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Prediction of Impurities in Hydrogen Fuel Supplies Using a Thermally-Modulated CMOS Gas Sensor: Experiments and Modelling

机译:使用热调制的CMOS气体传感器预测氢燃料供应中的杂质:实验和建模

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We report here on the results of a study on the response of copper oxide based low-power MEMS thermally modulated gas sensor to low ppm levels of hydrogen sulphide (H_2S) in a hydrogen environment. It was found that by using this material with a method of transient frequency analysis, this resistive gas sensor can operate reliably in a harsh environment including hydrogen atmosphere and high humidity levels. We implemented a Bayesian method for data analysis to predict the concentration of H_2S in hydrogen supplies used in fuel cells.
机译:我们在此报告关于基于氧化铜的低功率MEMS热调节气体传感器在氢气环境中对硫化氢(H_2S)的低ppm水平的研究结果的研究结果。结果发现,通过使用该材料具有瞬态频率分析的方法,这种电阻气体传感器可以在包括氢气氛和高湿度水平的恶劣环境中可靠地运行。我们实施了一种贝叶斯方法,用于数据分析,以预测燃料电池中使用的氢气供应中的H_2S的浓度。

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