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Volatile Acid and Polymer Formation in Various Insulation Liquids Upon Accelerated Thermal Ageing

机译:加速热老化时,各种绝缘液中的挥发性酸和聚合物形成

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Insulation liquids perform a vital role in protecting power equipment, such as transformers, from thermal, electrical and environmental stress. Considering the poor fire-safety properties and low biodegradability of mineral oil as the leading kind of insulation liquid, alternative insulation liquids are of high interest for their implementation in power equipment. In this experiment we aimed to simulate the processes occurring in faulty power equipment by ageing four different kinds of insulation liquids (mineral oil, GTL-insulation liquid, synthetic ester and natural ester) under laboratory conditions. The use of optimized analytical routine methods has allowed us to monitor as well as quantify volatile acid and polymer formations upon ageing of insulation liquids. The ageing process under aerated conditions has led to the formation of formic, acetic and propionic acid, especially in natural ester, alongside notable polymerization effects. All other types of insulation liquids showed significantly lower amounts of volatile acids. Per contra, the experiments conducted under oxygen-free conditions resulted in minimal volatile acid and polymer build-ups in all four insulation liquids.
机译:绝缘液体在保护电力设备(如变压器)免受热,电气和环境压力方面的作用中的作用至关重要。考虑到贫困的防火性能和矿物油的低生物降解性作为领先的绝缘液,替代绝缘液对于其在电力设备中的实施具有很高的兴趣。在该实验中,我们旨在通过在实验室条件下老化四种不同的绝缘液(矿物油,GTL - 绝缘液,合成酯和天然酯类,模拟故障电力设备发生的过程。使用优化的分析常规方法使我们能够在绝缘液体老化时监测和量化挥发性酸和聚合物形成。膨胀条件下的老化过程导致形成甲型,乙酸和丙酸,尤其是天然酯,以及显着的聚合作用。所有其他类型的绝缘液显示出显着较低的挥发性酸。每个对比,在无氧条件下进行的实验导致所有四种绝缘液中的最小挥发性酸和聚合物覆盖。

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