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Breakdown characteristics of CF3I/N2/CO2 mixture in power frequency and lightning impulse voltages

机译:CF3I / N2 / CO2混合物在工频和雷电冲击电压下的击穿特性

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Trifluoroiodomethane (CF3I) and its mixtures are believed to be prospective alternatives to sulfur hexafluoride (SF6),which has been included as a greenhouse gas.In this paper,the breakdown properties of a CF3I/N2/CO2 mixture with the volume fraction of CF3I fixed at 10% are investigated under power frequency and lightning impulse voltages.The experimental result shows that N2 possesses higher power frequency and negative lightning impulse breakdown voltages than CO2,but the power frequency and more negative lightning impulse breakdown voltages of the CF3I/N2/CO2 mixture do not increase with the content of N2.For the purpose of explaining this abnormal phenomenon,the ionization energies and excitation energies of CF3I,N2 and CO2 are calculated.The computation results indicate that the ionization energy of CF3I is lower than the first excitation energy of N2,but higher than the lowest excitation energy of CO2,which means that CF3I molecules are easily ionized by metastable N2 molecules.The first excitation energy of N2 is too high,which hinders its application as the buffer gas of CF3I.
机译:三氟碘甲烷(CF3I)及其混合物被认为是六氟化硫(SF6)的潜在替代物,六氟化硫已被用作温室气体。本文研究了CF3I / N2 / CO2混合物(CF3I的体积分数)的分解特性在工频和雷电冲击电压下研究了固定为10%的电流。实验结果表明,N2具有比CO2高的工频和负雷电击穿电压,但CF3I / N2 /的工频和负雷电击穿电压更多CO2的混合气不会随N2的含量而增加。为解释这种异常现象,计算了CF3I,N2和CO2的电离能和激发能。计算结果表明CF3I的电离能低于第一N2的激发能,但高于CO2的最低激发能,这意味着CF3I分子易于被亚稳N2分子电离。 N2的第一次激发能过高,阻碍了其作为CF3I的缓冲气体的应用。

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