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首页> 外文期刊>Journal of atmospheric and oceanic technology >A New Portable Instrument for In Situ Measurement of Atmospheric Methane Mole Fraction by Applying an Improved Tin Dioxide-Based Gas Sensor
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A New Portable Instrument for In Situ Measurement of Atmospheric Methane Mole Fraction by Applying an Improved Tin Dioxide-Based Gas Sensor

机译:一种新型便携式仪器,用于改进的基于二氧化锡的气体传感器原位测量大气中的甲烷摩尔分数

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摘要

A new portable instrument based on a tin dioxide natural gas leak detector was developed to monitor the atmospheric methane mixing ratio in areas lacking sufficient infrastructure to sustain a conventional measurement system, such as a large power source, carrier gas supply, and temperature-stabilized laboratory. The effect of water vapor, the dominant factor influencing the stable measurement of methane, was examined. Reducing water vapor to less than 10 ppm in the sample air enabled stable and sensitive detection of atmospheric methane. The selectivity of the sensor to other flammable gases was also examined and improved, without additional power consumption, by applying an additional catalytic layer made of platinum-black powder suspended in quartz wool. The developed system is small (W × D × H = 300 mm × 250 mm × 200 mm) and lightweight (4 kg). The normal power consumption of the detector unit, consisting of a detector, a heater for controlling temperature, and an electronic circuit for each device, is less than 10 W. The precision of the tin dioxide-based sensor system for methane measurement in ambient air was compared with that of a conventional system, a gas chromatograph equipped with a flame ionization detector. Diurnal variations were clearly detected, and an excellent linear relationship was found between the two systems, with a standard deviation of 4 ppb (1σ).
机译:开发了一种基于二氧化锡天然气泄漏检测器的新型便携式仪器,用于监测缺乏足够基础设施来维持常规测量系统的区域中的大气甲烷混合比,例如大型电源,载气供应和温度稳定的实验室。检查了水蒸气的影响,水蒸气是影响甲烷稳定测量的主要因素。将样品空气中的水蒸气减少到10 ppm以下,可以稳定,灵敏地检测大气中的甲烷。还通过施加由悬浮在石英棉中的铂黑粉末制成的附加催化层,在不增加功耗的情况下,检查并提高了传感器对其他易燃气体的选择性。开发的系统体积小(宽×深×高= 300 mm×250 mm×200 mm),重量轻(4 kg)。由检测器,用于控制温度的加热器以及每个设备的电子电路组成的检测器单元的正常功耗小于10W。基于二氧化锡的传感器系统在环境空气中测量甲烷的精度将其与常规系统(配有火焰离子化检测器的气相色谱仪)进行比较。清楚地检测到昼夜变化,并且在两个系统之间发现了极好的线性关系,标准偏差为4 ppb(1σ)。

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  • 来源
    《Journal of atmospheric and oceanic technology》 |2010年第7期|P.1175-1184|共10页
  • 作者

    HIROSHI SUTO; GEN INOUE;

  • 作者单位

    Center for Global Environmental Research, National Institute for Environmental Studies, Tsukuba, Ibaraki, Japan GOSAT Project Team, Japan Aerospace Exploration Agency, Tsukuba, Ibaraki, Japan;

    rnCenter for Global Environmental Research, National Institute for Environmental Studies, Tsukuba, Ibaraki, Japan Research Institute for Humanity and Nature, Kamigamo, Kita-ku, Kyoto, Japan;

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