A Comparative Study of Blended Ester and Mineral Oil with Variances in Refining Processes

Prabhat Kumar Maiti
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Abstract

Transformer oil, made from petroleum, is used all around the world. Due to a lack of petroleum resources, non-biodegradability, and low fire safety, ester-based oil has emerged as the preferred option. Esters are more expensive than mineral oils, and they have lower oxidation stability. A proper blending of ester and mineral oil can be used to alter these parameters. The insulating property of mineral oil is heavily influenced by the source, chemical composition, and refining method. As a result, research into the performance of blended oils of ester and mineral oils with varied characteristics has become necessary. The physicochemical and electrical properties of a mixture of an ester and mineral oils from various refining sources were compared in this study. The experimental study included measurements of tan delta and resistivity at various oil temperatures. Acidity, interfacial tension, pour point, viscosity, oxidation stability, and other characteristics of the oil samples were investigated further. The IEC 60422, IEC 60247, and IEC 61125 guidelines were used to characterize the oil samples for these parameters. The results were compared to mineral oil, which is widely used as an insulating liquid. This study examined the workability of a transformer containing an ester and mineral oil mixture. Based on the comparable results achieved through these experiments, it was found that the presence of ester improved the oxidation stability of blended liquid insulators, irrespective of the quality of MOs.
混合酯与矿物油精制工艺差异的比较研究
由石油制成的变压器油在世界各地都在使用。由于石油资源缺乏、不可生物降解性和防火安全性低,酯基油已成为首选。酯类比矿物油更昂贵,而且它们的氧化稳定性较低。酯和矿物油的适当混合可以改变这些参数。矿物油的绝缘性能受其来源、化学成分和精制方法的影响很大。因此,有必要研究具有不同特性的酯类和矿物油的调合油的性能。本研究比较了不同精炼来源的酯和矿物油的混合物的物理化学和电学性质。实验研究包括在不同油温下的tan δ和电阻率测量。进一步考察了油样的酸度、界面张力、倾点、粘度、氧化稳定性等特性。使用IEC 60422, IEC 60247和IEC 61125指南来表征这些参数的油样品。结果与矿物油进行了比较,矿物油被广泛用作绝缘液体。本研究考察了一种含有酯和矿物油混合物的变压器的可加工性。通过这些实验获得的比较结果发现,无论MOs质量如何,酯的存在都提高了混合液体绝缘子的氧化稳定性。
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