麻疯树甲酯油替代矿物油的理化和电学性质

H. B. H. Sitorus, R. Setiabudy, S. Bismo, A. Beroual
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引用次数: 16

摘要

本文报道了用麻疯树籽油替代矿物油用于电力变压器的研究。该产品在生产和使用方面有几个优点,比粗棕榈油和菜籽油等其他植物油更有优势,因为它可以在边缘或退化的土壤上种植,从而避免了利用小农目前用来种植主要作物的更肥沃的土壤;而且它很容易生长在年降雨量明显低于油棕、菜籽油、葵花籽油、大豆油、玉米油等其他物种所需降雨量的地区。例如,这些植物可以在印度尼西亚的所有土壤类型上生长,甚至在贫瘠的土壤上。在印度尼西亚东部的许多地区,由于难以种植其他作物而尚未开发的贫瘠土壤类型可以找到。此外,麻疯树油是一种非粮食作物。以麻疯树油为原料,以氢氧化钾(KOH)为原料,采用碱催化酯化工艺生产麻疯树甲酯油(JMEO),该油的粘度和酸度都能满足高压设备特别是电力变压器的要求。测定了JMEO的理化性能(含水量、粘度、酸度等)和电学性能(介电强度)。为了比较,我们还在相同的实验条件下测量了矿物油(MO)的击穿电压。结果表明,JMEO和MO的平均交流击穿电压太接近。
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Physicochemical and electrical properties of jatropha curcas methyl ester oil as a substitute for mineral oil
This paper reports the investigation of jatropha curcas seeds oil as an alternative option to replace mineral oil in power transformers. This product has several advantages that recommend both its production and usage over that of other vegetable oils as crude palm oil and rape-seeds oil because it may be grown on marginal or degraded soils thus avoiding the need to utilize those more fertile soils currently being used by smallholders to grow their staple crops; and it will readily grow in areas where annual rainfall levels are significantly lower than those required by other species such as oil palm, rape-seeds oil, sunflower oil, soybeans oil, corn oil and others. For instance, these plants can be grown on all soil types in Indonesia, even on barren soil. The barren soil types can be found in many parts of eastern Indonesia that remain untapped because of the difficulty planted with other crops. Moreover, jatropha curcas oil is non-food crops. Jatropha curcas oil is processed by alkali base catalyzed esterification process using potassium hydroxide (KOH) to produce jatropha curcas methyl ester oil (JMEO) that is a product the viscosity and acidity are acceptable for high voltage equipment especially in power transformer. The physicochemical (water content, viscosity, acidity ...) and electrical (dielectric strength) properties of JMEO were measured. For comparison, we also measured breakdown voltage of mineral oil (MO) in the same experimental conditions. The obtained results show that the average AC breakdown voltages of JMEO and MO are too close.
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