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首页> 外文期刊>Environmental Science and Pollution Research >Influence of nano-additive on performance and emission characteristics of a diesel engine running on neat neem oil biodiesel
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Influence of nano-additive on performance and emission characteristics of a diesel engine running on neat neem oil biodiesel

机译:纳米添加剂对整齐纽约油生物柴油运行柴油机性能和排放特性的影响

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摘要

This work investigates the experimental study to examine the operation characteristics of a neat neem oil methyl ester (BD100) along with silver oxide nano-particles as a metal-based additive in various mass fractions. Silver oxide nano-particle is mixed into 100% of BD100 at 5 and 10ppm. The experimental investigation on diesel engine reveals that the addition of silver oxide nano-particles to BD100 resulted in enhancement of brake thermal efficiency (BTE) with a reduction in brake specific fuel consumption (BSFC). The tested emission parameters such as CO, HC, NOx, and smoke were decreased by 12.22, 10.89, 4.24, and 6.61% for BD100+ Ag2O (5ppm) and 16.47, 14.21, 6.66, and 8.34% for BD100 respectively when compared to BD100. Overall, improvement in ignition characteristics of the engine was finer by adding 5 and 10ppm of silver oxide nano-particle to BD100 on account of the enhanced surface area to volume ratio.
机译:该工作研究了实验研究,以便在各种质量级分中将氧化物纳米油甲酯(BD100)以及氧化硼纳米颗粒的操作特性以及氧化氧化物纳米颗粒中的氧化氧化物纳米颗粒。 将氧化银纳米颗粒在5和10ppm下混入100%BD100。 柴油发动机的实验研究表明,向BD100中加入氧化银纳米颗粒导致制动热效率(BTE)的增强,并降低制动特定燃料消耗(BSFC)。 与BD100相比,BD100 + Ag2O(5ppm)和16.47,14.21,60.47,14.21,6.66和8.34%,2.22,10.89,4.24和6.61%的测试发射参数分别降低12.22,10.89,4.24和6.6.47,14.21,6.66和8.34%。 总体而言,由于增强的表面积与体积比在BD100中加入5和10ppm,发动机的点火特性的改善更细。

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