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Recent Advances in the Quest for a New Insulation Gas with a Low Impact on the Environment to Replace Sulfur Hexafluoride (SF6) Gas in High-Voltage Power Network Applications

机译:追求新型绝缘气体的近期进步对环境较低的影响较低,以替代高压电网应用中的六氟化硫(SF6)气体

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摘要

The growing environmental challenge of electrical energy systems has prompted a substantial increase in renewable energy generation. Such generation systems allow for significant reduction of CO2 emissions compared with a traditional fossil fuel plant. Furthermore, several improvements in power systems network configuration and operation combined with new technologies have enabled reduction of losses and energy demand, thus contributing to reduction of CO2 emissions. Another environmental threat identified in electrical networks is the leaking of insulating sulfur hexafluoride (SF6) gas used in electrical gas insulated substations (GIS) and equipment. Because of its Global Warming Potential (GWP) of nearly 24,000 and its long life in the atmosphere (over 3000 years), SF6 gas was recognized as a greenhouse gas at the 1997 COP3; since then its use and emissions in the atmosphere have been regulated by international treaties. It is expected that as soon as an alternative insulating gas is found, SF6 use in high-voltage (HV) equipment will be banned. This paper presents an overview of the key research advances made in recent years in the quest to find eco-friendly gases to replace SF6. The review reports the main properties of candidate gases that are being investigated; in particular, natural gases (dry air, N2 or CO2) and polyfluorinated gases especially Trifluoroiodomethane (CF3I), Perfluorinated Ketones, Octafluorotetra-hydrofuran, Hydrofluoroolefin (HFOs), and Fluoronitriles are presented and their strengths and weaknesses are discussed with an emphasis on their dielectric properties (especially their dielectric strength), GWP, and boiling point with respect to the minimum operating temperature for HV power network applications.
机译:电能系统的日益严重的环境挑战,促使可再生能源发电的大幅增加。这种发电系统允许显著减少二氧化碳排放量的与传统化石燃料植物相比。此外,在电力系统的网络配置和操作与新技术相结合的若干改进已启用减少的损失和能量需求,因此有助于减少二氧化碳的排放。在电网络标识的另一个环境威胁是绝缘电气气体绝缘变电站(GIS)和设备中使用的六氟化硫(SF 6)气体的泄漏。由于其全球变暖潜能值的近24000(GWP)和它的生活气氛多头(3000年),SF6气体被确认为1997年的COP3温室气体;自那时以来它在大气中使用和排放已经根据国际条约规定。据预计,一旦作为替代绝缘气体被发现,在高电压(HV)设备SF6的使用将被禁止。本文件介绍了近年来在追求以发现环保的气体取代SF6重点研究进展的概述。审查报告的候选气体是被调查的主要性能;特别是,天然的气体(干燥空气,N 2或CO 2)和聚氟化气体特别是三氟碘甲烷(CF 3 I),全氟化酮,Octafluorotetra-hydrofuran,氢氟烯烃烯烃(HFO),和Fluoronitriles都和自己的长处和弱点与重点讨论了它们的介电特性(尤其是它们的介电强度),GWP,并且相对于最小工作温度为HV电力网络应用沸点。

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