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基于扫描波长直接吸收光谱学的气体泄漏监测技术研究

Shuai ZhangWenqing LiuYujun ZhangXiao-wen ShuYU Dian-qiangRuifeng KanJinting DongHui Geng

2010Chinese Optics LettersChemistry被引 9开放获取

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摘要

A natural gas leakage detector based on scanned-wavelength direct absorption spectroscopy is described. The sensor employs a multi-channel scanned-wavelength direct absorption strategy. It has the potential to simultaneously monitor methane and hydrogen sulfide in open path environment. Traditionally, scannedwavelength direct absorption spectroscopy is the technique choice for natural gas leakage applications because of its simplicity, accuracy, and stability. We perform the gas sensor using direct-absorption wavelength scans with isolated features at 1-kHz repetition rate and the center wavelength is stabilized at the center of the 2 3 band R(3) line of methane (1.65 m) and the ( 1 + 2 + 3 ) combination band of hydrogen sulfide (1.57 m), respectively. The influence of light intensity fluctuations can be eliminated by using scanned-wavelength direct absorption spectroscopy. Because of the fast wavelength scanning, the sensor has a response time of less than 0.1 s. The sensor can be configured to sense leakages in path-integrated concentrations of, for example, 100-ppmm hydrogen sulfide and 10-ppmm methane.

引用本文(GB/T 7714)

Shuai Zhang, Wenqing Liu, Yujun Zhang, 等. 基于扫描波长直接吸收光谱学的气体泄漏监测技术研究[J]. Chinese Optics Letters, 2010.

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DOI:https://doi.org/10.3788/col20100805.0443

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