首页> 外文会议>SAE International Powertrains, Fuels and Lubricants Meeting >Experimental Investigation of the Effect of Karanja Oil Biodiesel with Cerium Oxide Nano Particle Fuel Additive on Lubricating Oil Tribology and Engine Wear in a Heavy Duty 38.8L,780 HP Military CIDI Diesel Engine
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Experimental Investigation of the Effect of Karanja Oil Biodiesel with Cerium Oxide Nano Particle Fuel Additive on Lubricating Oil Tribology and Engine Wear in a Heavy Duty 38.8L,780 HP Military CIDI Diesel Engine

机译:Karanja油生物柴油对氧化铈纳米粒子燃料添加剂润滑油摩擦学和发动机磨损效果的实验研究38.8L,780 HP军用CIDI柴油发动机

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Biodiesel fuels are an alternative to diesel fuel. Biodiesel is an oxygenated, sulphur free, non-toxic, biogradable and renewable fuel. It is derived from vegetable oils. Since straight vegetable oils have quite high viscosity compared to mineral diesel, they have to be modified to bring their combustion-related properties and viscosity closer to mineral diesel. This is done by modifying their molecular structure through a transesterification process. In the present study, a military heavy duty 38.8 liter, 585 kW supercharged, compression ignition diesel injection (CIDI) engine was fuelled with diesel, Karanja oil methyl ester (KOME) biodiesel, and KOME biodiesel with cerium oxide fuel additive, respectively. These were subjected to 100 hours long term endurance tests. Lubricating oil samples, drawn from the engine fuelled with these fuels after a fixed interval of 20 hours, were subjected to elemental analysis. Atomic absorption spectroscopy was done for quantification of various metal debris concentrations. Lubricating oil samples were also subjected to ferrography test which indicated lower wear debris concentrations for a biodiesel with fuel additive operated engine. Number of tests was conducted in order to evaluate the comparative performances of these fuels such as lubrication measurement, density measurement, viscosity measurement, total base number etc. The experimental result showed that engine performance with Karanja oil biodiesel with fuel additive increased by 5%, along with lower gaseous emission including 14% - 25% lower NO_x emission, and lower total particulate number concentration, as compared to diesel fuel The performance of biodiesel fuel is found to be superior to that of diesel oil. Also, the lubricating oil life is found to be longer while operating the engine on biodiesel with fuel additive. Engine metals wear were found 26% lower for a KOME biodiesel with cerium oxide fuel additive operated engine.
机译:生物柴油燃料是柴油燃料的替代品。生物柴油是含氧,硫,无毒性,和biogradable再生燃料。它是从植物油中提取的。由于直植物油比矿物柴油有相当高粘度,他们必须进行修改,以使他们的燃烧相关性和粘度接近矿物柴油。这是通过酯交换过程修改它们的分子结构来完成。在本研究中,一个军事重型38.8升,585千瓦增压,压缩点火柴油喷射(CIDI)发动机燃用柴油,油卡兰贾甲酯(KOME)的生物柴油和生物柴油KOME用氧化铈燃料添加剂,分别。这些进行至100小时的长期耐久性试验。润滑油样品,从与20小时的固定时间间隔后,这些燃料燃料发动机拉伸,进行元素分析。原子吸收光谱法对各种金属屑浓度的定量完成。润滑油样品也进行测试铁谱这表明较低的磨损碎屑浓度用于与燃料添加剂生物柴油操作的发动机。为了评价这些燃料如润滑测量,密度测量,粘度测量,总碱值等的实验结果的比较性能进行了试验数表现出与卡兰贾油的生物柴油发动机的性能与燃料添加剂增加了5%,随着下气体排放包括14% - 25%的降低NO_x的排放,并降低总颗粒数浓度,相比于柴油燃料的生物柴油燃料的性能被发现是优于柴油。另外,润滑油寿命被发现,同时用燃料添加剂操作所述发动机上的生物柴油得较长。发动机磨损的金属,发现26%为生物柴油KOME用氧化铈燃料添加剂下操作的发动机。

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