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Humidity Tolerance of Electrochemical Hydrogen Safety Sensors Based on Yttria-Stabilized Zirconia (YSZ) and Tin-doped Indium Oxide (ITO)

机译:基于氧化钇稳定的氧化锆(YSZ)和掺杂锡掺杂氧化铟(ITO)电化学氢安全传感器的湿度耐受性

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Commercial hydrogen sensors are available, but performance and cost targets remain unmet for many hydrogen economy applications. For example, traditional thermal conductivity detectors (TCDs) can be responsive to combustible gases in general, show humidity effects, and are relatively costly. New options under development include solid-state electrochemical sensors, which are low cost, can be operated over various temperature and humidity ranges, have fast response times, and can show low cross-sensitivity to hydrocarbons. Previous work demonstrated potentiometric sensors based on yttria-stabilized zirconia (YSZ) and tin-doped indium oxide (ITO). In this study, prototypes were investigated for humidity tolerance. Electrochemical characterization indicated similar reaction rates for negative and positive potentials could be important for humidity tolerance. More advanced prototypes were developed to demonstrate miniaturization and robust packaging for cross-validation testing. Additional electronics were developed for compatibility with data acquisition systems, and results validated humidity tolerance for H2 sensors up to 10% water in air.
机译:可提供商业氢传感器,但对于许多氢经济应用,性能和成本目标保持未满足。例如,传统的导热探测器(TCD)可以响应于可燃气体,呈现湿度效应,并且相对昂贵。开发的新选项包括固态电化学传感器,即低成本,可以在各种温度和湿度范围内操作,具有快速响应时间,并且可以对碳氢化合物显示出低的交叉敏感性。以前的工作证明了基于氧化钇稳定的氧化锆(YSZ)和掺杂锡氧化铟(ITO)的电位传感器。在这项研究中,研究了原型耐湿性耐受性。电化学表征表明阴性和正电位的类似反应速率对于湿度耐受性可能是重要的。开发了更先进的原型,以展示用于交叉验证测试的小型化和鲁棒包装。开发了额外的电子器件,用于与数据采集系统的兼容性,结果为H2传感器的验证湿度耐受性高达10%的空气中的水。

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