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Comparison of effectiveness of gas sensing by low frequency fluctuations in resistance and microbalance quartz gas sensors

机译:电阻和微量天平石英气体传感器低频波动引起的气体传感效果比较

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Selectivity and sensitivity of gas sensing can be improved by fluctuation enhanced sensing. This possibility was investigated in resistive Taguchi Gas Sensors (TGS). Research results confirm that such an approach can strongly increase gas detection sensitivity. We suppose that low frequency fluctuations can be utilized to improve gas detection in other types of gas sensors. Fluctuations in the Quartz Crystal Microbalance (QCM) gas sensor for gas detection improving have been investigated. The sensor used in an experiment utilizes an ordinary quartz oscillator with a surface covered by a chemical layer absorbing humidity. The paper presents results of 1/ƒ noise measurements in both types of sensors at different humidity. The prototype QCM sensor and resistive gas sensors of Figaro company were investigated. The results show advantages of this technique for future industrial applications.
机译:气体感应的选择性和灵敏度可以通过波动增强感应来提高。在电阻式田口气体传感器(TGS)中研究了这种可能性。研究结果证实,这种方法可以大大提高气体检测的灵敏度。我们假设低频波动可用于改善其他类型的气体传感器中的气体检测。已经研究了用于改进气体检测的石英晶体微天平(QCM)气体传感器的波动。实验中使用的传感器使用普通的石英振荡器,其表面覆盖有吸收湿气的化学层。本文介绍了两种传感器在不同湿度下的1 /ƒ噪声测量结果。对Figaro公司的QCM传感器和电阻式气体传感器进行了原型研究。结果显示了该技术在未来工业应用中的优势。

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