光声光谱在微量气体监测中的应用

F. Harren, J. Mandon, S. Cristescu
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引用次数: 110

摘要

如今,气相光谱学在化学和物理之外的许多领域都很常见。从生物研究到空气污染监测,光谱气体传感器已被证明是不可或缺的工具。气体传感器的使用方法多种多样,每种应用都有不同的需求。一些应用要求对一种特定气体化合物具有非常高的灵敏度,而另一些应用则从能够测量广泛气体的传感器中获益更多。高时间分辨率也是理想的,以及选择性,鲁棒性,很少或不需要样品制备。本文讨论了光声光谱法作为一种灵敏、在线、无创的痕量气体浓度监测工具。在简短的介绍和历史概述之后,注意力集中在设备和设备的描述上;它们决定了检测限和选择性。重点讨论了环境监测、医学应用和生物学应用(如收获后生理学、植物生理学、微生物学和昆虫学)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photoacoustic Spectroscopy in Trace Gas Monitoring
Gas phase spectroscopy is nowadays very common in a wide variety of fields next to chemistry and physics. From research involving living organisms to air pollution monitoring, spectroscopic gas sensors have proven to be indispensable tools. There are various ways of utilizing gas sensors, and each application has different demands. Some applications require a very high sensitivity for one specific gas compound, while others benefit more from sensors able to measure a wide range of gases. A high time resolution is also desirable, as well as selectivity, robustness, and little or no need for sample preparation. This paper discusses photoacoustic spectroscopy as a sensitive, on-line and non-invasive tool to monitor the concentration of trace gases. After a short introduction and a historic overview, attention is focused onto the description of devices and equipment; they determine the detection limits and selectivity. Applications are discussed with emphasis on environmental monitoring, medical applications and biological applications (such as post-harvest physiology, plant physiology, microbiology, and entomology).
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