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Characterization of hydrogen sensors based on palladium-electroplated fiber Bragg gratings (FBG)

机译:基于钯电镀纤维布拉格光栅的氢传感器的表征(FBG)

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摘要

The response of a new type of hydrogen sensors based on electroplated palladium on Fiber Bragg Gratings (FBG) is demonstrated. Sensor response is characterized from 35 degrees to 95 degrees Celsius at 0.6% hydrogen in nitrogen and from 0.1% to 4% hydrogen at 95 degrees Celsius with air purging between each hydrogen cycle. The Bragg wavelength shift at saturation and the response times were used to analyze the data. The results showed that heat treatments in flowing air at 95 degrees Celsius to 150 degrees Celsius greatly improved the sensor response. A comparison of the experimental response times to those predicted by diffusion equations implied that temperature had a profound effect on hydrogen surface reaction probability.
机译:证明了基于电镀钯对纤维布拉格光栅(FBG)的新型氢传感器的响应。传感器响应的特征在于35度至95摄氏度,在氮气下的0.6%氢气下,在95摄氏度下在95摄氏度的0.1%至4%的氢气下,在每个氢循环之间吹扫。饱和度和响应时间的布拉格波长偏移用于分析数据。结果表明,95摄氏度的流动空气中的热处理大大改善了传感器响应。将实验响应时间与扩散方程预测的那些的比较暗示了该温度对氢表面反应概率产生了深远的影响。

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