首页> 外文期刊>Current Journal of Applied Science and Technology >Physicochemical Properties of Rubber(Hevea brasiliensis) Seed Oil, Its Biodiesel andBlends with Diesel
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Physicochemical Properties of Rubber(Hevea brasiliensis) Seed Oil, Its Biodiesel andBlends with Diesel

机译:橡胶(巴西橡胶),其生物柴油和混合柴油的理化特性

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Literature search shows that research on feed stocks for the production of biodiesel in Africa have not been well documented. To close this gap, a research project was initiated to measure the fuel and physicochemical properties of common vegetable oils in Nigeria. The works on cashew nut oil has been reported and that of rubber seed oil is being reported in this paper. Rubber tree seed oil has several industrial applications but not all the fuel and physicochemical properties are available in literature, hence the aim of this study is to provide the properties of not only the oil but also the biodiesel, 20% and 10% blends with diesel. For the purpose of characterization, the oil was extracted by soxhlet extraction and the free fatty acids was measured and found to be 23.68 % which can react with the sodium hydroxide catalyst to form soaps that can inhibit the separation of the esters and glycerin. To prevent this, acid catalyst was first used to neutralize and reduce the high level of free fatty acids in the oil to less than 2% before using sodium hydroxide for the transesterification process. The resulting biodiesel was washed, dried and blended 20% and 10% with diesel. The fatty acid profiles were determined by chromatography analyzer and the oil was found to be unsaturated. The characterization of the oil, its biodiesel, and the blends were done according to ASTM and EU methods and the results obtained show that the properties of the biodiesel and blends are similar to those of diesel which shows conclusively that it can be used as alternative fuel for diesel engines.
机译:文献检索表明,关于非洲生产生物柴油的饲料原料的研究尚未充分记录。为了缩小这一差距,启动了一个研究项目,以测量尼日利亚普通植物油的燃料和理化特性。腰果油的工作已有报道,橡胶籽油的工作也有报道。橡胶树种子油具有多种工业应用,但文献中并未提供所有的燃料和理化性质,因此,本研究的目的是不仅提供油的性质,还提供生物柴油,20%和10%的柴油混合物。出于表征的目的,通过索氏提取法提取了油,并测量了游离脂肪酸的含量,发现其为23.68%,可以与氢氧化钠催化剂反应形成皂液,从而可以抑制酯和甘油的分离。为了防止这种情况,在使用氢氧化钠进行酯交换反应之前,首先使用酸性催化剂中和并将油中的游离脂肪酸含量降低到2%以下。将得到的生物柴油洗涤,干燥并与柴油混合20%和10%。用色谱分析仪测定脂肪酸谱,发现该油是不饱和的。根据ASTM和EU方法对油,其生物柴油和混合物进行表征,所得结果表明,该生物柴油和混合物的性能与柴油相似,这表明柴油可以用作替代燃料。用于柴油发动机。

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