Zaidi Nayyer Abbas, Tahir Muhammad Waseem, Vellekoop Michael J, Lang Walter
International Graduate School for Dynamics in Logistics (IGS), University of Bremen, 28359 Bremen, Germany.
Institute for Microsensors, -Actuators and -Systems (IMSAS), University of Bremen, 28334 Bremen, Germany.
Sensors (Basel). 2017 Oct 7;17(10):2283. doi: 10.3390/s17102283.
Ethylene gas is a naturally occurring gas that has an influence on the shelf life of fruit during their transportation in cargo ships. An unintentional exposure of ethylene gas during transportation results in a loss of fruit. A gas chromatographic system is presented here for the detection of ethylene gas. The gas chromatographic system was assembled using a preconcentrator, a printed 3D printed gas chromatographic column, a humidity sensor, solenoid valves, and an electrochemical ethylene gas sensor. Ambient air was used as a carrier gas in the gas chromatographic system. The flow rate was fixed to 10 sccm. It was generated through a mini-pump connected in series with a mass flow controller. The metal oxide gas sensor is discussed with its limitation in ambient air. The results show the chromatogram obtained from metal oxide gas sensor has low stability, drifts, and has uncertain peaks, while the chromatogram from the electrochemical sensor is stable and precise. Furthermore, ethylene gas measurements at higher ppb concentration and at lower ppb concentration were demonstrated with the electrochemical ethylene gas sensor. The system separates ethylene gas and humidity. The chromatograms obtained from the system are stable, and the results are 1.2% repeatable in five similar measurements. The statistical calculation of the gas chromatographic system shows that a concentration of 2.3 ppb of ethylene gas can be detected through this system.
乙烯气体是一种天然存在的气体,在水果通过货船运输期间,它会对水果的保质期产生影响。运输过程中乙烯气体的意外暴露会导致水果损失。本文介绍了一种用于检测乙烯气体的气相色谱系统。该气相色谱系统由一个预浓缩器、一个3D打印的气相色谱柱、一个湿度传感器、电磁阀和一个电化学乙烯气体传感器组装而成。在气相色谱系统中使用环境空气作为载气。流速固定为10 sccm。它是通过与质量流量控制器串联的微型泵产生的。讨论了金属氧化物气体传感器在环境空气中的局限性。结果表明,从金属氧化物气体传感器获得的色谱图稳定性低、有漂移且峰不确定,而电化学传感器的色谱图稳定且精确。此外,用电化学乙烯气体传感器展示了在较高ppb浓度和较低ppb浓度下的乙烯气体测量。该系统可分离乙烯气体和湿度。从该系统获得的色谱图稳定,在五次类似测量中的结果可重复性为1.2%。气相色谱系统的统计计算表明,通过该系统可以检测到浓度为2.3 ppb的乙烯气体。