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Analysis of the Sensitivity of K-Type Molecular Sieve-Deposited MWNTs for the Detection of SF6 Decomposition Gases under Partial Discharge

机译:K型分子筛沉积多壁碳纳米管在部分放电条件下检测SF6分解气体的灵敏度分析

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摘要

Sulfur hexafluoride (SF6) is widely utilized in gas-insulated switchgear (GIS). However, part of SF6 decomposes into different components under partial discharge (PD) conditions. Previous research has shown that the gas responses of intrinsic and 4 Å-type molecular sieve-deposited multi-wall carbon nanotubes (MWNTs) to SOF2 and SO2F2, two important decomposition components of SF6, are not obvious. In this study, a K-type molecular sieve-deposited MWNTs sensor was developed. Its gas response characteristics and the influence of the mixture ratios of gases on the gas-sensing properties were studied. The results showed that, for sensors with gas mixture ratios of 5:1, 10:1, and 20:1, the resistance change rate increased by nearly 13.0% after SOF2 adsorption, almost 10 times that of MWNTs sensors, while the sensors’ resistance change rate with a mixture ratio of 10:1 reached 17.3% after SO2F2 adsorption, nearly nine times that of intrinsic MWNT sensors. Besides, a good linear relationship was observed between concentration of decomposition components and the resistance change rate of sensors.
机译:六氟化硫(SF6)被广泛用于气体绝缘开关设备(GIS)中。但是,部分放电(PD)条件下,部分SF6分解为不同的组分。先前的研究表明,本征和4Å型分子筛沉积的多壁碳纳米管(MWNT)对SF6的两个重要分解成分SOF2和SO2F2的气体响应并不明显。在这项研究中,开发了一种K型分子筛沉积的MWNTs传感器。研究了其气体响应特性以及混合比例对气体传感性能的影响。结果表明,对于混合比为5:1、10:1和20:1的传感器,SOF2吸附后电阻变化率提高了近13.0%,几乎是MWNTs传感器的10倍,而传感器SO2F2吸附后,混合比为10:1的电阻变化率达到17.3%,几乎是固有MWNT传感器的9倍。此外,分解成分的浓度与传感器的电阻变化率之间存在良好的线性关系。

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