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Effect of Metals in the Oxidation Stability and Lubricity of Biodiesel Fuel

机译:金属在生物柴油燃料氧化稳定性和润滑性中的影响

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The introduction to the European market of higher levels of biodiesel blends focuses the research interest on the compatibility problems of the diesel fuel distribution system. The influence of metals in the oxidation stability and lubricity of two different types of commercially available FAMEs (without antioxidant additive) was investigated. Zinc (Zn), Copper (Cu) and Tin (Sn), were added in the form of solid metals (heterogeneous catalysis in liquid phase oxidation) and examined for their impact on the oxidation stability of biodiesel fuel. Oxidation stability was determined by Rancimat accelerated oxidation method, according to European Standard EN14214. Additionally, in order to examine the effect of the above-mentioned metals in the presence of antioxidant additive, BHT was added in both biodiesel samples and oxidation stability determinations were carried out as well. Alterations in the lubricating properties of the oxidized biodiesel were determined by the lubricity test according to High Frequency Reciprocating Rig (HFRR) standard method. The oxidized biodiesel samples were blended with Ultra-Low Sulfur Diesel (ULSD) at a concentration of 5% v/v in order to investigate the lubricating properties of the final blends.
机译:欧洲较高级别的生物柴油混合物介绍侧重于柴油燃料分配系统兼容性问题的研究兴趣。研究了金属在两种不同类型市售食物(不含抗氧化添加剂)的氧化稳定性和润滑性中的影响。锌(Zn),铜(Cu)和锡(Sn)以固体金属的形式加入(液相氧化中的异质催化),并检查其对生物柴油燃料的氧化稳定性的影响。据欧洲标准EN14214称,通过Rancimat加速氧化方法测定氧化稳定性。另外,为了检查上述金属在抗氧化添加剂存在下的效果,在生物柴油样品中加入BHT,也进行氧化稳定性测定。通过根据高频往复钻机(HFRR)标准方法的润滑试验测定氧化生物柴油的润滑性质的改变。将氧化的生物柴油样品以5%v / v的浓度与超低硫柴油(ULSD)混合,以研究最终共混物的润滑性能。

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