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Thermal decomposition characteristics and kinetic analysis of C4F7N/CO2 gas mixture

机译:C4F7N / CO2气体混合物的热分解特性和动力学分析

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In recent years, the C4F7N/CO2 gas mixture has been considered one of the most promising candidates to replace the strong greenhouse gas SF6 in high-voltage power equipment. However, there are few studies on the thermal stability of the C4F7N/CO2 gas mixture. In this paper, the characteristics and mechanism of the thermal decomposition of C4F7N/CO2 gas mixture are analyzed by both experiment and calculation. Gas chromatography-mass spectrometry (GC-MS) is applied to detect the decomposition products at different temperatures and pressures. The measurements show that the C4F7N/CO2 mixture undergoes significant decomposition above about 700C and the main products are CO, C2F6, C3F6, C3F8, C2F3N, C3F5N and C2N2. Previous studies have explored the possible decomposition pathways of C4F7N and predicted the free radicals produced after the decomposition. However, the subsequent processes in which the free radicals recombine and form stable products have not been considered. In this study, both the decomposition and recombination pathways are considered and the corresponding reaction rate constants are calculated. Based on this, precise chemical kinetic composition results at steady state during the thermal decomposition of C4F7N/CO2 mixture are obtained. Further, the influences of pressure and temperature on the decomposition products are theoretically investigated. It is also found that C4F7N/CO2 gas mixtures are more stable under higher pressures. The results provide an important reference for the engineering application of C4F7N/CO2 gas mixtures.
机译:近年来,C4F7N / CO2气体混合物被认为是最有希望的候选人之一,以更换高压电力设备中的强温室气体SF6。然而,关于C4F7N / CO2气体混合物的热稳定性,少数研究。本文通过实验和计算分析了C4F7N / CO2气体混合物热分解的特性和机理。施用气相色谱 - 质谱(GC-MS)以检测不同温度和压力下的分解产物。该测量结果表明,高于约700℃和主产品C4F7N / CO2混合物经历显著分解为CO,C2F6,C3F6,C3F8,C2F3N,C3F5N和C 2 N 2。以前的研究探索了C4F7N可能的分解途径,并预测了分解后产生的自由基。然而,未考虑自由基重组和形成稳定产物的后续方法。在该研究中,考虑分解和重组途径并计算相应的反应速率常数。基于此,得到了精确的化学动力学组合物在获得C4F7N / CO 2混合物的热分解期间的稳态。此外,理论上研究了压力和温度对分解产物的影响。还发现C4F7N / CO 2气体混合物在较高压力下更稳定。结果为C4F7N / CO2气体混合物的工程应用提供了重要的参考。

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