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Measurement of methanol solutions using love mode liquid sensor

机译:使用Love模式液体传感器测量甲醇溶液

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Controlling the methanol concentration is a key factor in improving the efficiency of the direct methanol fuel cell. In this study, the immersed-type Love mode sensor based on SiO2/ST-cut Y-propagation quartz was fabricated for monitoring the methanol concentration. A temperature controlled measurement system consisting of a spectrum analyzer and an oscillator circuit was employed to characterize the methanol solutions with different weight concentrations at different temperatures. A theoretical prediction of the phase velocity shift for the methanol solutions with different weight concentrations was also performed for comparison. The results of methanol solutions with different weight concentrations at different temperatures show that the amount of the frequency shift is approximately linearly proportional to the weight concentration, and the proportional rate increases as the temperature increases. The concentration resolutions were 1.1876 and 0.2484 %/kHz by weight at 25°C and 70°C.
机译:控制甲醇浓度是提高直接甲醇燃料电池效率的关键因素。本文研究了一种基于SiO 2 / ST切割Y型传播石英的浸没式Love模式传感器,用于监测甲醇浓度。使用由频谱分析仪和振荡器电路组成的温度控制测量系统来表征在不同温度下具有不同重量浓度的甲醇溶液。为了比较,还对不同重量浓度的甲醇溶液的相速度变化进行了理论预测。在不同温度下具有不同重量浓度的甲醇溶液的结果表明,频移量与重量浓度大致成线性比例,并且比例速率随温度升高而增加。在25°C和70°C的浓度分辨率为1.1876和0.2484%/ kHz,按重量计。

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