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首页> 外文期刊>Green and Sustainable Chemistry >Production, Characterisation and Fatty Acid Composition of &i&Jatropha curcas&/i& Biodiesel as a Viable Alternative to Conventional Diesel Fuel in Nigeria
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Production, Characterisation and Fatty Acid Composition of &i&Jatropha curcas&/i& Biodiesel as a Viable Alternative to Conventional Diesel Fuel in Nigeria

机译:麻疯树/ i的生产,表征和脂肪酸组成。生物柴油是尼日利亚常规柴油的可行替代品

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Ethyl ester biodiesel has been produced from a non-edible Jatropha curcas oil. Oil was extracted from the plant seed using n-hexane at 60°C and pretreated by alkaline refining process to reduce the free fatty acid level to less than 1%. Base-catalysed transesterification reaction with absolute ethanol using potassium hydroxide catalyst was adopted for the conversion. Various physicochemical properties of the refined Jatropha curcas oil were investigated. The ethyl ester biodiesel produced was characterised for its fuel properties such as specific gravity at 15°C, flash point, pour point, kinematic viscosity, cetane number, iodine value and higher heating value using American Society for Testing and Materials Standard Methods. The crude and refined Jatropha curcas oil yields were 58.16% and 52.5%. The physicochemical analysis revealed FFA, saponification value and peroxide value of refined Jatropha curcas oil to be 0.58 mg KOH/g, 159.9 and 1.92 m E/kg respectively. The fatty acid composition obtained from gas chromatography (GC) revealed that the oil contained 44.85% oleic acid as the dominant fatty acid, while Margaric 0.01% and Behenic 0.02% the least. The biodiesel yield was 57.6%, and its measured fuel properties conformed with ASTM 6751 and EN 14214 standards.
机译:乙酯类生物柴油已由不可食用的麻风树麻疯树油制成。在60°C下使用正己烷从植物种子中提取油,并通过碱精制工艺进行预处理,以将游离脂肪酸含量降低至不足1%。采用氢氧化钾催化剂与无水乙醇进行碱催化的酯交换反应进行转化。研究了精制的麻风树麻疯树油的各种理化性质。使用美国测试和材料标准方法,对生产的乙酯生物柴油的燃料特性进行了表征,例如在15°C下的比重,闪点,倾点,运动粘度,十六烷值,碘值和更高的热值。粗和精制的麻风树麻疯树油的产率分别为58.16%和52.5%。理化分析表明精制麻疯树油的FFA,皂化值和过氧化值分别为0.58 mg KOH / g,159.9和1.92 m E / kg。由气相色谱法(GC)获得的脂肪酸组成表明,该油包含44.85%的油酸作为主要脂肪酸,而玛格丽特的0.01%和山hen酸的最小。生物柴油的产率为57.6%,其测得的燃料特性符合ASTM 6751和EN 14214标准。

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