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The effect of binary antioxidant proportions on antioxidant synergy and oxidation stability of Jatropha and Karanja biodiesels

机译:二元抗氧化剂配比对麻疯树和Karanja生物柴油抗氧化剂协同作用和氧化稳定性的影响

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Oxidation has been measured a major problem for biodiesel commercialization. Auto-oxidation takes place when exposed to air, heat, light and metallic contaminants which affects adversely the fuel characteristics of biodiesel. Addition of synthetic antioxidants generally improves the oxidation stability of biodiesel; however the use of large concentration of additives makes the process uneconomical. This study investigates the effectiveness of individual as well as binary antioxidants to improve the oxidation stability of Jatropha and Karanja biodiesels. Antioxidant synergy was investigated using 500, 600 and 700 ppm of antioxidant combinations namly Pyrogallol:Propyl gallate (PY:PrG), Pyrogalloktert-butyl hydroquinone (PY:TBHQ) and Pyrogallol:Butylated hydroxyanisole (PY:BHA) at weight ratios of 9:1, 3:1, 2:1, 1:1, 1:2, 1:3 and 1:9, respectively. It was observed that higher blends of binary mixture produced negative synergy, however the best antioxidant synergy showed by the binary systems of PY:PrG, and PY:TBHQ, when the additives are mixed at 1:3 weight ratios; whereas binary mixture of PY:BHA resulted in complete antagonism. However, the effectiveness of the binary system on oxidation stability was found in order of 1:3/3:1 > 1:2/2:1 > 1:1 > 1:9/9:1. The efficacy of antioxidant combinations was evaluated by using pressurized PetroOXY method. Further the dependency of oxidation stability and antioxidant synergy on the fatty acid composition of biodiesel was also observed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:已经测量出氧化是生物柴油商业化的主要问题。当暴露于空气,热,光和金属污染物中时会发生自氧化,这会对生物柴油的燃料特性产生不利影响。合成抗氧化剂的添加通常会改善生物柴油的氧化稳定性;但是,使用高浓度的添加剂会使该过程不经济。这项研究调查了单个以及二元抗氧化剂对改善麻风树和Karanja生物柴油的氧化稳定性的有效性。研究了抗氧化剂的协同作用,分别使用了500、600和700 ppm的抗氧化剂组合,分别为邻苯三酚:没食子酸丙酯(PY:PrG),邻苯三酚叔丁基对苯二酚(PY:TBHQ)和邻苯三酚:丁基羟基茴香醚(PY:BHA)。 1,3:1,2:1,1:1,1:2,1:3和1:9。观察到,二元混合物的较高共混物产生负协同作用,但是当以1:3的重量比混合添加剂时,PY:PrG和PY:TBHQ的二元体系显示出最佳的抗氧化剂协同作用。而PY:BHA的二元混合物导致完全拮抗。但是,发现二元体系对氧化稳定性的有效性按以下顺序排列:1:3/3:1> 1:2/2:1> 1:1> 1:9/9:1。通过使用加压的PetroOXY方法评估抗氧化剂组合的功效。此外,还观察到氧化稳定性和抗氧化剂协同作用对生物柴油脂肪酸组成的依赖性。 (C)2015 Elsevier Ltd.保留所有权利。

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