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Determination of Physico-Chemical Parameter to Evaluate Biofuels for Diesel Engines Using DSC (Differential Scanning Clorimetry

机译:使用DSC评价柴油发动机的生物燃料的物理化学参数的测定(差示扫描Clorimetry

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Due to the need to replace fossil diesel in automotive engines, there is a growing demand for renewable fuels. However, to propose new fuels to be used efficiently and also, without causing damage to the environment, many studies are done. In this sense, the present study aims to evaluate two renewable fuels - farnesane and soybeam biodiesel - using the analytical technique DSC (Differential Scanning Calorimetry) for determining the oxidative thermal degradation energy of these biofuels compared to fossil diesel (reference fuel for diesel engines). The importance of studying this parameter is due to the principle that the lower the energy of oxidative thermal degradation, the best feature of burning fuel. In addition, these fuels were also tested in diesel engine OM 926 LA Euro 5 using the ESC test - European Stationary Cycle in order to monitor their performance and emissions. The results showed that the oxidative degradation of energy values was: 359.4 kJ / kg for farnesane, 2911,0 kJ / kg for biodiesel and 843.8 kJ / kg for fossil diesel. The tests done on the engine showed that the farnesane presented lower emissions NOx, HC e CO_2 and even better performance compared to the other two fuels. This study shows that there is a direct correlation between energy oxidative degradation and engine performance.
机译:由于需要更换化石柴油在汽车发动机中,对可再生燃料的需求不断增长。但是,为了提出有效使用的新燃料,而且在不对环境造成损害的情况下,已经完成了许多研究。从这个意义上讲,目前的研究旨在使用用于确定这些生物燃料的氧化热降解能量的分析技术DSC(差示扫描量热法)来评估两种可再生燃料和豆牛生物柴油。与化石柴油(柴油发动机的参考燃料)相比,用于确定这些生物燃料的氧化热降解能量。研究该参数的重要性是由于氧化热降解能量越低,燃烧燃料的最佳特征。此外,这些燃料也在柴油发动机OM 926 LA EURO 5中使用ESC测试 - 欧洲固定周期进行测试,以监测其性能和排放。结果表明,对于食用的法讷,2911,0 kJ / kg,2911,0 kJ / kg的氧化降解为:3911,0 kJ / kg用于化石柴油的843.8 kJ / kg。与其他两种燃料相比,在发动机上完成的测试表明法呢道呈现出较低的排放NOx,HC E CO_2甚至更好的性能。本研究表明,能量氧化降解和发动机性能之间存在直接相关性。

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