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Thermal aspects of a micro thermal conductivity detector for micro gas chromatography

机译:微型气相色谱法的微导热探测器的热方面

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We report on a micro Thermal Conductivity Detector (μTCD) design, simulation, fabrication and experimental characterization. The considered detector has been fabricated and integrated in a full micro gas chromatography device. It has been experimentally tested for different carrier gases, air, nitrogen and ethanol with different concentrations of three pollutants, Toluene, Ethylbenzene, and Xylene for instance. The device reveals to be sensitive for concentrations as low as 500 ppm. We consider different operation modes under constant temperature and constant current. We also consider steady state and transient operation modes. We show that for the same device, sensitivity strongly depends on operation mode. In addition to sensitivity enhancement, the transient operation mode enables energy consumption reduction and fast responses with measurements as fast as 0.9 ms. Experimental results are in very good agreement with 3D numerical multi-physical simulations based on Finite Element Method.
机译:我们报告了微导热探测器(μTCD)设计,仿真,制造和实验表征。所考虑的检测器已经制造并集成在全微气相色谱装置中。它已经通过例如具有不同浓度的三种污染物,甲苯,乙苯和二甲苯的不同载气,空气,氮和乙醇进行了实验测试。该装置显示对低至500ppm的浓度敏感。我们在恒温和恒定电流下考虑不同的操作模式。我们还考虑稳定状态和瞬态操作模式。我们表明对于同一设备,灵敏度强烈取决于操作模式。除灵敏度增强外,瞬态操作模式还可以减少能量消耗和快速响应,以快速测量为0.9毫秒。实验结果与基于有限元法的3D数值多物理模拟非常好。

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