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Greenhouse gas emission reductions through use of a sustainable alternative to SF6

机译:温室气体减排通过使用可持续的SF6替代品来减少

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For decades, SF6 has been a dielectric medium commonly used in electrical power applications, particularly for high voltage equipment. However, SF6 has long been recognized as a potent greenhouse gas and governments have sought to reduce emissions from gas-insulated equipment. The electrical power industry has demonstrated an ability and willingness to respond to these environmental issues. While emission rates have been reduced, the identification of suitable chemical alternatives to SF6 in electrical power applications has been elusive. The development of alternative dielectric gases is challenging due to the complex combination of performance and safety properties required in electrical power applications. A gaseous dielectric medium needs not only high dielectric strength but must also have good heat transfer properties and be nonflammable, thermally stable and low in toxicity. Today, a dielectric gas must also have acceptable environmental properties, specifically, zero ozone depletion potential and a much lower global warming potential compared to SF6. Until recently, achieving all of these objectives had appeared to be mutually exclusive. However, an environmentally sustainable solution that is both effective and low in climate impact is now available for some of the applications which have traditionally used SF6. This presentation will review this recently-developed, gaseous dielectric compound. This material has significantly lower global warming potential with the capability of substantially reducing greenhouse gas emissions from gas-insulated equipment.
机译:几十年来,SF6一直是一种常用于电力应用的介电介质,特别是对于高压设备。然而,SF6长期被认为是有效的温室气体,政府试图减少气体绝缘设备的排放。电力行业已经证明了对这些环境问题的能力和意愿。虽然减少排放率已经减少,但在电力应用中识别到SF6的合适化学替代品已经难以捉摸。由于电力应用所需的性能和安全性能的复杂组合,替代介电气体的发展是挑战性的。气态介电介质不仅需要高介电强度,而且还必须具有良好的传热性能,并且毒性不易燃,热稳定和低。如今,与SF6相比,介电气体还必须具有可接受的环境特性,具体地,零臭氧耗尽电位和更低的全球变暖潜力。直到最近,实现所有这些目标都似乎是相互排斥的。然而,现在可以获得一种传统上使用SF6的一些应用程序在气候影响中有效和低的环境可持续解决方案。本演示文稿将审查最近开发的气态介电化合物。该材料具有显着降低的全球变暖潜力,具有从气体绝缘设备的基本上减少温室气体排放的能力。

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