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Development of ZnO-based sensors for fuel cell cars equipped with ethanol steam-reformer for on-board hydrogen production

机译:ZnO的燃料电池车辆传感器的开发,配备乙醇蒸汽重整器,用于车载氢气生产

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In this paper, pure (ZnO) and doped-zinc oxide (Mo- and Cr-ZnO) samples were prepared, characterized and investigated as sensing material with the main objective to develop a conductometric sensor platform that can detect hydrogen and ethanol, for application in fuel cell cars equipped with ethanol steam-reformer for on-board hydrogen production. ZnO-based nanomaterials were synthesized by a simple wet chemical method and characterized by X-ray diffraction, scanning electron microscopy, and transmission electron microscopy. ZnO sample was found to possess a well defined dumbbell-like morphology, while Mo- and Cr-ZnO samples showed non ordered structures at micrometric level. Sensing tests revealed that the sensor response to H-2 and ethanol is largely dependent on the temperature, nature and loading of dopant. ZnO-based sensor showed very good performance in terms of sensor response (R-0/R = 10-@2000 ppm of hydrogen), response and recovery time (5 and 7 s, respectively) at the operating temperature of 400 degrees C, which are promising characteristics for developing an hydrogen leak sensor. The ZnO sensor showed also good characteristics for detecting selectively ethanol when operating at lower temperature (250 degrees C). On the other hand, the detection of both gases can be also accomplished using two sensors, namely ZnO and Mo-ZnO, operating both at the same temperature of 250 degrees C. On the basis of the results reported, a single conductometric platform based on these sensors, can be proposed for detecting leak hydrogen as well as both ethanol fuel and hydrogen, for monitoring the steam reforming process efficiency in fuel cell cars.
机译:在本文中,制备纯(ZnO)和掺杂氧化锌(MO和CR-ZnO)样品,表征和研究,作为感测材料,主要目的是开发可以检测氢和乙醇的电导传感器平台,用于应用在燃料电池车中,配备乙醇蒸汽重整器,用于车载氢气生产。通过简单的湿化学方法合成ZnO基纳米材料,其特征在于X射线衍射,扫描电子显微镜和透射电子显微镜。发现ZnO样品具有良好定义的哑铃形态,而Mo-和Cr-ZnO样品在微米水平下显示出非有序的结构。感测试验显示,传感器对H-2和乙醇的反应主要取决于掺杂剂的温度,性质和装载。基于ZnO的传感器在传感器响应(R-0 / R = 10- @氢)的方面表现出非常好的性能,响应和恢复时间(5和7 s)在400℃的工作温度下,这是开发氢泄漏传感器的有希望的特性。当在较低温度(250℃)下操作时,ZnO传感器显示出检测选择性乙醇的良好特性。另一方面,也可以使用两个传感器,即ZnO和Mo-ZnO来完成两种气体的检测,在250摄氏度的相同温度下操作。基于报告的结果,一个基于的单个电导平台这些传感器可以提出用于检测氢氢以及乙醇燃料和氢气,用于监测燃料电池车中的蒸汽重整过程效率。

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