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Selectivity enhancement of metal oxide gas sensors using a micromachined gas chromatographic column

机译:使用微机械气相色谱柱提高金属氧化物气体传感器的选择性

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摘要

Indoor air quality monitoring applications require both high sensitivity and selectivity, which are difficult to reach with solid state gas sensors. While for some gas species like, e.g. CO and NO_2, the use of optimized operating conditions allows to reach the necessary selectivity, the discrimination between single volatile organic compounds (VOC) is generally not possible with stand-alone arrays of gas sensors. This limitation represents a major drawback, since not all indoor VOC are equally harmful for the health of the human beings living in the polluted environment. For this reason, a highly selective hybrid microsystem based on a gas chromatographic-like (GC) approach is proposed. In this miniaturized gas chromatographic system a solid state gas sensor is used as detector, together with a Silicon micromachined packed GC column, a zero grade air unit, a commercial minipump and a minivalve. With this prototype, Benzene, Toluene and m-Xylene eluted in synthetic or real indoor air were reliably detected and measured at concentrations as low as 5 ppb. The use of chromatographic units together with solid state gas sensors both integrated in silicon allows to develop low-cost, handheld portable devices having exceptional selectivity and reproducibility. Possible applications which could benefit of these performances include security control, air quality monitoring as well as food quality control.
机译:室内空气质量监测应用需要高灵敏度和高选择性,而固态气体传感器很难做到这一点。而对于某些气体种类,例如CO和NO_2,使用优化的操作条件可以达到必要的选择性,使用独立的气体传感器阵列通常无法区分单一挥发性有机化合物(VOC)。该限制是一个主要缺点,因为并非所有室内VOC都对生活在污染环境中的人类健康同样有害。因此,提出了一种基于气相色谱(GC)方法的高选择性混合微系统。在这种小型气相色谱系统中,固态气体传感器与硅微机械填充气相色谱柱,零级空气装置,商用微型泵和微型阀一起用作检测器。使用该原型,可以可靠地检测并测量低至5 ppb浓度的合成或真实室内空气中洗脱的苯,甲苯和间二甲苯。色谱单元与同时集成在硅中的固态气体传感器一起使用,可以开发出具有出色选择性和重现性的低成本手持式便携式设备。可能会受益于这些性能的应用包括安全控制,空气质量监控以及食品质量控制。

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