生物柴油三元共混物的物理特性

Q4 Engineering
A. V., S. K
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引用次数: 0

摘要

化石燃料正在逐渐枯竭,需要寻找新的能源选择。植物油是生产生物柴油的重要资源,是原油柴油的最佳替代品。本研究旨在研究柴油与亚麻籽油、废食用油和橡胶籽油作为三元混合生物柴油的物理特性。三元混合物是指柴油、生物柴油-1和生物柴油-2的组合。以亚麻仁和橡胶籽油为原料,按不同比例制备了四种三元共混物,并以亚麻仁和废食用油为原料制备了另外四种三元共混物。这三种油具有相对相似的物理特性,不可食用。使用三元生物柴油混合物进行了物理特性测试。通过对共混物的运动粘度、密度、闪点和燃点的比较,揭示了三元共混物的物理特性。由95%柴油、2.5%亚麻籽和2.5%橡胶籽混合而成的生物柴油具有更好的物理特性。通过对图表的分析,特定的混合物具有与柴油相似的物理特性。因此,与其他共混物相比,亚麻籽和橡胶籽油的共混物具有最佳的物理特性。它具有较低的粘度值,几乎与柴油相同。所以它不会影响发动机的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physical Characteristics of Ternary Blends of Biodiesel
Fossil fuels are being gradually exhausted and need to go to new energy options. The vegetable oils are significant resources for biodiesel production and the best alternative for diesel from crude oil. This research aims to study the physical characteristics of diesel in combination with linseed oil, waste cooking oil and rubber seed oil as ternary blend biodiesels. Ternary blends mean a combination of diesel, biodiesel-1 and biodiesel-2. Four ternary blends have been prepared in various proportions from linseed and rubber seed oil, and another four ternary blends have been prepared from linseed and waste cooking oil. These three oils have relatively similar physical characteristics, non-edible. Physical characteristics tests were carried out using ternary biodiesel mixtures. The experimental study has shown the physical characteristics of the ternary blend by comparing the blends' kinematic viscosity, density, flash point and fire point. The blend of 95% diesel, 2.5% linseed and 2.5% rubber seed biodiesel gives better physical characteristics. By analysing the graph, the particular blends give similar physical characteristics to diesel. So the blend of linseed and rubber seed oil gives the best physical characteristics compared to other blends. It has lower viscosity values, nearly the same as diesel. So it does not affect the performance of an engine.
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来源期刊
Academic Journal of Manufacturing Engineering
Academic Journal of Manufacturing Engineering Engineering-Industrial and Manufacturing Engineering
CiteScore
0.40
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