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A Versatile Capacitive Sensing Platform for the Assessment of the Composition in Gas Mixtures

机译:用于评估气体混合物成分的多功能电容传感平台

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摘要

The energy market is facing a major transition, in which natural gas and renewable gasses will play an important role. However, changing gas sources and compositions will force the gas transporters, gas engine manufacturers, and gas grid operators to monitor the gas quality in a more intensive way. This leads to the need for lower cost, smaller, and easy to install gas quality sensors. A new approach is proposed in this study that is based on the chemical interactions of the various gas components and responsive layers applied to an array of capacitive interdigitated electrodes. For Liquid Natural Gas (LNG), containing a relative high concentration of higher hydrocarbons, an array of ten capacitive chips is proposed, that is sufficient to calculate the full composition, and can be used to calculate energy parameters, such as Wobbe Index, Calorific Value, and Methane Number. A first prototype was realized that was small enough to be inserted in low and medium pressure gas pipes and LNG engine fuel lines. Adding the pressure and temperature data to the chip readings enables the determination of the concentrations of the various alkanes, hydrogen, nitrogen, and carbon dioxide, including small fluctuations in water vapor pressure. The sensitivity and selectivity of the new sensor is compared to a compact analyzer employing tunable filter infrared spectrometry.
机译:能源市场正面临重大转变,其中天然气和可再生气体将发挥重要作用。但是,不断变化的气体来源和成分将迫使气体运输商,气体发动机制造商和气体网格运营商以更密集的方式监控气体质量。这导致需要成本更低,更小且易于安装的气体质量传感器。在这项研究中提出了一种新方法,该方法基于各种气体成分和应用于电容式叉指电极阵列的响应层的化学相互作用。对于包含相对较高浓度的高级碳氢化合物的液态天然气(LNG),提出了十个电容芯片的阵列,该阵列足以计算全部成分,并可用于计算能量参数,例如沃泊指数,热量值和甲烷值。意识到第一个原型足够小,可以插入低压和中压燃气管道和LNG发动机燃料管线中。将压力和温度数据添加到芯片读数中,可以确定各种烷烃,氢气,氮气和二氧化碳的浓度,包括水蒸气压力的微小波动。新型传感器的灵敏度和选择性与采用可调滤光片红外光谱仪的紧凑型分析仪进行了比较。

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