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首页> 外文期刊>Sensors and Actuators. B, Chemical >Combining miniaturized ion mobility spectrometer and metal oxide gas sensor for the fast detection of toxic chemical vapors
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Combining miniaturized ion mobility spectrometer and metal oxide gas sensor for the fast detection of toxic chemical vapors

机译:结合小型离子迁移谱仪和金属氧化物气体传感器快速检测有毒化学蒸气

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摘要

Combined use of miniaturized non-conventional aspiration-type ion mobility spectrometer (IMS; referred as ion mobility cell, IMCell) and metal oxide semiconductor (MOS) gas sensor for detecting toxic chemical vapors in a continuous 1-2 l/min flow-through system is demonstrated. The data for 38 chemical vapors show that the detection limits of IMCell sensor follow extraordinary well over several orders of magnitude the given threshold limit values (TLVs) of vapor concentrations in the working environments providing thus good specificity to toxic chemicals. The IMS patterns for eight chemicals are presented and the shape of patterns are discussed through theories related to ionization and ion mobility in ambient air. As demonstrated with exposures to 30-300 ppm methyl tert-butyl ether (MTBE) one of the main roles of the MOS sensor is to compensate the strong decreasing influence of humidity to the IMCell sensor signal by providing sensitive output regardless of humidity to some toxic organic compounds. Furthermore, it is also demonstrated that the chemical recognition of toxic substances by IMCell sensor is improved when the signal from the MOS sensor is available for the pattern recognition. The long-term stability studies were carried out, too, and the results indicate that minimum 3000 h operational lifetime can be obtained for the whole detector system.
机译:结合使用小型非常规抽吸式离子迁移谱仪(IMS;称为离子迁移池,IMCell)和金属氧化物半导体(MOS)气体传感器,以连续1-2 l / min的流量检测有毒化学蒸汽系统进行了演示。 38种化学蒸气的数据表明,IMCell传感器的检测极限在给定的工作环境中的蒸气浓度阈值极限值(TLV)超过几个数量级的情况下非常出色,从而对有毒化学物质具有良好的特异性。通过与环境空气中的电离和离子迁移率有关的理论,介绍了八种化学药品的IMS模式,并讨论了模式的形状。正如暴露于30-300 ppm的甲基叔丁基醚(MTBE)所证明的那样,MOS传感器的主要作用之一是通过提供敏感的输出来补偿湿度对IMCell传感器信号的强烈下降影响,而不管湿度对某些有毒物质的影响。有机化合物。此外,还证明了当来自MOS传感器的信号可用于模式识别时,IMCell传感器对有毒物质的化学识别得到改善。还进行了长期稳定性研究,结果表明,整个检测器系统的最小使用寿命为3000小时。

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