm and weighs less than 13 kg. Because the instrument has a small footprint, it was used as the detector for an automated near-real-time permeation testing system. In permeation testing, materials that are used to make individual protective equipment such as gloves, masks, boots, and suits are exposed to hazardous analytes to determine how long the equipment can be worn safely. The system described herein could test five samples simultaneously. A multi-position valve rotated among the various sample streams and delivered time aliquots into the MS for quantitation. Current field air sampling techniques suffer from long desorption times, high pressure drops, artifact formation and water retention. These disadvantages can be avoided by concentrating the analytes in short open tubular traps containing thick films. There are several advantages to using polymer coated capillaries as traps, including fast desorption, inertness and low flow restriction. An air sampling trap was constructed utilizing open tubular traps for the concentration of semi-volatile organic compounds. The system consisted of multiple capillary traps bundled together, providing high sample flow rates. The analytes were desorbed from the multi-capillary bundle and refocused in a secondary trap. The simultaneous focusing and separation effect of a trap subjected to a negative temperature gradient was also explored. In this configuration, analytes were focused because the front of the peak was at a lower temperature than the rear of the peak and, hence, moved slower. In addition to the focusing effect, analytes with different volatilities focused at different temperatures within the gradient, allowing for separation.;Keywords: gas chromatography-mass spectrometry, toroidal ion trap, permeation testing, air sampling, open tubular traps, multi-capillary trap, negative temperature gradient, toxic industrial chemicals, chemical warfare agents
机译:快速检测和识别现场有害分析物的能力变得越来越重要。气相色谱-质谱(GC-MS)是该领域最重要的分析检测方法之一。在这项工作中,描述了一种便携式GC-MS系统,该系统包含一个微型环形离子阱质量分析器和一个低热质量GC。该系统是独立的,尺寸为47 x 36 x 18 cm,重量不到13 kg。由于该仪器占地面积小,因此被用作自动近实时渗透测试系统的检测器。在渗透测试中,用于制造单个防护设备的材料(例如手套,口罩,靴子和防护服)要暴露于危险的分析物中,以确定该设备可以安全佩戴多长时间。本文描述的系统可以同时测试五个样本。一个多位置阀在各种样品流之间旋转,并将等分的时间等份输送到MS中进行定量。当前的现场空气采样技术具有较长的解吸时间,高压降,伪影形成和保水性。通过将分析物浓缩在含有厚膜的短管形捕集阱中,可以避免这些缺点。使用聚合物涂层的毛细管作为捕集阱有几个优点,包括快速解吸,惰性和低流量限制。使用开放式管状疏水阀构建了一个空气采样疏水阀,用于浓缩半挥发性有机化合物。该系统由捆绑在一起的多个毛细管阱组成,可提供高样品流速。分析物从多毛细管束中解吸,然后重新聚焦在第二个阱中。还研究了负温度梯度陷阱的同时聚焦和分离效果。在这种配置下,分析物被聚焦,因为峰的前部温度低于峰的后部温度,因此移动速度较慢。除聚焦作用外,具有不同挥发性的分析物在梯度范围内的不同温度下聚焦,从而可以分离。关键词:气相色谱-质谱法,环形离子阱,渗透测试,空气采样,开放式管状阱,多毛细管阱,负温度梯度,有毒工业化学品,化学战剂

著录项

  • 作者

    Murray, Jacolin Ann.;

  • 作者单位

    Brigham Young University.;

  • 授予单位 Brigham Young University.;
  • 学科 Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 174 p.
  • 总页数 174
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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