Lazik Detlef, Sood Pramit
Helmholtz Centre for Environmental Research-UFZ, Theodor-Lieser-Strasse 4, Halle (Saale) D-06120, Germany.
Sensors (Basel). 2016 Nov 17;16(11):1930. doi: 10.3390/s16111930.
Linear membrane-based gas sensors that can be advantageously applied for the measurement of a single gas component in large heterogeneous systems, e.g., for representative determination of CO₂ in the subsurface, can be designed depending on the properties of the observation object. A resulting disadvantage is that the permeation-based sensor response depends on operating conditions, the individual site-adapted sensor geometry, the membrane material, and the target gas component. Therefore, calibration is needed, especially of the slope, which could change over several orders of magnitude. A calibration-free approach based on an internal gas standard is developed to overcome the multi-criterial slope dependency. This results in a normalization of sensor response and enables the sensor to assess the significance of measurement. The approach was proofed on the example of CO₂ analysis in dry air with tubular PDMS membranes for various CO₂ concentrations of an internal standard. Negligible temperature dependency was found within an 18 K range. The transformation behavior of the measurement signal and the influence of concentration variations of the internal standard on the measurement signal were shown. Offsets that were adjusted based on the stated theory for the given measurement conditions and material data from the literature were in agreement with the experimentally determined offsets. A measurement comparison with an NDIR reference sensor shows an unexpectedly low bias (<1%) of the non-calibrated sensor response, and comparable statistical uncertainty.
基于线性膜的气体传感器可根据观测对象的特性进行设计,能有利地应用于大型异质系统中单一气体成分的测量,例如用于地下二氧化碳的代表性测定。由此产生的一个缺点是,基于渗透的传感器响应取决于操作条件、针对各个位点适配的传感器几何形状、膜材料以及目标气体成分。因此,需要进行校准,尤其是对斜率的校准,因为斜率可能会在几个数量级范围内变化。为克服多标准斜率依赖性,开发了一种基于内部气体标准的免校准方法。这导致传感器响应的归一化,并使传感器能够评估测量的重要性。该方法在使用管状聚二甲基硅氧烷(PDMS)膜对干燥空气中不同二氧化碳浓度的内标进行二氧化碳分析的示例中得到了验证。在18K范围内发现温度依赖性可忽略不计。展示了测量信号的转换行为以及内标浓度变化对测量信号的影响。根据给定测量条件的所述理论和文献中的材料数据调整的偏移量与实验确定的偏移量一致。与非分散红外(NDIR)参考传感器的测量比较表明,未校准的传感器响应偏差出乎意料地低(<1%),且统计不确定性相当。