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Impact of various metal-oxide based nanoparticles and biodiesel blends on the combustion, performance, emission, vibration and noise characteristics of a CI engine

机译:各种金属氧化物纳米粒子和生物柴油混合对CI发动机的燃烧,性能,发射,振动和噪声特性的影响

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With the burning of 1 L of diesel fuel, approximately 3 kg of greenhouse gas is released into the atmosphere. Therefore, it is of great importance to reduce emissions with some additives in diesel engines. This study deals with the impacts of blends of waste cooking oil methyl ester and various metal-oxide based nanoparticles on the emission, combustion, performance, vibration and noise characteristics of a single-cylinder diesel engine. The test engine was loaded at different engine loads of 2.5, 5, 7.5 and 10 Nm and a constant engine speed of 2000 rpm. In this investigation, various fuels [called as reference diesel (D100), 10 vol% of waste cooking oil methyl ester (B10), and finally the mass fractions of 100 ppm aluminium oxide (B10Al(2)O(3)), titanium oxide (B10TiO(2)) and silicon oxide (B10SiO(2)) into the B10, separately] were tested. The addition of metal-oxide based nanoparticles has firstly increased the viscosity, cetane number, and heating value of biodiesel. Higher oxygen atoms in biodiesel-nanoparticles blends have improved the quality of the combustion process. Higher peak point in CPmax and HRRmax could be reached in these nano fuels due to their lower cetane numbers than that of D100. CO, HC and NOx emissions were significantly reduced with the blending of nanoparticles and biodiesel in comparison with those of D100. The addition of nanoparticles highly improved engine performance. B10 had the lowest thermal efficiency due to its heating value, but its efficiency was converted to the highest one with the addition of nanoparticle. In conclusion, this study is suggesting that the addition of metal-oxide based nanoparticles into biodiesel blends can give better results than using biodiesel alone for diesel engines.
机译:随着1升柴油燃料的燃烧,大约3公斤的温室气体被释放到大气中。因此,在柴油发动机中减少一些添加剂的排放是非常重要的。本研究涉及废物烹饪油甲酯和各种金属氧化物基纳米颗粒的混合物对单缸柴油发动机的发射,燃烧,性能,振动和噪声特性的影响。测试引擎在不同的发动机负载量为2.5,5,7.5和10nm的不同发动机载荷和2000 rpm的恒定发动机速度。在该研究中,各种燃料[称为参考柴油(D100),10 Vol%的废物烹饪油甲酯(B10),最后是100ppm氧化铝的质量级分(B10Al(2)O(3)),钛测试氧化物(B10TiO(2))和氧化硅(B10SiO(2))分别,分别]。添加金属氧化物的纳米颗粒首先增加了生物柴油的粘度,十六烷数和加热值。生物柴油 - 纳米粒子共混物中较高的氧原子改善了燃烧过程的质量。在这些纳米燃料中可以达到CPMAX和HRRMAX中的较高峰值,因为它们的较低的十六烷值小于D100的较低。纳米颗粒和生物柴油的混合与D100相比,CO,HC和NOx排放显着降低。添加纳米颗粒高度改善的发动机性能。 B10由于其加热值具有最低的热效率,但通过加入纳米粒子将其效率转化为最高的效率。总之,该研究表明,将基于金属氧化物的纳米颗粒加入生物柴油共混物中可以提供比使用柴油发动机单独使用生物柴油的更好的结果。

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