铜
兴奋剂
材料科学
氧化铜
变压器
变压器油
化学工程
冶金
光电子学
电气工程
工程类
电压
作者
Hao Wu,Jie Fang,Shuai Yuan,Yiping Liu,Junfang Zeng,Tianyan Jiang
标识
DOI:10.1016/j.mtchem.2024.102038
摘要
The safe operation of oil-immersed transformers is the key to the power system, and preventing the harm caused by partial discharge is of great significance. In this study, it is proposed to use copper oxide particles (CuO, (CuO)2) doped with ZrSSe to detect dissolved gases (CO, CO2, C2H4) in transformer oil. Compared with the initial substrate band structure (0.655 eV), CuO and (CuO)2 reduce the band structures to 0.487 eV and 0.133 eV. The adsorption of target gases on initial and modified substrate surfaces is systematically studied using density functional theory. By comparing the adsorption parameters, it can be found that the adsorption capacity of ZrSSe promoted by copper oxide particles to the target gases. The CO2 is weakly physically adsorbed on the two modified substrates. The adsorption capacity is ranked as follows: CO > C2H4 >CO2. In terms of sensing performance, the improvement effect of copper oxide particles on the substrate has also been verified through molecular orbital theory, sensitivity and recovery time. The findings in this article can provide a theoretical basis for the application of ZrSSe in detecting the operating status of transformers and gas sensing.
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