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High-Sensitivity Raman Gas Probe for In Situ Multi-Component Gas Detection

机译:用于原位多组分气体检测的高灵敏度拉曼气体探头

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摘要

Multiple reflection has been proven to be an effective method to enhance the gas detection sensitivity of Raman spectroscopy, while Raman gas probes based on the multiple reflection principle have been rarely reported on. In this paper, a multi-reflection, cavity enhanced Raman spectroscopy (CERS) probe was developed and used for in situ multi-component gas detection. Owing to signal transmission through optical fibers and the miniaturization of multi-reflection cavity, the CERS probe exhibited the advantages of in situ detection and higher detection sensitivity. Compared with the conventional, backscattering Raman layout, the CERS probe showed a better performance for the detection of weak signals with a relatively lower background. According to the 3σ criteria, the detection limits of this CERS probe for methane, hydrogen, carbon dioxide and water vapor are calculated to be 44.5 ppm, 192.9 ppm, 317.5 ppm and 0.67%, respectively. The results presented the development of this CERS probe as having great potential to provide a new method for industrial, multi-component online gas detection.
机译:已经证明多次反射是提高拉曼光谱的气体检测敏感性的有效方法,而基于多反射原理的拉曼气体探针已经很少报道。本文开发了多反射,腔增强拉曼光谱(CERs)探针,用于原位多组分气体检测。由于通过光纤传输和多反射腔的小型化,CERS探针表现出原位检测和更高的检测灵敏度的优点。与传统的反向散射拉曼布局相比,CERS探针显示出更好的性能,用于检测具有相对较低的背景的弱信号。根据3σ标准,该CERs探针的检测限为甲烷,氢,二氧化碳和水蒸气的探针分别计算为44.5ppm,192.9ppm,317.5ppm和0.67%。结果介绍了该CERs探针的发展,因为提供了为工业,多组分在线气体检测提供了新的方法。

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