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Detection and determination of harmful gases in confined spaces for the Internet of Things based on cataluminescence sensor

机译:基于催化传感器的东西互联网互联网空间中有害气体的检测和测定

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摘要

Gaseous cataluminescence (CTL) sensor instrument was developed for detecting and measuring pernicious gases such as ethyl ether, acetone, n-hexane, chloroform by using aluminum/iron oxides composites. The materials synthesis, apparatus and software, optimal conditions (flow rate, wavelength, temperature and concentration), selectivity and stability were thoroughly studied. The results indicated the CTL sensor instrument could response to ethyl ether under 180 degrees C, which was lower than most of the reported CTL reaction temperatures. In addition, the results showed that the linear detection range was wide, ranging from 10 ppm to 5800 ppm (R = 0.9978, n = 7), and the detection limit was also low (4.3 ppm). Moreover, for ethyl ether detection, the CTL sensor showed the response time of 4 s and recovery time of 8 s, which was relatively short. The pattern recognition methods included PCA, KPCA were selected for evaluating the recognition performance of this CTL sensor, results showed the analytes could be classified clearly. The low reaction temperature, excellent sensitivity, selectivity, stability and recognition performance indicated this CTL sensor was ideal for gas contaminants detection in confined spaces for the Internet of Things.
机译:开发了气态催化剂(CTL)传感器仪表,用于通过使用铝/氧化铁复合材料检测和测量诸如乙醚,丙酮,正己烷,氯仿如乙醚,丙酮,正己烷等的恶性气体。彻底研究了材料合成,设备和软件,最佳条件(流速,波长,温度和浓度),选择性和稳定性。结果表明CTL传感器仪器可以响应于180℃下的乙醚,其低于报告的CTL反应温度的大部分。此外,结果表明,线性检测范围宽,范围为10ppm至5800ppm(r = 0.9978,n = 7),检测极限也低(4.3ppm)。此外,对于乙醚检测,CTL传感器显示出4秒和恢复时间的响应时间和8s的恢复时间相对较短。图案识别方法包括PCA,选择KPCA用于评估该CTL传感器的识别性能,结果显示分析物可以清楚地分类。低反应温度,优异的灵敏度,选择性,稳定性和识别性能表明,该CTL传感器是气体污染物在互联网互联网的限制空间中的气体污染物检测。

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