Lectorate Technologies for Criminal Investigations, Saxion University of Applied Sciences, Handelskade 75, 7417 DH Deventer, The Netherlands.
Academy of Applied Biosciences and Chemistry, HAN University of Applied Sciences, Laan van Scheut 2, 6525 EM Nijmegen, The Netherlands.
Sensors (Basel). 2023 Jun 2;23(11):5302. doi: 10.3390/s23115302.
Recently a hand-held, carbon-nanotube-based electronic nose became available on the market. Such an electronic nose could be interesting for applications in the food industry, health monitoring, environmental monitoring, and security services. However, not much is known about the performance of such an electronic nose. In a series of measurements, the instrument was exposed to low ppm vapor concentrations of four volatile organic compounds with different scent profiles and polarities. Detection limits, linearity of response, repeatability, reproducibility, and scent patterns were determined. The results indicate detection limits in the range of 0.1-0.5 ppm and a linear signal response in the range of 0.5-8.0 ppm. The repeatability of the scent patterns at compound concentrations of 2 ppm allowed the identification of the tested volatiles based on their scent pattern. However, the reproducibility was not sufficient, since different scent profiles were produced on different measurement days. In addition, it was noted that the response of the instrument diminished over time (over several months) possibly by sensor poisoning. The latter two aspects limit the use of the current instrument and make future improvements necessary.
最近,一种手持式基于碳纳米管的电子鼻在市场上推出。这种电子鼻可能在食品工业、健康监测、环境监测和安全服务等领域有应用的潜力。然而,对于这种电子鼻的性能,我们了解的还不多。在一系列的测量中,该仪器被暴露于四种具有不同气味特征和极性的挥发性有机化合物的低 ppm 蒸气浓度下。检测限、响应线性度、重复性、再现性和气味模式都被确定了。结果表明,检测限在 0.1-0.5ppm 范围内,信号响应在 0.5-8.0ppm 范围内呈线性。在 2ppm 的化合物浓度下,气味模式的重复性允许根据气味模式识别测试的挥发性物质。然而,重现性不足,因为在不同的测量日会产生不同的气味模式。此外,还注意到仪器的响应随着时间的推移(几个月)而减弱,可能是由于传感器中毒。后两个方面限制了当前仪器的使用,并需要进行未来的改进。