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首页> 外文期刊>Journal of Cleaner Production >Production and characterization of bio-mix fuel produced from a ternary and quaternary mixture of raw oil feedstock
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Production and characterization of bio-mix fuel produced from a ternary and quaternary mixture of raw oil feedstock

机译:由原料油的三元和四元混合物生产的生物混合燃料的生产和表征

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摘要

The replacement of fossil fuel through renewable resources is the need of the hour to reduce environmental pollution. Biodiesel is one of the renewable sources to replace fossil fuel but its properties are influenced by fatty acids composition, production process, atmospheric and tropical conditions. An attempt has been made to improve biodiesel quality through the bio-mix approach. Bio-mix is a simple method to improve the saturation level by decreasing unsaturated fatty acid composition. In this investigation, the raw bio-mix oil (RBMO) was derived from the raw mixture of edible and non-edible oils and transesterified to form bio-mix methyl ester (BMME). Two samples of BMME fuel were prepared, BMME-I from the ternary mixture of raw oil feedstock: Jatropha, Karanja, Cottonseed oil and BMME-II from the quaternary mixture of raw oils feedstock: Jatropha, Karanja, Palm, Coconut and oils respectively. Gas chromatography-mass spectrometry (GC-MS) was used to analyze fatty acids composition for characterization of BMME fuel. Fuel properties of biodiesel were measured and found within the standards limit (ASTM D6751, EN14214, and BIS IS15607-05). Results showed that saturated fatty acids, cetane number, oxidation stability increased whereas density, viscosity, heating value, flash point, iodine number, and acid number decreased as compared to individual biodiesel feedstock respectively. The biodiesel derived from non-edible oil feedstock has to be esterifled prior to transesterification to reduced acid value and free fatty acids. Raw bio-mix oil consists of a lower acid value and free fatty acids, hence directly transesterified and reduced the pre and post-treatment process. This study suggested that Bio-Mix Methyl Ester (BMME) could be a suitable model to prepare low cost and good quality biodiesel for compression ignition (CI) engine application. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过可再生资源替代化石燃料是减少环境污染的一个小时的需要。生物柴油是替代化石燃料的可再生资源之一,但其性能受脂肪酸组成,生产过程,大气和热带条件的影响。已经尝试通过生物混合方法来改善生物柴油的质量。生物混合是通过降低不饱和脂肪酸组成来提高饱和度的简单方法。在这项研究中,原始的生物混合油(RBMO)源自食用和非食用油的原始混合物,并进行酯交换形成生物混合甲酯(BMME)。制备了两种BMME燃料样品,分别是从原料油的三元混合物:麻疯树油,Karanja,棉籽油中提取的BMME-I和分别从原料油的四元混合物:麻疯树油,Karanja,棕榈,椰子油和油中得到的BMME-II。气相色谱-质谱(GC-MS)用于分析脂肪酸成分,以表征BMME燃料。在标准限值(ASTM D6751,EN14214和BIS IS15607-05)内测量并发现了生物柴油的燃料特性。结果表明,与单独的生物柴油原料相比,饱和脂肪酸,十六烷值,氧化稳定性增加,而密度,粘度,热值,闪点,碘值和酸值分别降低。源自非食用油原料的生物柴油必须在酯交换之前酯化为降低的酸值和游离脂肪酸。原始的生物混合油由较低的酸值和游离脂肪酸组成,因此可以直接酯交换并减少预处理过程。这项研究表明,Bio-Mix甲基酯(BMME)可能是制备低成本和高质量生物柴油用于压燃(CI)发动机的合适模型。 (C)2019 Elsevier Ltd.保留所有权利。

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