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Interruption capability and decomposed gas density of CF3I as a substitute for SF6 gas

机译:CF3I的破坏能力和分解后的气体密度可替代SF6气体

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We investigated the fundamental characteristic of CF3I as a substitute gas for SF6. CF3I has lower global warming potential. The use of pure CF3I in gas-insulated switchgear and gas circuit breakers is difficult because liquid CF3I has a high boiling point. We therefore mixed CF3I with CO2 or N2. In short line fault (SLF, 1 kApeak) and breaker terminal fault (BTF, 3 kApeak) interruption, the performance of CF3I¿CO2 approximated that of pure CF3I when the proportion of CF3I exceeded 30%. However, for BTF (20 kApeak) interruption, the performance of CF3I¿CO2 remarkably decreased. In loop current interruption for disconnecting switches, CF3I¿CO2 (30%/70%) was successfully used 200 times for 4000 A. We also measured CF3I spectra. Investigation of the decomposed gas density after current interruption revealed that fluorine release from CF3I was less than that from SF6. Iodine density released from CF3I-CO2 (30%/70%) was approximately one-third of that released from pure CF3I. In addition, iodine could be removed using an adsorbent.
机译:我们研究了CF3I作为SF6替代气体的基本特性。 CF3I具有较低的全球变暖潜能。由于液态CF3I具有高沸点,因此很难在气体绝缘的开关设备和气体断路器中使用纯CF3I。因此,我们将CF3I与CO2或N2混合。在短线故障(SLF,1 kApeak)和断路器端子故障(BTF,3 kApeak)中断中,当CF3I的比例超过30%时,CF3IβCO2的性能近似于纯CF3I。但是,对于BTF(20 kApeak)中断,CF3IβCO2的性能显着下降。在断开开关的回路电流中断中,CF3IÃCO2(30%/ 70%)已成功使用200次,电流为4000A。我们还测量了CF3I光谱。电流中断后分解气体密度的研究表明,CF3I释放的氟少于SF6释放的氟。 CF3I-CO2释放的碘密度(30%/ 70%)约为纯CF3I释放的碘密度的三分之一。另外,可以使用吸附剂除去碘。

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