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Mixed-Potential Gas Sensors Using an Electrolyte Consisting of Zinc Phosphate Glass and Benzimidazole

机译:使用由磷酸锌玻璃和苯并咪唑组成的电解质的混合电位气体传感器

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摘要

Mixed-potential gas sensors with a proton conductor consisting of zinc metaphosphate glass and benzimidazole were fabricated for the detection of hydrogen produced by intestinal bacteria in dry and humid air. The gas sensor consisting of an alumina substrate with platinum and gold electrodes showed good response to different hydrogen concentrations from 250 parts per million (ppm) to 25,000 ppm in dry and humid air at 100–130 °C. The sensor response varied linearly with the hydrogen and carbon monoxide concentrations due to mass transport limitations. The sensor responses to hydrogen gas (e.g., −0.613 mV to 1000 ppm H2) was higher than those to carbon monoxide gas (e.g., −0.128 mV to 1000 ppm CO) at 120 °C under atmosphere with the same level of humidity as expired air.
机译:制造了具有质子导体的混合电位气体传感器,该质子导体由偏磷酸锌玻璃和苯并咪唑组成,用于检测在干燥和潮湿的空气中肠细菌产生的氢气。在100-130°C的干燥和潮湿空气中,由氧化铝基板,铂金电极和金电极构成的气体传感器对从250百万分之一(ppm)到25,000 ppm的不同氢浓度显示出良好的响应。由于传质限制,传感器响应随氢气和一氧化碳浓度线性变化。在120°C和湿度相同的大气环境下,传感器对氢气(例如-0.613 mV至1000 ppm H2)的响应高于对一氧化碳气体(例如-0.128 mV至1000 ppm H2)的响应空气。

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