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Ppb-level H2S detection for SF6 decomposition based on a fiber-amplified telecommunication diode laser and a background-gas-induced high-Q photoacoustic cell

机译:基于光纤放大电信二极管激光器和背景气体诱导的高Q光声电池的SF6分解的Pbb级H2S检测

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摘要

A ppb-level hydrogen sulfide (H2S) gas sensor for sulfur hexafluoride (SF6) decomposition analysis was developed by means of a background-gas-induced high-Q differential photoacoustic cell (PAC) and a fiber-amplified telecommunication diode laser. The watt-level excitation laser power compensates the sensitivity loss as a result of using a low cost, near-IR laser source. The differential design with a large cylindrical resonator diameter allows the PAC to accommodate the high power beam and maintain a low noise level output. The theory of background-gas-induced high-Q PAC is provided and was verified experimentally. A H2S detection limit (1σ) of 109 ppb in a SF6 buffer gas was achieved for an averaging time of 1 s, which corresponds to a normalized noise equivalent absorption coefficient of 2.9 × 10−9 cm−1 W Hz−1/2.
机译:通过背景气体诱导的高Q差分光声电池(PAC)和光纤放大的电信二极管激光器,开发了用于六氟化硫(SF6)分解分析的ppb级硫化氢(H2S)气体传感器。瓦特级激发激光功率补偿了由于使用低成本,近红外激光源而造成的灵敏度损失。具有大圆柱谐振器直径的差分设计允许PAC容纳高功率光束并保持低噪声水平输出。提供了背景气体诱导的高Q PAC的理论,并进行了实验验证。 SF6缓冲气体中H2S的检出限(1σ)为109bppb,平均时间为1 s,这对应于2.9×−10-9 cm-1 W Hz-1 / 2的归一化噪声等效吸收系数。

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