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Selective Hydrogen Detection in a Highly Contaminated Background Using Only a Single Generic Metal Oxide Gas Sensor

机译:仅使用单个通用金属氧化物气体传感器在高度污染的背景中选择性氢检测

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Detection of highly ppm range hydrogen concentration in atmospheres contaminated with various volatile organic compounds is in demand for numerous applications. Different devices and techniques have been applied for the problems which are mostly based on utilization of hydrogen permeable membranes. Here, we have used a single generic metal oxide gas sensor for this task. No filter or membrane is utilized. The operating temperature of the sensor is modulated with a voltage waveform specifically designed for producing step-like temperature changes on the oxide pallet. By applying four different step-like temperature jumps, each of 1s duration, the sensor produces response patterns which are processed with common pattern recognition techniques. The technique was examined by its practical use for the ~10 ppm (volume) hydrogen measurement in a background containing ~1000 ppm ethanol. The analysis takes only 4s, and the obtained patterns are reproducible.
机译:用各种挥发性有机化合物污染的大气中高度PPM范围氢浓度的需求对许多应用有所要求。已经施加了主要基于氢渗透膜的问题的问题的不同的装置和技术。在这里,我们使用了单个通用金属氧化物气体传感器进行此任务。不使用过滤器或膜。用专门设计用于在氧化物托盘上产生步骤状温度变化的电压波形来调制传感器的工作温度。通过应用四个不同的步骤温度跳跃,每个跳跃为1s持续时间,传感器产生以共同的模式识别技术处理的响应模式。通过其在含有〜1000ppm乙醇的背景中的〜10ppm(体积)氢气测量的〜10ppm(体积)氢气测量来检查该技术。分析只需要4s,所获得的图案是可重复的。

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