2H Study on ZnO-based gas sensor for detection of acetylene dissolved in transformer oil
首页> 外文会议>International Instrumentation and Measurement Technology Conference >Study on ZnO-based gas sensor for detection of acetylene dissolved in transformer oil
【24h】

Study on ZnO-based gas sensor for detection of acetylene dissolved in transformer oil

机译:ZnO基气体传感器检测变压器油中乙炔的研究

获取原文

摘要

Acetylene (C2H2) is one of the most important and typical characteristic fault gas dissolved in power transformer oil, and on-line monitoring its concentration could reflect the operational state of transformer timely, which could prevent safety issues of power grid effectively. Considering the traditional zinc oxide (ZnO) gas sensor exhibiting some shortcomings, such as higher operating temperature, lower response, poor selectivity, and so on. The paper proposes the ZnO-based (pure ZnO, cobalt-doped ZnO) gas sensors to contrastively study. The characterization results of nanomaterials (XRD, FESEM, HRTEM) show that the as-grown products possess the good crystal structure and high purity. The gas-sensing experiment results on optimum working temperature (Co-ZnO: 160 °C, pure ZnO: 180 °C), response-recovery time (Co-ZnO: 30-33 s, pure ZnO: 35-51 s), sensitivity (Co-ZnO: 9.886, pure ZnO: 1.971; 200 ppm C2H2), the limit of detection (3 ppm, Co-ZnO), stability (20, 50, 100, 200, 400 ppm C2H2), and selectivity (H2, CH4, C2H2, C2H4; 50, 100, 200 ppm) are obtained. They correspond to the theoretically analysis which based on the DFT-D calculations. The result of gas-sensing properties indicates that the dopant of Co is beneficial to reduce the optimum working temperature and response-recovery time significantly. In addition, it enhances the sensitivity of gas sensor evidently and process a good stability as well as selectivity. The orbital hybridization occurred during C2H2adsorption, which promotes the electron transfer and conductivity changes. The results lay a solid foundation for the preparation of new ZnO-based gas sensor that serve for the transformer condition monitoring and fault diagnosis.
机译:乙炔(C 2 H 2 )是溶解在电力变压器油中的最重要,最典型的故障气体之一,在线监测其浓度可以及时反映变压器的运行状态,从而可以有效地预防电网安全问题。考虑到传统的氧化锌(ZnO)气体传感器存在一些缺点,例如工作温度较高,响应较低,选择性差等。本文提出了基于ZnO的(纯ZnO,掺杂钴的ZnO)气体传感器进行对比研究。纳米材料(XRD,FESEM,HRTEM)的表征结果表明,所生长的产物具有良好的晶体结构和高纯度。在最佳工作温度(Co-ZnO:160°C,纯ZnO:180°C),响应恢复时间(Co-ZnO:30-33 s,纯ZnO:35-51 s),灵敏度(Co-ZnO:9.886,纯ZnO:1.971; 200 ppm C 2 H 2 ),检出限(3 ppm,Co-ZnO),稳定性(20、50、100、200、400 ppm C 2 H 2 )和选择性(H 2 ,CH 4 , C 2 H 2 , C 2 H 4 ;得到50、100、200 ppm)。它们对应于基于DFT-D计算的理论分析。气敏特性的结果表明,Co的掺杂剂有利于显着降低最佳工作温度和响应恢复时间。此外,它显着提高了气体传感器的灵敏度,并具有良好的稳定性和选择性。轨道杂交发生在C期间 2 H 2 吸附,从而促进电子转移和电导率变化。该结果为制备新型的基于ZnO的气体传感器奠定了坚实的基础,该传感器可用于变压器状态监测和故障诊断。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号