Keskin Ali, Gürü Metin, Altiparmak Duran
Technical Education Faculty, Mersin University, 33500 Mersin, Turkey.
Bioresour Technol. 2008 Sep;99(14):6434-8. doi: 10.1016/j.biortech.2007.11.051. Epub 2008 Mar 4.
The purpose of this study is to investigate influences of tall oil biodiesel with Mg and Mo based fuel additives on diesel engine performance and emission. Tall oil resinic acids were reacted with MgO and MoO(2) stoichiometrically for the production of metal-based fuel additives (combustion catalysts). The metal-based additives were added into tall oil biodiesel (B60) at the rate of 4 micromol/l, 8 micromol/l and 12 micromol/l for preparing test fuels. In general, both of the metal-based additives improved flash point, pour point and viscosity of the biodiesel fuel, depending on the rate of additives. A single cylinder DI diesel engine was used in the tests. Engine performance values did not change significantly with biodiesel fuels, but exhaust emission profile was improved. CO emissions and smoke opacity decreased by 56.42% and by 30.43%, respectively. In general, low NO(x) and CO(2) emissions were measured with the biodiesel fuels.
本研究的目的是研究添加镁基和钼基燃料添加剂的妥尔油生物柴油对柴油机性能和排放的影响。妥尔油树脂酸与氧化镁和二氧化钼按化学计量比反应,以生产金属基燃料添加剂(燃烧催化剂)。将金属基添加剂以4微摩尔/升、8微摩尔/升和12微摩尔/升的比例添加到妥尔油生物柴油(B60)中,以制备测试燃料。总体而言,两种金属基添加剂均能改善生物柴油燃料的闪点、倾点和粘度,具体取决于添加剂的比例。试验中使用了一台单缸直喷式柴油机。生物柴油燃料对发动机性能值的影响不显著,但改善了废气排放情况。一氧化碳排放量和烟度分别降低了56.42%和30.43%。总体而言,生物柴油燃料的氮氧化物和二氧化碳排放量较低。