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Enhancement of Gas Sensing Characteristics of Multiwalled Carbon Nanotubes by CF4Plasma Treatment for SF6Decomposition Component Detection

机译:CF4plasma处理SF6Decomposition组件检测的CF4Plasma处理增强碳纳米管的气体传感特性

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摘要

H2S and SO2 are important gas components of decomposed SF6 of partial discharge generated by insulation defects in gas-insulated switchgear (GIS). Therefore, H2S and SO2 detection is important in the state evaluation and fault diagnosis of GIS. In this study, dielectric barrier discharge was used to generate CF4 plasma and modify multiwalled carbon nanotubes (MWNTs). The nanotubes were plasma-treated at optimum discharge conditions under different treatment times (0.5, 1, 2, 5, 8, 10, and 12 min). Pristine and treated MWNTs were used as gas sensors to detect H2S and SO2. The effects of treatment time on gas sensitivity were analyzed. Results showed that the sensitivity, response, and recovery time of modified MWNTs to H2S were improved, but the recovery time of SO2 was almost unchanged. At 10 min treatment time, the MWNTs showed good stability and reproducibility with better gas sensing properties compared with the other nanotubes.
机译:H2S和SO2是通过气体绝缘开关设备(GIS)中的绝缘缺陷产生的局部放电的分解SF6的重要气体组分。因此,H2S和SO2检测在GIS的状态评估和故障诊断中是重要的。在该研究中,介电阻挡放电用于产生CF4等离子体并改变多壁碳纳米管(MWNT)。在不同的处理时间(0.5,1,2,5,8,10和12分钟)下,将纳米管在最佳放电条件下进行等离子体处理。使用原始和处理的MWNT作为气体传感器来检测H2S和SO2。分析了治疗时间对气体敏感性的影响。结果表明,改善了修饰的MWNT的敏感性,响应和恢复时间,但SO2的恢复时间几乎保持不变。在10分钟的处理时间下,与其他纳米管相比,MWNT显示出良好的稳定性和再现性,具有更好的气体传感性能。

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