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首页> 外文期刊>Journal of Micromechanics and Microengineering >Micro-cantilever sensors for monitoring carbon monoxide concentration in fuel cells
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Micro-cantilever sensors for monitoring carbon monoxide concentration in fuel cells

机译:用于监测燃料电池中的一氧化碳浓度的微悬臂传感器

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High concentration of carbon monoxide (CO) in the gas mixture entering the fuel cell can cause fuel cell poisoning, which can significantly reduce the life expectancy of the cell. To overcome this problem, we propose a new methodology based on the use of micro-cantilevers to detect minute concentrations of CO in a gas mixture. For this purpose, micro-cantilevers are coated with Copper Y (CuY) zeolite and utilized to selectively adsorb CO on their surface. It is shown that the adsorption of CO yields a measurable shift in the natural frequency of the micro-cantilevers, which can be directly correlated with the concentration of CO in the gas mixture. It is determined that the maximum adsorption capacity of the sensor occurs at 40 degrees C using CuY zeolite with 10 wt% Cu content. Furthermore, the shift in the natural frequency of the sensor is observed to increase as the thickness of the zeolite layer is increased up to a threshold value corresponding to about a quarter of the thickness of the micro-cantilever. At this point, a clearly measurable shift of about 275 Hz in the natural frequency of the micro-cantilevers is observed. While the maximum frequency shift occurs using a relatively thick zeolite layer, it is observed that, for the range of thicknesses considered, the maximum frequency shift per unit weight of CO adsorbed (sensitivity) decreases as the thickness of the zeolite layer is increased. The methodology proposed in this paper could pave the way towards the development of a portable and self-contained unit to monitor the concentration of CO in a mixture of gases.
机译:进入燃料电池的气体混合物中高浓度的一氧化碳(CO)可以引起燃料电池中毒,这可以显着降低细胞的预期寿命。为了克服这个问题,我们提出了一种基于使用微悬臂的新方法,以检测气体混合物中的CO的微小浓度。为此目的,微悬臂器用铜Y(Cuy)沸石涂覆,并用来选择性地吸附在其表面上的CO。结果表明,CO的吸附在微悬臂器的固有频率中产生可测量的偏移,其可以与气体混合物中的CO的浓度直接相关。确定传感器的最大吸附容量在40℃下使用Cuy沸石,具有10wt%Cu含量。此外,随着沸石层的厚度增加到与微悬臂厚度相对应的阈值增加到大约四分之一的阈值,观察到传感器的固有频率的变化增加。此时,观察到在微悬臂器的自然频率中明显可测量的偏移约275Hz。虽然使用相对厚的沸石层发生的最大频移,但是观察到,对于所考虑的厚度范围,当沸石层的厚度增加时,每单位重量的CO吸附(灵敏度)的每单位重量的最大频移降低。本文提出的方法可以为开发便携式和独立单元的开发来监测气体混合物中的CO的浓度。

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