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Effect of kinematic viscosity variation with blended-oil biodiesel on engine performance and exhaust emission in a power tiller engine

机译:弹性 - 油生物柴油对电力分蘖发动机发动机性能和废气发射的影响

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摘要

The optimum conditions for producing biodiesel by combining beef tallow, a waste resource with high saturated fatty acid content, and soybean oil, which has high unsaturated fatty acid content, were investigated. Furthermore, the kinematic viscosity reduction effects of biodiesel by using heating and ultrasonic irradiation were verified, and their impacts on engine performance and exhaust emissions were evaluated. The result shows that the optimum production conditions are a blend ratio of TASO3 (soybean oil to tallow blend ratio of 7:3) and a methanol to oil molar ratio of 12:1. Kinematic viscosity reduction experiment results showed that the kinematic viscosity reduction effects of ultrasonic irradiation and heating were similar, but the heating device is considered more effective because it is simpler and cheaper than the ultrasonic device. Experiment results on output performance and exhaust performance showed that the engine performance and exhaust performance of the fuel with reduced kinematic viscosity were higher than those of the untreated fuel. However, the output of biodiesel was lower than those of conventional diesel (CD) due to the low calorific value of biodiesel; the NOx and CO2 emissions of biodiesel were higher than those of CD, but the CO and HC emissions of biodiesel were lower.
机译:研究了通过组合牛肉脂肪制造生物柴油的最佳条件,具有高饱和脂肪酸含量的废弃物,具有高不饱和脂肪酸含量的大豆油。此外,验证了通过使用加热和超声辐射的生物柴油的运动粘度降低效应,并评估了对发动机性能和废气排放的影响。结果表明,最佳的生产条件是TasO3(大豆油与牛油混合比为7:3)的混合比,甲醇与油摩尔比为12:1。运动粘度还原实验结果表明,超声辐照和加热的运动粘度降低效应相似,但加热装置被认为更有效,因为它比超声装置更简单和便宜。对输出性能和排气性能的实验结果表明,具有降低的运动粘度降低的燃料的发动机性能和排气性能高于未处理的燃料。然而,由于生物柴油的低热值,生物柴油的输出低于常规柴油(CD);生物柴油的NOx和CO2排放量高于CD,但生物柴油的CO和HC排放较低。

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